Αρχειοθήκη ιστολογίου

Τετάρτη 23 Ιανουαρίου 2019

Protective effects of lycopene on kainic acid-induced seizures.

Protective effects of lycopene on kainic acid-induced seizures.

Epilepsy Res. 2019 Jan 17;151:1-6

Authors: Li S, Luo Z, Lu B, Xia S, Li C, Guan X, Zhang J, Huang K, Xian F

Abstract
Lycopene (LCP) is a carotenoid that protects against many diseases by alleviating oxidative stress. However, the effect of LCP on epileptic seizures has not been examined well in previous studies. In the current work, we employed kainic acid (KA) to induce experimental epileptic seizures in mice, and investigated the function of LCP during this process. We found that the onset and extent of KA-induced seizures were alleviated in LCP-pretreated mice. Nissl staining of hippocampus showed that the granule cell dispersion lesion induced by KA was improved by the LCP treatment. Additionally, we analyzed the oxidative stress levels in mice and found that LCP elevated SOD activity and suppressed MDA level in KA-induced seizures. Moreover, the expression of GABA receptors was influenced by LCP treatment. LCP suppressed the upregulation of gabrb2 and gabrb3 induced by KA, whereas it enhanced the expression of gabrb1. Results suggested that LCP plays a protective function in KA-induced seizures. Hence, it may be a potential functional food alternative for controlling and treating epileptic seizures.

PMID: 30669043 [PubMed - as supplied by publisher]



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PLPHP deficiency: clinical, genetic, biochemical, and mechanistic insights.

PLPHP deficiency: clinical, genetic, biochemical, and mechanistic insights.

Brain. 2019 Jan 21;:

Authors: Johnstone DL, Al-Shekaili HH, Tarailo-Graovac M, Wolf NI, Ivy AS, Demarest S, Roussel Y, Ciapaite J, van Roermund CWT, Kernohan KD, Kosuta C, Ban K, Ito Y, McBride S, Al-Thihli K, Abdelrahim RA, Koul R, Al Futaisi A, Haaxma CA, Olson H, Sigurdardottir LY, Arnold GL, Gerkes EH, Boon M, Heiner-Fokkema MR, Noble S, Bosma M, Jans J, Koolen DA, Kamsteeg EJ, Drögemöller B, Ross CJ, Majewski J, Cho MT, Begtrup A, Wasserman WW, Bui T, Brimble E, Violante S, Houten SM, Wevers RA, van Faassen M, Kema IP, Lepage N, Care4Rare Canada Consortium, Lines MA, Dyment DA, Wanders RJA, Verhoeven-Duif N, Ekker M, Boycott KM, Friedman JM, Pena IA, van Karnebeek CDM

Abstract
Biallelic pathogenic variants in PLPBP (formerly called PROSC) have recently been shown to cause a novel form of vitamin B6-dependent epilepsy, the pathophysiological basis of which is poorly understood. When left untreated, the disease can progress to status epilepticus and death in infancy. Here we present 12 previously undescribed patients and six novel pathogenic variants in PLPBP. Suspected clinical diagnoses prior to identification of PLPBP variants included mitochondrial encephalopathy (two patients), folinic acid-responsive epilepsy (one patient) and a movement disorder compatible with AADC deficiency (one patient). The encoded protein, PLPHP is believed to be crucial for B6 homeostasis. We modelled the pathogenicity of the variants and developed a clinical severity scoring system. The most severe phenotypes were associated with variants leading to loss of function of PLPBP or significantly affecting protein stability/PLP-binding. To explore the pathophysiology of this disease further, we developed the first zebrafish model of PLPHP deficiency using CRISPR/Cas9. Our model recapitulates the disease, with plpbp-/- larvae showing behavioural, biochemical, and electrophysiological signs of seizure activity by 10 days post-fertilization and early death by 16 days post-fertilization. Treatment with pyridoxine significantly improved the epileptic phenotype and extended lifespan in plpbp-/- animals. Larvae had disruptions in amino acid metabolism as well as GABA and catecholamine biosynthesis, indicating impairment of PLP-dependent enzymatic activities. Using mass spectrometry, we observed significant B6 vitamer level changes in plpbp-/- zebrafish, patient fibroblasts and PLPHP-deficient HEK293 cells. Additional studies in human cells and yeast provide the first empirical evidence that PLPHP is localized in mitochondria and may play a role in mitochondrial metabolism. These models provide new insights into disease mechanisms and can serve as a platform for drug discovery.

PMID: 30668673 [PubMed - as supplied by publisher]



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Secondary metabolite profiling, cytotoxicity, anti-inflammatory potential and in vitro inhibitory activities of Nardostachys jatamansi on key enzymes linked to hyperglycemia, hypertension and cognitive disorders.

Secondary metabolite profiling, cytotoxicity, anti-inflammatory potential and in vitro inhibitory activities of Nardostachys jatamansi on key enzymes linked to hyperglycemia, hypertension and cognitive disorders.

Phytomedicine. 2018 Aug 08;55:58-69

Authors: Bose B, Tripathy D, Chatterjee A, Tandon P, Kumaria S

Abstract
ETHNOPHARMACOLOGICAL RELEVANCE: Nardostachys jatamansi (D. Don) DC., 'Spikenard' or 'Jatamansi', a highly valued, aromatic herb from alpine Himalayas has a long history of use as ethnomedicine and dietary supplements in Ayurveda, Unani and Chinese system of medicine since Vedic ages (1000-800 BC). In Ayurveda and traditional system of medicine, the species is used as stimulant, sedative, brain tonic or mind rejuvenator, antidiabetic, cardio tonic, and in the treatment of various neurological disorders such as insomnia, epilepsy, hysteria, anxiety and depression. It is considered as Sattvic herb in Ayurveda and is now commercially marketed either as single or poly-herbal formulations by many companies in national and international markets.
AIM OF THE STUDY: The species has become threatened in its natural habitats due to over exploitation and illegal trade of its rhizomes for drug preparation in herbal and pharmaceutical industries. Considering the increasing demand and tremendous medicinal importance of this threatened plant species, a detailed study was undertaken to evaluate its antioxidant potential, secondary metabolite profiling, cytotoxicity, anti-inflammatory potential and in vitro enzyme inhibitory activities on key enzymes linked to hyperglycemia, hypertension and cognitive disorders in different plant parts of wild and in vitro-raised plants with respect to different solvent systems for its sustainable utilization.
MATERIALS AND METHODS: Anti-cholinesterase activity of leaves and rhizome of wild and cultured plant extracts was investigated against both acetylcholinesterase (AChE) and butyrylcholinesterase (BuChE) enzymes. In vitro anti-hyperglycemic (α-amylase and PTP1B), anti-hypertensive (angiotensin-converting enzyme), anti-tyrosinase and anti-inflammatory potential (5-lipoxygenase and hyaluronidase) of different plant parts of wild and in vitro-raised plants with respect to different solvent systems were also evaluated. In vitro cytotoxic effect of rootstock extracts of wild and in vitro-derived plants were against cancer (HCT-116, MCF-7 and OE33) and two normal (HEK and MEF) cell lines. Secondary metabolite profiling of rhizome segments of wild and in vitro-derived plants was carried out by quantitative gas chromatography-mass spectrometry (GC-MS).
RESULTS: In vitro-raised plantlets showed comparative higher yield of various secondary metabolites with a significantly high antioxidant activity as compared to the wild plants. Methanolic rootstock extracts of both wild and in vitro-derived plants of N. jatamansi exhibited significant AChE (IC50 36.46 ± 2.1 and 31.18 ± 2.6 µg/ml, respectively) and BuChE (IC50 64.6 ± 3.5 and 60.12 ± 3.6 µg/ml, respectively) inhibitory potential as compared to standard inhibitor galanthamine (IC50 0.94 ± 0.03 and 4.45 ± 0.5 µg/ml). Methanolic rootstock extract of in vitro-derived plants showed significant α-amylase (IC50 90.69 ± 2.1 µg/ml), PTP1B (IC50 24.56 ± 0.8 µg/ml), angiotensin-converting enzyme (IC50 42.5 ± 3.6 µg/ml) and tyrosinase (IC50 168.12 ± 3.6 µg/ml) inhibitory potential as compared to standard acarbose (IC50 52.36 ± 3.1 µg/ml), ursolic acid (IC50 5.24 ± 0.8 µg/ml), captopril (IC50 32.36 ± 2.5 µg/ml) and kojic acid (IC50 = 54.44 ± 2.3 µg/ml). Both the methanolic rootstock and leaf extracts of tissue culture-derived plants exhibited promising anti-5-LOX and anti-hyaluronidase activities against the known inhibitor of 5-LOX and hyaluronidase. Furthermore, methanolic rootstock extracts of both wild and in vitro-derived plants exhibited promising cytotoxic effects to HCT-116, MCF-7 and OE33 cell lines as compared to the normal HEK and MEF after 12 h of treatment. Secondary metabolite profiling of wild and in vitro-derived plants by quantitative GC-MS analysis revealed the presence of different classes of terpenoids and phenolic acids might be responsible for its effective biological activities.
CONCLUSION: In vitro-derived plants revealed a substantial anti-cholinesterases, anti-hyperglycemic anti-inflammatory, anti-hypertensive and anti-tyrosinase potential with higher yield of various bioactive metabolites and significantly higher antioxidant activity which substantially explain medicinal importance of N. jatamansi in traditional medicine, used for centuries in different Ayurvedic formulations. The present findings suggest that cultured plants could be a promising alternative for the production of bioactive metabolites with comparative biological activities to the wild plants.

PMID: 30668444 [PubMed - as supplied by publisher]



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The burden of normality as a model of psychosocial adjustment after deep brain stimulation for Parkinson's disease: A systematic investigation.

The burden of normality as a model of psychosocial adjustment after deep brain stimulation for Parkinson's disease: A systematic investigation.

Neuropsychology. 2019 Jan 21;:

Authors: Baertschi M, Flores Alves Dos Santos J, Burkhard P, Weber K, Canuto A, Favez N

Abstract
OBJECTIVE: Deep brain stimulation (DBS) has become a well-established treatment that significantly improves the motor symptoms of Parkinson's disease (PD). Patients may nevertheless experience psychosocial maladjustment after surgery, as reported by an increasing body of research. Yet, no comprehensive theoretical approach has been proposed to account for this. Initially conceptualized for postsurgical epilepsy, the burden of normality (BoN) may be viewed as a model that is potentially applicable to psychosocial maladjustment after PD-DBS.
METHOD: We systematically examined the literature to verify this assumption by scrutinizing the 3 theoretical levels of the BoN, specifically, precursory conditions for the applicability of the model, clinical manifestations of psychosocial maladjustment, and 2 mediating variables: expectations and discarding the roles associated with the pretreatment condition.
RESULTS: The applicability of the BoN to PD-DBS found support for the first 2 of these 3 levels in 88 scientific articles included in the review. The number of studies that addressed the mediating variables was nevertheless insufficient to draw any definitive conclusion. The degenerative condition of PD further limits the distinction between symptoms pertaining to psychosocial maladjustment and disease progression.
CONCLUSIONS: Considering psychosocial maladjustment through the lens of the BoN is complementary to the traditional medical perspective of PD-DBS and illuminates the potential contribution of specialists from multiple disciplines in clinical rehabilitation. (PsycINFO Database Record (c) 2019 APA, all rights reserved).

PMID: 30667249 [PubMed - as supplied by publisher]



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Structural and functional asymmetry of medial temporal subregions in unilateral temporal lobe epilepsy: A 7T MRI study.

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Structural and functional asymmetry of medial temporal subregions in unilateral temporal lobe epilepsy: A 7T MRI study.

Hum Brain Mapp. 2019 Jan 21;:

Authors: Shah P, Bassett DS, Wisse LEM, Detre JA, Stein JM, Yushkevich PA, Shinohara RT, Elliott MA, Das SR, Davis KA

Abstract
Mesial temporal lobe epilepsy (TLE) is a common neurological disorder affecting the hippocampus and surrounding medial temporal lobe (MTL). Although prior studies have analyzed whole-brain network distortions in TLE patients, the functional network architecture of the MTL at the subregion level has not been examined. In this study, we utilized high-resolution 7T T2-weighted magnetic resonance imaging (MRI) and resting-state BOLD-fMRI to characterize volumetric asymmetry and functional network asymmetry of MTL subregions in unilateral medically refractory TLE patients and healthy controls. We subdivided the TLE group into mesial temporal sclerosis patients (TLE-MTS) and MRI-negative nonlesional patients (TLE-NL). Using an automated multi-atlas segmentation pipeline, we delineated 10 MTL subregions per hemisphere for each subject. We found significantly different patterns of volumetric asymmetry between the two groups, with TLE-MTS exhibiting volumetric asymmetry corresponding to decreased volumes ipsilaterally in all hippocampal subfields, and TLE-NL exhibiting no significant volumetric asymmetries other than a mild decrease in whole-hippocampal volume ipsilaterally. We also found significantly different patterns of functional network asymmetry in the CA1 subfield and whole hippocampus, with TLE-NL patients exhibiting asymmetry corresponding to increased connectivity ipsilaterally and TLE-MTS patients exhibiting asymmetry corresponding to decreased connectivity ipsilaterally. Our findings provide initial evidence that functional neuroimaging-based network properties within the MTL can distinguish between TLE subtypes. High-resolution MRI has potential to improve localization of underlying brain network disruptions in TLE patients who are candidates for surgical resection.

PMID: 30666753 [PubMed - as supplied by publisher]



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Aucubin Alleviates Seizures Activity in Li-Pilocarpine-Induced Epileptic Mice: Involvement of Inhibition of Neuroinflammation and Regulation of Neurotransmission.

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Aucubin Alleviates Seizures Activity in Li-Pilocarpine-Induced Epileptic Mice: Involvement of Inhibition of Neuroinflammation and Regulation of Neurotransmission.

Neurochem Res. 2019 Jan 21;:

Authors: Chen S, Zeng X, Zong W, Wang X, Chen L, Zhou L, Li C, Huang Q, Huang X, Zeng G, Hu K, Ouyang DS

Abstract
Neuroinflammation and imbalance of neurotransmitters play pivotal roles in seizures and epileptogenesis. Aucubin (AU) is an iridoid glycoside derived from Eucommia ulmoides that possesses anti-inflammatory and neuroprotective effects. However, the anti-seizure effects of AU have not been reported so far. The present study was designed to investigate the effects of AU on pilocarpine (PILO) induced seizures and its role in the regulation of neuroinflammation and neurotransmission. We found that AU reduced seizure intensity and prolonged the latency of seizures. AU significantly attenuated the activation of astrocytes and microglia and reduced the levels of interleukine-1 beta (IL-1β), high mobility group box 1 (HMGB1), tumor necrosis factor-α (TNF-α). Furthermore, the contents of γ-aminobutyric acid (GABA) were increased while the levels of glutamate were decreased in the hippocampus with AU treatment. The expression of γ-aminobutyric acid type A receptor subunit α1 (GABAARα1) and glutamate transporter-1 (GLT-1) protein were up-regulated in AU treatment group. However, AU had no significant effect on N-methyl-d-aspartate receptor subunit 2B (NR2B) expression in status epilepticus (SE). In conclusion, our findings provide the first evidence that AU can exert anti-seizure effects by attenuating gliosis and regulating neurotransmission. The results suggest that AU may be developed as a drug candidate for the treatment of epilepsy.

PMID: 30666488 [PubMed - as supplied by publisher]



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Valproic acid-induced nocturnal enuresis in pediatric patients.

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Valproic acid-induced nocturnal enuresis in pediatric patients.

Niger J Clin Pract. 2019 Jan;22(1):108-112

Authors: Ozan K, Coskun Y, Bora CK, Ayten Y

Abstract
Background: Valproic acid (VPA) is one of the commonly used antiepileptic drug. It has various side effects which may be fatal, such as fulminant hepatitis. Nocturnal enuresis (NE) has rarely been reported as side effect of VPA. The aim of this study is to evaluate the frequency of VPA-induced NE and discuss the possible reasons.
Materials and Methods: This retrospective cohort study was performed at the Department of Pediatric Neurology, Eskisehir Osmangazi University Hospital, in Eskisehir, Turkey, between April 2014 and April 2015. The patient population was generated from the epilepsy patients who were receiving VPA monotherapy. Control group population was generated from nonepileptic patients who visited our clinic for headache. Age range of the patients and the control group was determined to be 5-15 years.
Results: The patients group consisted of 189 (53.7%) boys and 163 (46.3%) girls and mean age of the patients was 9.1 ± 3.02 (5-15) years. The control group consisted of 92 (51.1%) girls and 88 (48.9%) boys and mean age of the patients was 8.75 ± 3.23 (5-15) years. We found the incidence of VPA-induced NE to be 5.7%. In the control group, incidence of NE was found to be 10.7%.
Conclusion: This study is one of the largest series about VPA-induced NE. NE is a side effect of VPA that is generally overlooked by clinicians and slightly less well-known too. The literature on VPA-induced NE is very inadequate, and its etiology is not clear. In our study, we did not detect renal dysfunction in the patients with VPA-induced NE; therefore, we may speculate that the NE was caused by the increased sleep depth with VPA treatment. We believe that larger prospective studies including polysomnography may be helpful to shed light on the cause of VPA-induced NE.

PMID: 30666028 [PubMed - in process]



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Long-term, targeted delivery of GDNF from encapsulated cells is neuroprotective and reduces seizures in the pilocarpine model of epilepsy.

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Long-term, targeted delivery of GDNF from encapsulated cells is neuroprotective and reduces seizures in the pilocarpine model of epilepsy.

J Neurosci. 2019 Jan 21;:

Authors: Paolone G, Falcicchia C, Lovisari F, Kokaia M, Bell WJ, Fradet T, Barbieri M, Wahlberg LU, Emerich DF, Simonato M

Abstract
Neurotrophic factors are candidates for treating epilepsy but their development has been hampered by difficulties in achieving stable and targeted delivery of efficacious concentrations within the desired brain region. We have developed an encapsulated cell technology that overcomes these obstacles by providing a targeted, continuous, de novo synthesized source of high levels of neurotrophic molecules from human clonal ARPE-19 cells encapsulated into hollow fiber membranes. Here we illustrate the potential of this approach for delivering glial cell line-derived neurotrophic factor (GDNF) directly to the hippocampus of epileptic rats. In vivo studies demonstrated that bilateral intrahippocampal implants continued to secrete GDNF that produced high hippocampal GDNF tissue levels in a long-term manner. Identical implants robustly reduced seizure frequency in the pilocarpine model. Seizures were reduced rapidly and this effect increased in magnitude over 3 months, ultimately leading to a reduction of seizures by 93%. This effect persisted even after device removal, suggesting potential disease-modifying benefits. Importantly, seizure reduction was associated with normalized changes in anxiety and improved cognitive performance. Immunohistochemical analyses revealed that the neurological benefits of GDNF were associated with the normalization of anatomical alterations accompanying chronic epilepsy, including hippocampal atrophy, cell degeneration, loss of parvalbumin positive interneurons, and abnormal neurogenesis. These effects were associated with activation of GDNF receptors. All in all, these results support the concept that implantation of encapsulated GDNF-secreting cells can deliver GDNF in a sustained, targeted, and efficacious manner, paving the way for continuing pre-clinical evaluation and eventual clinical translation of this approach for epilepsy.SIGNIFICANCE STATEMENTEpilepsy is one of the most common neurological conditions, affecting millions of individuals of all ages. These patients experience debilitating seizures that frequently increase over time and can associate with significant cognitive decline and psychiatric disorders that are generally poorly controlled by pharmacotherapy. We have developed a clinically-validated, implantable cell encapsulation system that delivers high and consistent levels of GDNF directly to the brain. In epileptic animals, this system produced a progressive and permanent reduction (>90%) in seizure frequency. These benefits were accompanied by improvements in cognitive and anxiolytic behavior and the normalization of changes in CNS anatomy that underlie chronic epilepsy. Together, these data suggest a novel means of tackling the frequently intractable neurological consequences of this devastating disorder.

PMID: 30665947 [PubMed - as supplied by publisher]



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Pharmacological treatment of attention-deficit/hyperactivity disorder in children and adolescents with epilepsy.

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Pharmacological treatment of attention-deficit/hyperactivity disorder in children and adolescents with epilepsy.

Rev Neurol (Paris). 2019 Jan 18;:

Authors: Auvin S

Abstract
Attention-deficit/hyperactivity disorder (ADHD) is the most frequent comorbidities in children with epilepsy with an increased risk of other psychiatric comorbidities and academic underachievement. In children with epilepsy, the attentive form is the most common clinical presentation in pediatric epilepsies. A systemic review and a consensus from the ILAE have been recently published on diagnosis, screening and management of ADHD in children with epilepsy. We give an overview of the pharmacological treatment of ADHD in children with epilepsy based on the lecture given at the International League Against Epilepsy (ILAE) French Chapter meeting, (October 2018, Lyon). Although only class II and class III studies are available, methylphenidate is the most appropriate pharmacological option for the treatment of ADHD in children with epilepsy with a limited risk of seizure worsening. The medical treatment should be used in combination of the global management including optimal antiepileptic drug treatment avoiding polytherapy, management of psychiatric comorbidities and support at school.

PMID: 30665686 [PubMed - as supplied by publisher]



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Our experience of shorter stay and lower cost for local versus general anaesthetic placement of tracheoesphageal fistulae in 27 patients

Abstract

Secondary trache‐oesophageal puncture and fistula formation is often undertaken after laryngectomy to restore voice.

The procedure was historically carried out under general anaesthesia (GA).

This has been largely supplanted by local anaesthetic (LA) techniques as GA puts patients at a greater risk and the procedure is a more technically difficult undertaking.

LA techniques have, however, never been validated against GA techniques in terms of length of stay, cost and complication rates.

We compare a GA and an LA technique and found a shorter length of stay, reduced cost and similar complication profile.

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Recurrent Bell's palsy

Abstract

Objective

Although recurrent facial palsy was first reported in 1871, the etiology, definitions, classifications, pathogenesis, treatment options, and prognosis have not been clearly determined. There have been no systematic reviews and meta‐analyses of recurrent Bell's palsy. The purpose of this study was to evaluate the clinical manifestations of recurrent Bell's palsy through a systematic review and meta‐analysis.

Design

The SCOPUS, PubMed, Cochrane Library, and EBSCO databases were searched through May 1, 2018, using the search terms 'recurrent Bell's palsy' and 'recurrent facial palsy', for studies involving patients with recurrent Bell's palsy. Reference lists of eligible studies were also reviewed.

Results

A search of titles and abstracts in these four databases identified 222 studies; of these, 27 studies, involving 1,041 patients from 13 countries, were analyzed. The mean percentage of patients who experienced recurrence of Bell's palsy ranged from 0.8% to 19.4%. Five studies that included 191 patients were included in the meta‐analysis.

Conclusions

Among patients previously affected by Bell's palsy, the mean incidence of recurrent Bell's palsy was 6.5%. Sidedness of recurrent disease, relative to the side of the original disease, had no effect on patient prognosis. Of all patients with Bell's palsy, 66.0% recovered completely, with the recovery rate lower in patients with recurrent than with primary Bell's palsy.

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Validation of french versions of the facial disability index (fdi) and the facial clinimetric evaluation (face) scale, specific quality of life scales for peripheral facial palsy patients

Abstract

Objectives

To translate and validate French versions of two health‐related quality of life questionnaires for patients with peripheral facial palsy: Facial Disability Index (FDI) and Facial Clinimetric Evaluation (FaCE) scale.

Design

Prospective cohort study.

Setting

University tertiary referral center.

Participants

A pilot test was performed on 10 subjects (5 patients with facial palsy of more than 1‐month duration and 5 normal subjects), then 67 adult patients with facial palsy were enrolled in the validation study.

Main outcome measures

Translation of the original questionnaires has followed international guidelines using a forward‐backward translation method. A pilot test and a validation study based on the translated questionnaires were performed. Internal consistency, test–retest reliability, validity and responsiveness were assessed. Validity was assessed by comparing to SF‐36 and Sunnybrook/House‐Brackmann grading systems. Subjects answered scales twice within a one‐week interval.

Results

67 patients were enrolled, among which 63 completed scales one week later (retest). For physical and social functions of FDI and FaCE scores, Cronbach's α representing internal consistency were 0.88, 0.70 and 0.89, and test–retest reliability by intra‐class correlation coefficients were 0.81, 0.86 and 0.89 respectively. The correlation of facial movement score of FaCE scale was good with Sunnybrook/House‐Brackmann grading systems (0.73 and ‐0.75, p<0.01). The correlation of social function of FaCE scale was excellent with social function of SF‐36 (0.8, p<0.01).

Conclusions

French versions of FDI and FaCE scale are psychometrically valid. Both questionnaires can be used for clinical studies to assess the quality of life of patients with peripheral facial palsy.

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The FDA-Approved Breast Cancer HER2 Evaluation Kit (HercepTest; Dako) May Miss Some HER2-Positive Breast Cancers.

The FDA-Approved Breast Cancer HER2 Evaluation Kit (HercepTest; Dako) May Miss Some HER2-Positive Breast Cancers.

Am J Clin Pathol. 2019 Jan 21;:

Authors: Schneider F, Jin Y, Van Smaalen K, Gulbahce EH, Factor RE, Li X

Abstract
Objectives: Accurate evaluation of human epidermal growth factor receptor 2 (HER2) in breast cancer is critical.
Methods: HER2 fluorescence in situ hybridization (FISH) and immunohistochemistry (IHC) tests were performed on 52 cases using a US Food and Drug Administration (FDA)-approved kit (HercepTest, FDA kit) and a laboratory-developed test (LDT) with the HercepTest antibody and a Leica Bond automated stainer.
Results: By FISH, 22 were HER2 positive, 29 were negative, and one was equivocal. Of the 22 HER2 FISH-positive cases, five were negative by the FDA kit and none by LDT. The five discrepant cases were retested using the same FDA kit in another Clinical Laboratory Improvement Amendments-certified laboratory, and all five cases were still negative. None of the 29 HER2 FISH-negative cases were positive by the FDA kit or LDT. The overall IHC-FISH concordance rate was 90.4% for the FDA kit and 100% for the LDT.
Conclusions: The FDA kit may miss some HER2-positive cases. The LDT has a higher sensitivity and a higher concordance rate with FISH results.

PMID: 30668632 [PubMed - as supplied by publisher]



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A novel anti-HER2 anthracycline-based antibody-drug conjugate induces adaptive anti-tumor immunity and potentiates PD-1 blockade in breast cancer.

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A novel anti-HER2 anthracycline-based antibody-drug conjugate induces adaptive anti-tumor immunity and potentiates PD-1 blockade in breast cancer.

J Immunother Cancer. 2019 Jan 21;7(1):16

Authors: D'Amico L, Menzel U, Prummer M, Müller P, Buchi M, Kashyap A, Haessler U, Yermanos A, Gébleux R, Briendl M, Hell T, Wolter FI, Beerli RR, Truxova I, Radek Š, Vlajnic T, Grawunder U, Reddy S, Zippelius A

Abstract
Increasing evidence suggests that antibody-drug conjugates (ADCs) can enhance anti-tumor immunity and improve clinical outcome. Here, we elucidate the therapeutic efficacy and immune-mediated mechanisms of a novel HER2-targeting ADC bearing a potent anthracycline derivate as payload (T-PNU) in a human HER2-expressing syngeneic breast cancer model resistant to trastuzumab and ado-trastuzumab emtansine. Mechanistically, the anthracycline component of the novel ADC induced immunogenic cell death leading to exposure and secretion of danger-associated molecular signals. RNA sequencing derived immunogenomic signatures and TCRβ clonotype analysis of tumor-infiltrating lymphocytes revealed a prominent role of the adaptive immune system in the regulation of T-PNU mediated anti-cancer activity. Depletion of CD8 T cells severely reduced T-PNU efficacy, thus confirming the role of cytotoxic T cells as drivers of the T-PNU mediated anti-tumor immune response. Furthermore, T-PNU therapy promoted immunological memory formation in tumor-bearing animals protecting those from tumor rechallenge. Finally, the combination of T-PNU and checkpoint inhibition, such as α-PD1, significantly enhanced tumor eradication following the treatment. In summary, a novel PNU-armed, HER2-targeting ADC elicited long-lasting immune protection in a murine orthotopic breast cancer model resistant to other HER2-directed therapies. Our findings delineate the therapeutic potential of this novel ADC payload and support its clinical development for breast cancer patients and potentially other HER2 expressing malignancies.

PMID: 30665463 [PubMed - in process]



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Extended-field intensity-modulated radiation therapy combined with concurrent chemotherapy for cervical cancer with para-aortic lymph nodes metastasis.

Extended-field intensity-modulated radiation therapy combined with concurrent chemotherapy for cervical cancer with para-aortic lymph nodes metastasis.

Jpn J Clin Oncol. 2018 Dec 20;:

Authors: Liu X, Wang W, Meng Q, Zhang F, Hu K

Abstract
Objective: This study was conducted to evaluate the efficacy and toxicity of extended-field intensity-modulated radiation therapy combined with concurrent chemotherapy in patients with cervical cancer with positive para-aortic lymph nodes (PALN).
Methods: From September 2007 to December 2014, a total of 59 patients who had cervical cancer with para-aortic lymph node metastasis were treated with concurrent chemoradiotherapy at our institution. A dose of 45-50.4 Gy in 25-28 fractions with extended-field intensity-modulated radiation therapy was prescribed to planning target volume, and a dose of 30-36 Gy in 5-6 fractions was prescribed to Point A with high-dose-rate brachytherapy. A concurrent first-line cisplatin-based chemotherapy regimen was used.
Results: The median duration of follow-up was 32.1 months (range, 3.2-103.7 months). The 2- and 3-year overall survival, disease-free survival and local control rates were 69.0 and 52.8%, 45.0 and 41.3% and 83.4 and 81.0%, respectively. Distant metastasis was the major pattern of treatment failure, which occurred in 26 patients (44.1%). The incidence of Grade 3 or greater acute hematologic, gastrointestinal and genitourinary toxicity was 50.9, 1.7 and 3.4%, respectively. Only one patient had both Grade 3 late gastrointestinal and genitourinary toxicity.
Conclusions: The study found that extended-field intensity-modulated radiation therapy combined with concurrent chemotherapy was safe and effective in patients who had cervical cancer with positive PALN.

PMID: 30668725 [PubMed - as supplied by publisher]



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Validation of the Integrated Palliative care Outcome Scale (IPOS) - Japanese Version.

Validation of the Integrated Palliative care Outcome Scale (IPOS) - Japanese Version.

Jpn J Clin Oncol. 2019 Jan 22;:

Authors: Sakurai H, Miyashita M, Imai K, Miyamoto S, Otani H, Oishi A, Kizawa Y, Matsushima E

Abstract
Background: To improve palliative care practice, the need for patients-reported outcome measures is increasing globally. The Integrated Palliative care Outcome Scale (IPOS) is a streamlined outcome scale developed to comprehensively evaluate patients' distress. The goal of this study is to assess the reliability and validity of IPOS-Japanese version in cancer patients.
Methods: This is a multicenter, cross-sectional observational study. We assessed the missing values, prevalence, test-retest reliability, criterion validity and known-group validity in Japanese adult cancer patients. Patients provided responses to IPOS, European Organization for Research and Treatment for Cancer Quality of Life Questionnaire-Core 30 (EORTC QLQ-C30), and Functional Assessment of Chronic Illness Therapy- Spiritual 12 (FACIT-Sp12). Our medical staff provided responses to Support Team Assessment Schedule (STAS).
Results: One hundred forty-two patients were enrolled at six palliative care facilities. Missing values accounted for less than 1% of most items, with a maximum of 2.8%. The prevalence of symptoms was 17.7-88.7%. The intra-class correlation coefficient ranged from 0.522 to 0.951. The range of correlation coefficients with EORTC-QLQ-C30, FACIT-Sp12 and STAS as gold standards was 0.013 to 0.864 (absolute values). Total IPOS scores were positively correlated with Eastern Corporative Oncology Group Performance Status (P < 0.001).
Conclusion: IPOS-Japanese version is a valid and reliable tool. The scale is useful in assessing physical, psychological, social and spiritual symptoms and in measuring outcomes of adult cancer patients in Japan.

PMID: 30668720 [PubMed - as supplied by publisher]



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A case of early gastric cancer in a patient with splenic vein angioplany.

A case of early gastric cancer in a patient with splenic vein angioplany.

Jpn J Clin Oncol. 2019 Jan 22;:

Authors: Kishino T, Okano K, Nishigaki A, Suzuki Y

PMID: 30668718 [PubMed - as supplied by publisher]



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Quantitative Characterization of CD8+ T Cell Clustering and Spatial Heterogeneity in Solid Tumors.

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Quantitative Characterization of CD8+ T Cell Clustering and Spatial Heterogeneity in Solid Tumors.

Front Oncol. 2018;8:649

Authors: Gong C, Anders RA, Zhu Q, Taube JM, Green B, Cheng W, Bartelink IH, Vicini P, Wang B, Popel AS

Abstract
Quantitative characterization of the tumor microenvironment, including its immuno-architecture, is important for developing quantitative diagnostic and predictive biomarkers, matching patients to the most appropriate treatments for precision medicine, and for providing quantitative data for building systems biology computational models able to predict tumor dynamics in the context of immune checkpoint blockade therapies. The intra- and inter-tumoral spatial heterogeneities are potentially key to the understanding of the dose-response relationships, but they also bring challenges to properly parameterizing and validating such models. In this study, we developed a workflow to detect CD8+ T cells from whole slide imaging data, and quantify the spatial heterogeneity using multiple metrics by applying spatial point pattern analysis and morphometric analysis. The results indicate a higher intra-tumoral heterogeneity compared with the heterogeneity across patients. By comparing the baseline metrics with PD-1 blockade treatment outcome, our results indicate that the number of high-density T cell clusters of both circular and elongated shapes are higher in patients who responded to the treatment. This methodology can be applied to quantitatively characterize the tumor microenvironment, including immuno-architecture, and its heterogeneity for different cancer types.

PMID: 30666298 [PubMed]



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BCL2-Family Dysregulation in B-Cell Malignancies: From Gene Expression Regulation to a Targeted Therapy Biomarker.

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BCL2-Family Dysregulation in B-Cell Malignancies: From Gene Expression Regulation to a Targeted Therapy Biomarker.

Front Oncol. 2018;8:645

Authors: Tessoulin B, Papin A, Gomez-Bougie P, Bellanger C, Amiot M, Pellat-Deceunynck C, Chiron D

Abstract
BCL2-family proteins have a central role in the mitochondrial apoptosis machinery and their expression is known to be deregulated in many cancer types. Effort in the development of small molecules that selectively target anti-apoptotic members of this family i.e., Bcl-2, Bcl-xL, Mcl-1 recently opened novel therapeutic opportunities. Among these apoptosis-inducing agents, BH3-mimetics (i.e., venetoclax) led to promising preclinical and clinical activity in B cell malignancies. However, several mechanisms of intrinsic or acquired resistance have been described ex vivo therefore predictive markers of response as well as mechanism-based combinations have to be designed. In the present study, we analyzed the expression of the BCL2-family genes across 10 mature B cell malignancies through computational normalization of 21 publicly available Affimetrix datasets gathering 1,219 patient samples. To better understand the deregulation of anti- and pro-apoptotic members of the BCL2-family in hematological disorders, we first compared gene expression profiles of malignant B cells to their relative normal control (naïve B cell to plasma cells, n = 37). We further assessed BCL2-family expression according to tissue localization i.e., peripheral blood, bone marrow, and lymph node, molecular subgroups or disease status i.e., indolent to aggressive. Across all cancer types, we showed that anti-apoptotic genes are upregulated while pro-apoptotic genes are downregulated when compared to normal counterpart cells. Of interest, our analysis highlighted that, independently of the nature of malignant B cells, the pro-apoptotic BH3-only BCL2L11 and PMAIP1 are deeply repressed in tumor niches, suggesting a central role of the microenvironment in their regulation. In addition, we showed selective modulations across molecular subgroups and showed that the BCL2-family expression profile was related to tumor aggressiveness. Finally, by integrating recent data on venetoclax-monotherapy clinical activity with the expression of BCL2-family members involved in the venetoclax response, we determined that the ratio (BCL2+BCL2L11+BAX)/BCL2L1 was the strongest predictor of venetoclax response for mature B cell malignancies in vivo.

PMID: 30666297 [PubMed]



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Unusual Presentation of Rosai-Dorfman Disease: Report of a Rare Case.

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Unusual Presentation of Rosai-Dorfman Disease: Report of a Rare Case.

Am J Case Rep. 2019 Jan 22;20:91-96

Authors: AlKuwaity KW, Alosaimi MH, Alsahlawi KT, Alomair MA, Battyour MA, Alkuwaity DW, Buzeid MA, Alsaqer DS

Abstract
BACKGROUND Rosai-Dorfman disease is a rare disorder that was previously described as sinus histiocytosis with massive lymphadenopathy. The disease is derived from overproduction of monocytes, which play an important role in immunity. The overproduction of macrophages will lead to accumulation of the cells in the affected tissue. CASE REPORT A 40-year-old Saudi male presented with shortness of breath with joint pain starting 3 months prior. His main complaints were a dry cough, bilateral neck swelling, dry mouth, dry skin, itchy eyes, and general fatigability. Physical examination showed that the patient had prominent bilateral parotid swelling that measured roughly 5 by 3 cm, which was firm and tender, with a smooth surface and no local signs of inflammation. Joint examination revealed non-tender and non-swollen joints, with mild limitations of movement. Eye examination revealed dry eyes after having a positive Schirmer test. For diagnosis, the patient underwent complete blood count, autoantibody, histopathology, immunohistochemistry, and radiological assessment. The histopathological study confirmed Rosai-Dorfman disease. Rosai-Dorfman disease can involve various presentations, as in this patient, who exhibited a highly unusual presentation in association with autoimmune disease. CONCLUSIONS Rosai-Dorfman disease must be considered as differential diagnosis in patients who present with bilateral lymphadenopathy with multisystem complaints, as the disease can present with various characteristics.

PMID: 30666043 [PubMed - in process]



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Syntheses, crystal structures and biological evaluation of two new Cu(II) and Co(II) complexes based on (E)-2-(((4H-1,2,4-triazol-4-yl)imino)methyl)-6-methoxyphenol.

Syntheses, crystal structures and biological evaluation of two new Cu(II) and Co(II) complexes based on (E)-2-(((4H-1,2,4-triazol-4-yl)imino)methyl)-6-methoxyphenol.

J Inorg Biochem. 2019 Jan 15;193:52-59

Authors: Zhang SM, Zhang HY, Qin QP, Fei JW, Zhang SH

Abstract
Two transition metal complexes of [M(TMP)2(H2O)2] (TMP-Cu, M = Cu; TMP-Co, M = Co) with (E)-2-(((4H-1,2,4-triazol-4-yl)imino)methyl)-6-methoxyphenol (H-TMP) were first synthesized and characterized by infrared analysis, elemental analysis and single crystal X-ray diffraction analysis. Notably, MTT (3-(4,5-dimethylthiazol-2-yl)-2,5-diphenyltetrazolium bromide) assay showed that TMP-Cu displayed relatively high cytotoxic activity against Hep-G2 cancer cells, and high selectivity between human hepatocellular carcinoma cells and normal HL-7702 cells, in comparison to TMP-Co and cisplatin. Further studies showed that TMP-Cu and TMP-Co caused cell cycle arrest at S phase through regulation of S phase related protein expressions and induced Hep-G2 cell apoptosis via the mitochondrial pathway.

PMID: 30669066 [PubMed - as supplied by publisher]



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Curcumin potentiates the antitumor activity of Paclitaxel in rat glioma C6 cells.

Curcumin potentiates the antitumor activity of Paclitaxel in rat glioma C6 cells.

Phytomedicine. 2018 Aug 07;55:23-30

Authors: Fratantonio D, Molonia MS, Bashllari R, Muscarà C, Ferlazzo G, Costa G, Saija A, Cimino F, Speciale A

Abstract
BACKGROUND: Glioma is the most common primary cancer in central nervous system, especially in brain. Paclitaxel (PTX) is a microtubule stabilizing agent with anticancer potential, but its clinical application to brain tumours is limited by drug resistance, side effects, and lower brain penetration.
PURPOSE: Herein we explored the in vitro effects, in glioma C6 cells, of the combination of PTX with curcumin, a natural compound with chemotherapeutic activity, in order to improve cytotoxic effects and overcome PTX limitations.
RESULTS: Our data confirmed PTX antiproliferative activity that was improved by curcumin. These effects were confirmed by clonogenic assay and G0/G1 cell cycle arrest. PTX significantly promoted generation of intracellular reactive species (RS), while curcumin did not affect RS production; the combination of the two drugs resulted in a slight but significant increase in RS levels. Furthermore, we found a constitutive activation of NF-κB in C6 cell line that was inhibited by PTX and curcumin. Interestingly, combination of the drugs totally inhibited NF-κB nuclear translocation and reduced IκB phosphorylation. Our results also supported the involvement of p53-p21 axis in the anticancer effects of curcumin and PTX. The combination of the two drugs further increased p53 and p21 levels enhancing the antiproliferative effects. Furthermore, PTX plus curcumin most impressively activated caspase-3, effector of apoptosis pathways, and reduced the expression of the anti-apoptotic protein Bcl-2.
CONCLUSION: In conclusion, our findings demonstrated that combination of PTX and curcumin exerts a potentiated anti-glioma efficacy in vitro that may help in reducing dosage and/or minimizing side effects of cytotoxic therapy.

PMID: 30668434 [PubMed - as supplied by publisher]



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Different effects of 4β-hydroxywithanolide E and withaferin A, two withanolides from Solanaceae plants, on the Akt signaling pathway in human breast cancer cells.

Different effects of 4β-hydroxywithanolide E and withaferin A, two withanolides from Solanaceae plants, on the Akt signaling pathway in human breast cancer cells.

Phytomedicine. 2018 Sep 05;53:213-222

Authors: Wang HC, Hu HH, Chang FR, Tsai JY, Kuo CY, Wu YC, Wu CC

Abstract
BACKGROUND: Triple-negative breast cancer (TNBC) represents a clinical challenge because it lacks sensitivity to hormone therapy or other available molecule-targeted agents. In addition, TNBC frequently exhibits over-activation of the PI3K/Akt survival pathway that can contribute to chemotherapy resistance. 4β-Hydroxywithanolide E (4-HW) and withaferin A (WA) are two withanolides from Solanaceae plants that exhibit promising anticancer activity in vitro and in vivo.
PURPOSE: The aim of this study is to investigate and compare the effects of 4-HW and WA on TNBC cells and underling mechanisms.
STUDY DESIGN/METHODS: The anticancer effects of 4-HW and WA were evaluated by cell viability, cell cycle arrest, and apoptosis assays. PI3K/Akt signaling and the expression of survivin, Bcl-2 family proteins and cyclin-dependent kinase inhibitors were evaluated by Western blot. The role of PI3K/Akt signaling in the withanolides-induced anticancer effects was examined by using a PI3K inhibitor and overexpression of a constitutively active form of Akt.
RESULTS: In TNBC MDA-MB-231 cells, 4-HW and WA displayed different kinetic effect on cell availability. Cell cycle analysis revealed that 4-HW induced the G1-phase arrest while WA caused the G2/M-phase block. Both withanolides induced apoptosis, but WA also caused necrosis. 4-HW inhibited the PI3K/Akt pathway and survivin expression as well as up-regulated the cyclin-dependent kinase inhibitors p21 and p27. In contrast, WA is a more potent inhibitor of Hsp90 and elicited Akt activation at low doses but inhibited Akt signaling at higher doses by depleting the Akt protein. The PI3K inhibitor LY294002 mimicked the effects of 4-HW and potentiated the cytotoxic activity of WA. In contrast, overexpressing a constitutively active form of myristoylated Akt rescue cancer cells from 4-HW-induced cell death.
CONCLUSION: The withanolides 4-HW and WA potently inhibit the viability of TNBC cells through induction of cell cycle arrest and apoptosis/necrosis. The PI3K/Akt pathway plays distinct roles in cancer cells respond to 4-HW and WA. These results suggest the potential applications of the withanolides for the treatment of TNBC.

PMID: 30668401 [PubMed - as supplied by publisher]



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Dioscin-6'-O-acetate inhibits lung cancer cell proliferation via inducing cell cycle arrest and caspase-dependent apoptosis.

Dioscin-6'-O-acetate inhibits lung cancer cell proliferation via inducing cell cycle arrest and caspase-dependent apoptosis.

Phytomedicine. 2018 Sep 04;53:124-133

Authors: Li X, Qu Z, Jing S, Li X, Zhao C, Man S, Wang Y, Gao W

Abstract
BACKGROUND: Lung cancer is the leading cause of global cancer-related mortality. Dioscin-6'-O-acetate (DA), a novel natural steroidal saponin, was firstly isolated from the rhizomes of Dioscorea althaeoides R. Knuth. Until now, there were no studies on its pharmacological activities.
PURPOSE: Here, we investigated the growth inhibitory effect and explored the underlying molecular mechanisms of DA against lung cancer cells.
METHODS/STUDY DESIGNS: NSCLC H460, H1299, H520 cells and SCLC H446 cells were treated with DA. To display the cytotoxic effects and possible mechanism of DA on these cells, MTT assay, flow cytometry and western blot analysis were carried out.
RESULTS: Our results showed that DA exerted strong anti-proliferative activity against lung cancer cells in a concentration- and time-dependent manner. Flow cytometry demonstrated DA induced the cell cycle arrest at S-phase (NCI-H460, NCI-H1299, NCI-H520) or G1-phase (NCI-H446), caused cellular apoptosis, generation of reactive oxygen species (ROS) and loss of mitochondrial membrane potential. Western blotting analysis showed DA treatment increased the levels of caspase 3, 8, 9, Bax, p21, p53, phosphorylated JNK and p38 MAPK and markedly decreased the expression of Bcl-2, p-ERK, p-PI3K, p-AKT and NF-κB. Blockade of caspases with Z-VAD-FMK converted apoptosis-related proteins. Suppression of p53 with pifithrin-α (PFT) attenuated cell cycle-related protein. Inhibition of ROS with N-acetyl-cysteine (NAC) adjusted apoptosis-related proteins and phosphorylated MAPK and PI3K, as well as NF-κB.
CONCLUSION: Overall, our study indicated that DA suppressed lung cancer cells proliferation via inducing cell-cycle arrest and enhancing caspase-dependent apoptosis, at least partly, through ROS-mediated PI3K/AKT, MAPK and NF-κB signaling pathways.

PMID: 30668391 [PubMed - as supplied by publisher]



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DT-13 inhibited the proliferation of colorectal cancer via glycolytic metabolism and AMPK/mTOR signaling pathway.

DT-13 inhibited the proliferation of colorectal cancer via glycolytic metabolism and AMPK/mTOR signaling pathway.

Phytomedicine. 2018 Sep 14;54:120-131

Authors: Wei X, Mao T, Li S, He J, Hou X, Li H, Zhan M, Yang X, Li R, Xiao J, Yuan S, Sun L

Abstract
BACKGROUND: Emerging hallmark of cancer is reprogrammed cellular metabolism, increased glycolytic metabolism is physiological characteristic of human malignant neoplasms. Saponin monomer 13 of the dwarf lilyturf tuber (DT-13) is the main steroidal saponin from Liriopes Radix, which has been reported to exert anti-inflammation and anti-tumor activities but low toxicity to normal tissue. However, the effect of DT-13 on metabolism process is still unclear.
PURPOSE: This study aims to characterize the role of DT-13 in glucose metabolism in colorectal cancer cells, and investigate whether the metabolism process is involved in the anti-cancer response of DT-13.
METHODS: Colony formation assay was employed to determine anti-proliferative effect induced by DT-13 at 2.5, 5, 10 μM. Apoptosis and cell cycle arrest were detected by Annexin V/PI staining and PI staining, respectively. Genetic inhibition of glycolytic metabolism was carried out by knockdown of GLUT1. Orthotopic implantation mouse model of colorectal cancer was used to assess in vivo antitumor effect of DT-13 (0.625, 1.25, 2.5 mg/kg). The chemoprevention effect of DT-13 (10mg/kg) was evaluated by using C57BL/6J APCmin mice model. Glycolytic-related key enzymes and AMPK pathway were detected by using quantitative real-time PCR, western blotting, and immunohistochemical staining.
RESULTS: Our results showed that cell proliferation was significantly inhibited by DT-13 in a dose-dependent manner. DT-13 inhibited glucose uptake, ATP generation, and reduced lactate production. Furthermore, DT-13 remarkably inhibited GLUT1 expression in both mRNA and protein levels. Knocking down of GLUT1 led to reduced inhibition of glucose uptake after DT-13 treatment. Moreover, deletion of GLUT1 decreased inhibitory ratio of DT-13 on cancer growth. Orthotopic implantation mouse model of colorectal cancer further confirmed that DT-13 inhibited colorectal cancer growth via blocking GLUT1 in vivo. In addition, C57BL/6J APCmin mice model revealed that DT-13 dramatically reduced the total number of spontaneous adenomas in intestinal, which further confirmed the anti-tumor activity of DT-13 in colorectal cancer. Furthermore, the mechanistically investigation showed DT-13 activated AMPK and inhibited m-TOR to block cancer growth in vitro.
CONCLUSION: DT-13 is a potent anticancer agent for colorectal cancer.

PMID: 30668361 [PubMed - as supplied by publisher]



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Celastrol induces vincristine multidrug resistance oral cancer cell apoptosis by targeting JNK1/2 signaling pathway.

Celastrol induces vincristine multidrug resistance oral cancer cell apoptosis by targeting JNK1/2 signaling pathway.

Phytomedicine. 2018 Sep 17;54:1-8

Authors: Lin FZ, Wang SC, Hsi YT, Lo YS, Lin CC, Chuang YC, Lin SH, Hsieh MJ, Chen MK

Abstract
BACKGROUND: Oral cancers are one of the most aggressive malignancies, with high mortality rates globally. Patients with these cancers are treated using combination therapies including surgery, chemotherapy, and radiotherapy.
HYPOTHESIS/PURPOSE: Traditional Chinese medicines and other herbal medicines have been used to treat various diseases in Asia. Celastrol is a pentacyclic triterpenoid isolated from the Chinese herbal medicine Trypterygium wilfordii, which has therapeutic potential in multiple diseases. The present study was to determine the effect of celastrol on vincristine-resistant cancer cell line and to illuminate the mechanism of celastrol-induced cell apoptosis.
STUDY DESIGN: Celastrol was added to vincristine-resistant cancer cell and immunoreactive proteins were detected.
METHODS AND RESULTS: Our study demonstrated that celastrol leads to apoptosis of head and neck cancer cells through mitochondria- and Fas-mediated pathways. However, whether this herbal medicine exhibits beneficial effects on vincristine-resistant oral cancer patients remains uncertain. Therefore, our study examined the apoptotic effect exerted by celastrol and the mechanism by this drug acts on a vincristine-resistant cancer cell line. The present study demonstrated that celastrol triggered apoptotic cell death by inducing cell cycle arrest at the G2/M phase via the intrinsic and extrinsic pathways (increased cleaved caspase-3, caspase-8, caspase-9, and PARP). Increased expression of tBid also indicated the presence of crosstalk between the two pathways. Celastrol mediated cell apoptosis through the downregulation of the expression of Bcl-2, not Bcl-xL. Moreover, JNK1/2 signaling was the main pathway of celastrol-induced apoptosis.
CONCLUSION: Celastrol could become a useful agent for treating oral cancers with MDR.

PMID: 30668359 [PubMed - as supplied by publisher]



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Chidamide-induced ROS accumulation and miR-129-3p-dependent cell cycle arrest in non-small lung cancer cells.

Chidamide-induced ROS accumulation and miR-129-3p-dependent cell cycle arrest in non-small lung cancer cells.

Phytomedicine. 2018 Oct 02;56:94-102

Authors: Wu YF, Ou CC, Chien PJ, Chang HY, Ko JL, Wang BY

Abstract
BACKGROUND: Epigenetic therapy is a promising popular treatment modality for various cancers. Histone modification and miRNA should not be underestimated in lung cancer. This study aimed to investigate whether chidamide, a histone deacetylase inhibitor (HDACi), which inhibits telomerase activity and induces cell cycle arrest, influences ROS and miRNA production in non-small cell lung cancer (NSCLC) cells.
METHODS: H1355 and A549 were treated with chidamide. The analysis of DNA content was measured by FACSCalibur equipped with a 488 nm laser. H1355 cells were transfected with miR-129-3p mimic by Lipofectamine2000. Telomerase activity was performed on the telomeric repeat amplification protocol (TRAP) assay. Detection of thymidylate synthase (TS), p21, p53, pRB, and β-actin, were performed by western blot analysis.
RESULTS: Our data showed that expression of TS, p21, and pRB were altered in the presence of chidamide by PCR and western blot. Using BrdU-incorporation analysis, we found that chidamide induced G1 arrest through the regulation of the TS gene by miR-129-3p. Chidamide was shown to suppress telomerase activity in the TRAP assay and reduced the expression of human telomerase reverse transcriptase (hTERT) by PCR and q-PCR in H1355 and A549 cells. Chidamide increased the generation of reactive oxygen species (ROS) by flow cytometry. N-acetyl cysteine (NAC), a ROS scavenger, attenuated chidamide-induced telomerase activity inhibition.
CONCLUSION: Chidamide repressed telomerase activity through ROS accumulation and cell cycle arrest by miR-129-3p upregulation in both H1355 and A549 cells. This is the first study to demonstrate that chidamide induces miR-129-3p upregulation and ROS accumulation, leading to cell cycle arrest.

PMID: 30668358 [PubMed - as supplied by publisher]



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Apoptosis and G2/M cell cycle arrest induced by a timosaponin A3 from Anemarrhena asphodeloides Bunge on AsPC-1 pancreatic cancer cells.

Apoptosis and G2/M cell cycle arrest induced by a timosaponin A3 from Anemarrhena asphodeloides Bunge on AsPC-1 pancreatic cancer cells.

Phytomedicine. 2018 Aug 24;56:48-56

Authors: Kim Y, Kim KH, Lee IS, Park JY, Na YC, Chung WS, Jang HJ

Abstract
BACKGROUND: Timosaponin A3 (TA3), one of the active components of spirostanol saponin isolated from A. asphodeloides, is widely used as an anticancer agent in a variety of cancer cell lines. However, the research on the anticancer efficacy is very limited in human pancreatic cancer models.
PURPOSE: In this study, we investigated the molecular targets in the active components of A. asphodeloides, which showed anti-cancer effects in human pancreatic cancer cells, and confirmed the pathways involved.
STUDY DESIGN: The apoptotic effects of five solvent extracts of A. asphodeloides in human pancreatic cancer cells (AsPC-1) was studied, and the phytochemical leading to their effects identified. Next, we determined whether the phytochemical inhibit STAT3 and ERK1/2, and investigated the pathways involved.
METHODS: Five solvent extracts of A. asphodeloides (100  µg/ml, 24  h) was investigated for their cytotoxicity against AsPC-1 cells. The active ingredient of the extract exhibiting the highest toxicity were analyzed by liquid chromatography-mass spectrometry. Next, we studied the mechanism of action of the phytochemical in pancreatic cancer. Cell cycle and annexin V/FITC assays were performed to assess cell growth and apoptosis capacity. The effects on apoptosis and proliferation-related pathways, STAT3, and MAPKs were confirmed at the protein level using immunoblotting. The factors regulated in the pathways were investigated using reverse transcription polymerase chain reaction.
RESULTS: The results showed that the ethyl acetate extract of A. asphodeloides (EAA) induced apoptotic and anti-proliferative activities through the STAT3 and MAPKs pathways. We found that TA3, an active component of EAA, inhibits constitutive STAT3 and ERK1/2 proteins. EAA and TA3 decreased the viability of AsPC-1 cells, leading to cell cycle arrest at the sub-G1 and G2/M phases. Moreover, TA3 inhibited the expression of various genes encoding anti-apoptotic (Bcl-2, Bcl-xl), proliferative (Cyclin D1), metastatic (MMP-9), and angiogenic (VEGF-1) proteins.
CONCLUSION: The results indicated that TA3, an active phytochemical from A. asphodeloides, could induce apoptosis and suppress cell proliferation by inhibiting the STAT3 and ERK1/2 pathways. Thus, TA3 is a candidate cancer chemotherapeutic agent instead to treat human pancreatic cancer.

PMID: 30668353 [PubMed - as supplied by publisher]



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MicroRNA-6809-5p mediates luteolin-induced anticancer effects against hepatoma by targeting flotillin 1.

MicroRNA-6809-5p mediates luteolin-induced anticancer effects against hepatoma by targeting flotillin 1.

Phytomedicine. 2018 Oct 22;57:18-29

Authors: Yang PW, Lu ZY, Pan Q, Chen TT, Feng XJ, Wang SM, Pan YC, Zhu MH, Zhang SH

Abstract
BACKGROUND: Luteolin (3,4,5,7-tetrahydroxy flavone) is a natural flavonoid abundant in fruits and vegetables. Although luteolin has shown pro-apoptotic activity in hepatocellular carcinoma (HCC) cells, the underlying molecular mechanism has not yet been clarified.
PURPOSE: The aim of this study is to identify novel miRNAs involved in the action of luteolin in HCC cells and to explore the biological roles of these miRNAs.
METHODS: The effect of luteolin on HCC cell growth was assessed using CCK-8 colony formation assay, flow cytometric analysis in vitro, and a xenograft model in vivo. miRNA expression profiles were assessed using next-generation sequencing. Differentially expressed miRNAs were validated by quantitative PCR. Bioinformatics analysis and luciferase reporter assay were utilized to confirm the binding of miR-6809-5p to the 3'-untranslated region (3'-UTR) of flotillin 1 (FLOT1). Furthermore, the effects of ectopic FLOT1 and miR-6809-5 expression on cell proliferation, colony formation, and cell apoptosis were also assessed. Western blotting analysis was used to detect activation of multiple signaling molecules including Erk1/2, p38, JNK, and NF-κB/p65 in the MAPK pathway.
RESULTS: It was found that luteolin significantly inhibited HCC growth and caused apoptosis and cell cycle arrest at the G0/G1 phase in Huh7 cells, at the G2/M phase in HepG2 cells in vitro. Tumorigenic studies revealed that luteolin treatment significantly suppressed HCC growth in vivo. miR-6809-5p was upregulated by luteolin. Overexpression of miR-6809-5p suppressed HCC cell growth, while knockdown of miR-6809-5p reversed the anticancer effect of luteolin. With regards to its signaling mechanism, miR-6809-5p directly targets FLOT1in HCC cells. Enforced expression of FLOT1 prevented miR-6809-5p-mediated growth suppression. Downregulation of FLOT1 exerted growth-suppressive effects on HCC cells. Multiple signaling pathways including Erk1/2, p38, JNK, and NF-κB/p65 were inactivated by miR-6809-5p overexpression or FLOT1 downregulation.
CONCLUSION: These findings indicated that miR-6809-5p mediates the growth-suppressive activity of luteolin in HCC, which is causally linked to FLOT1 downregulation. Induction of miR-6809-5p may provide therapeutic benefits in the treatment of HCC.

PMID: 30668319 [PubMed - as supplied by publisher]



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Orlistat Displays Antitumor Activity and Enhances the Efficacy of Paclitaxel in Human Hepatoma Hep3B Cells.

Orlistat Displays Antitumor Activity and Enhances the Efficacy of Paclitaxel in Human Hepatoma Hep3B Cells.

Chem Res Toxicol. 2019 Jan 22;:

Authors: You BJ, Chen LY, Hsu PH, Sung PH, Hung YC, Lee HZ

Abstract
Orlistat has been proved to be an effective fatty acid synthase inhibitor that is able to inhibit the proliferation and induce apoptosis in many cancer cell types. However, the anticancer effects of orlistat on hepatocellular carcinoma are undefined. We found that orlistat inhibited cell growth and induced G0/G1 cell cycle arrest with increased cyclin D, cyclin E, and p21 expression in human hepatoma Hep3B cells. Furthermore, protein expression of cyclin A, cyclin B, Cdk1, Cdk2, and Cdk4 was reduced by orlistat. This study investigated the role of lipid metabolism on orlistat-induced human hepatoma Hep3B cell death. The decrease in the expression of key enzymes in fatty acid metabolism, including FASN, ACOT8, PPT1, FABP1, CPT1 and CPT2, was observed after orlistat treatment. We also demonstrated that peroxisomal activity was involved in the orlistat-induced Hep3B cell death. In this study, we established an in vitro model to investigate the effect of orlistat on lipid accumulation. We found that orlistat significantly inhibited the cellular lipid content when administered in fatty acid overload conditions in Hep3B cells. Combination treatment of orlistat and paclitaxel was able to induce a synergistic effect on growth inhibition and cell apoptosis in Hep3B cells. Our data suggested that orlistat displays antitumor activity and enhances the efficacy of paclitaxel in Hep3B cells.

PMID: 30667213 [PubMed - as supplied by publisher]



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Scutellarin suppresses proliferation and promotes apoptosis in A549 lung adenocarcinoma cells via AKT/mTOR/4EBP1 and STAT3 pathways.

Related Articles

Scutellarin suppresses proliferation and promotes apoptosis in A549 lung adenocarcinoma cells via AKT/mTOR/4EBP1 and STAT3 pathways.

Thorac Cancer. 2019 Jan 21;:

Authors: Cao P, Liu B, Du F, Li D, Wang Y, Yan X, Li X, Li Y

Abstract
BACKGROUND: Scutellarin (SCU), a flavonoid isolated from Erigeron breviscapus (Vant.) Hand.-Mazz., increases autophagy and apoptosis in the adenocarcinoma A549 cell line, which is resistant to cisplatin. However, whether SCU alone has antitumor activity against non-small cell lung cancer (NSCLC) is unknown.
METHODS: Cell Counting Kit-8, flow cytometry, colony formation, Hoechst 33258 staining, and Western blot analyses were used to examine the proliferation and apoptosis of A549 cells treated with SCU and the possible molecular mechanisms.
RESULTS: The cell viability assay indicated that SCU markedly suppressed the proliferation of A549 cells in concentration and time-dependent manners. SCU caused significant G0/G1 phase arrest and apoptosis, as evidenced by flow cytometric analyses, Hoechst 33258 staining, and Western blot analyses of cyclin D1, cyclin E, BCL-2, cleaved-caspase-3, and BAX. Furthermore, SCU treatment reduced the level of pan-AKT, phosphorylated (p)-mTOR, mTOR, BCL-XL, STAT3, and p-STAT3, and increased the level of 4EBP1.
CONCLUSIONS: SCU can suppress proliferation and promote apoptosis in A549 cells through AKT/mTOR/4EBP1 and STAT3 pathways. This suggests that SCU may be developed into a promising antitumor agent for treating NSCLC.

PMID: 30666790 [PubMed - as supplied by publisher]



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Generation of a novel model of primary human cell senescence through Tenovin-6 mediated inhibition of sirtuins.

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Generation of a novel model of primary human cell senescence through Tenovin-6 mediated inhibition of sirtuins.

Biogerontology. 2019 Jan 21;:

Authors: Walters HE, Cox LS

Abstract
Cell senescence, a state of cell cycle arrest and altered metabolism with enhanced pro-inflammatory secretion, underlies at least some aspects of organismal ageing. The sirtuin family of deacetylases has been implicated in preventing premature ageing; sirtuin overexpression or resveratrol-mediated activation of sirtuins increase longevity. Here we show that sirtuin inhibition by short-term, low-dose treatment with the experimental anti-cancer agent Tenovin-6 (TnV6) induces cellular senescence in primary human fibroblasts. Treated cells cease proliferation and arrest in G1 of the cell cycle, with elevated p21 levels, DNA damage foci, high mitochondrial and lysosomal load and increased senescence-associated β galactosidase activity, together with actin stress fibres and secretion of IL-6 (indicative of SASP upregulation). Consistent with a histone deacetylation role of SIRT1, we find nuclear enlargement, possibly resulting from chromatin decompaction on sirtuin inhibition. These findings highlight TnV6 as a drug that may be useful in clinical settings where acute induction of cell senescence would be beneficial, but also provide the caveat that even supposedly non-genotoxic anticancer drugs can have unexpected and efficacy-limiting impacts on non-transformed cells.

PMID: 30666570 [PubMed - as supplied by publisher]



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Suppression of cell cycle progression by poly(ADP-ribose) polymerase inhibitor PJ34 in neural stem/progenitor cells.

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Suppression of cell cycle progression by poly(ADP-ribose) polymerase inhibitor PJ34 in neural stem/progenitor cells.

Biochem Biophys Res Commun. 2019 Jan 18;:

Authors: Kurokawa S, Okuda A, Nishizawa Y, Furukawa K, Sumihiro A, Nakaji Y, Tanaka S, Takehashi M

Abstract
Neural stem/progenitor cells (NSPCs) express higher levels of poly(ADP-ribose) polymerase 1 (PARP1) than mouse embryonic fibroblasts (MEFs). Inhibition of PARP induces the expression of several genes in the p53 signaling pathway, including p21, which is critical for cell cycle control at the G1/S phase, triggers apoptosis, and suppresses cell cycle progression in NSPCs. However, upon the up-regulation of p21, the cell cycle does not arrest at any specific phase. In the present study, the expression of genes specific to the G1/S and G2/M phases of the cell cycle were analyzed following treatment with PJ34 (N-[6-oxo-5,6-dihydro-phenanthridin-2-yl]-N,N-dimethylacetamide), an inhibitor of PARP. PJ34 treatment dramatically down-regulated cyclin B1 expression in NSPCs, but not in MEFs, which was confirmed by a promoter assay. Down-regulation of FoxM1 and B-MYB revealed that the down-regulation of cyclin B occurs at the transcriptional level. GADD45 was also specifically up-regulated in NSPCs. Taken together, the activation of p53 by PJ34 treatment in NSPCs induced changes in the expression of genes involved in the cell cycle. Fluorescence-activated cell sorting analysis revealed that PJ34 treatment suppressed G2/M to G1 progression in NSPCs, but not in MEFs. These data indicate that PJ34 treatment inhibits cyclin expression at the mRNA level and suppresses cell cycle progression in NSPCs.

PMID: 30665718 [PubMed - as supplied by publisher]



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Antioxidant Activities and Repair Effects on Oxidatively Damaged HK-2 Cells of Tea Polysaccharides with Different Molecular Weights.

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Antioxidant Activities and Repair Effects on Oxidatively Damaged HK-2 Cells of Tea Polysaccharides with Different Molecular Weights.

Oxid Med Cell Longev. 2018;2018:5297539

Authors: Sun XY, Wang JM, Ouyang JM, Kuang L

Abstract
This study aims at investigating the antioxidant activity and repair effect of green tea polysaccharide (TPS) with different molecular weights (Mw) on damaged human kidney proximal tubular epithelial cells (HK-2). Scavenging activities on hydroxyl radical (·OH) and ABTS radical and reducing power of four kinds of TPS with Mw of 10.88 (TPS0), 8.16 (TPS1), 4.82 (TPS2), and 2.31 kDa (TPS3) were detected. A damaged cell model was established using 2.6 mmol/L oxalate to injure HK-2 cells. Then, different concentrations of TPSs were used to repair the damaged cells. Index changes of subcellular organelles of HK-2 cells were detected before and after repair. The four kinds of TPSs possessed radical scavenging activity and reducing power, wherein TPS2 with moderate Mw presented the strongest antioxidant activity. After repair by TPSs, cell morphology of damaged HK-2 cells was gradually restored to normal conditions. Reactive oxygen species production decreased, and mitochondrial membrane potential (Δψm) of repaired cells increased. Cells of G1 phase arrest were inhibited, and cell proportion in the S phase increased. Lysosome integrity improved, and cell apoptotic rates significantly reduced in the repaired group. The four kinds of TPSs with varying Mw displayed antioxidant activity and repair effect on the mitochondria, lysosomes, and intracellular DNA. TPS2, with moderate Mw, showed the strongest antioxidant activity and repair effect; it may become a potential drug for prevention and treatment of kidney stones.

PMID: 30584463 [PubMed - indexed for MEDLINE]



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Silencing the FOLR2 Gene Inhibits Cell Proliferation and Increases Apoptosis in the NCI-H1650 Non-Small Cell Lung Cancer Cell Line via Inhibition of AKT/Mammalian Target of Rapamycin (mTOR)/Ribosomal Protein S6 Kinase 1 (S6K1) Signaling.

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Silencing the FOLR2 Gene Inhibits Cell Proliferation and Increases Apoptosis in the NCI-H1650 Non-Small Cell Lung Cancer Cell Line via Inhibition of AKT/Mammalian Target of Rapamycin (mTOR)/Ribosomal Protein S6 Kinase 1 (S6K1) Signaling.

Med Sci Monit. 2018 Nov 11;24:8064-8073

Authors: Xu X, Jiang J, Yao L, Ji B

Abstract
BACKGROUND The FOLR2 gene encodes folate receptor-beta (FR-beta), which is expressed by tumor-associated macrophages. The effects of FOLR2 gene expression in non-small cell lung cancer (NSCLC) remains unknown. This study aimed to investigate the effects of FOLR2 gene expression and gene silencing in human NSCLC cell lines and normal human bronchial epithelial (HBE) cells in vitro. MATERIAL AND METHODS Quantitative real-time polymerase chain reaction (qRT-PCR) and Western blot were performed to detect the expression of the FOLR2 gene, cell cycle and apoptosis-associated genes in normal HBE cells and the NSCLC cell lines, A549, NCI-H1299, NCI-H1650, and NCI-H460. Using small interfering RNA (siRNA), or silencing RNA, FOLR2 gene silencing was performed for NCI-H1650 cells. Cell counting kit-8 (CCK-8) was used to measure cell viability. Cell cycle and apoptosis were determined using flow cytometry. Western blot evaluated the expression of Akt, mTOR, and S6K1 signaling. RESULTS Expression of the FOLR2 gene was increased in NSCLC cells compared with normal HBE cells. Silencing of the expression of the FOLR2 gene in NCI-H1650 cells reduced cell viability, increased cell apoptosis, and arrested cells in the G1 phase of the cell cycle, decreased the expression of cyclin D1, upregulated expression of cell cycle inhibitors, p21 and p27, upregulated the expression of Bax/Bcl-2, and inhibited phosphorylation of AKT, mTOR, and S6K1. CONCLUSIONS Silencing of the FOLR2 gene inhibited phosphorylation of AKT, mTOR, and S6K1, inhibited cell proliferation and increased apoptosis in the NCI-H1650 human NSCLC cell line.

PMID: 30415267 [PubMed - indexed for MEDLINE]



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Stereotactic Radiosurgery and Immune Checkpoint Inhibitors in the Management of Brain Metastases.

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Stereotactic Radiosurgery and Immune Checkpoint Inhibitors in the Management of Brain Metastases.

Int J Mol Sci. 2018 Oct 07;19(10):

Authors: Lehrer EJ, McGee HM, Peterson JL, Vallow L, Ruiz-Garcia H, Zaorsky NG, Sharma S, Trifiletti DM

Abstract
Brain metastases traditionally carried a poor prognosis with an overall survival of weeks to months in the absence of treatment. Radiation therapy modalities include whole brain radiation therapy (WBRT) and stereotactic radiosurgery (SRS). WBRT delivers a relatively low dose of radiation, has neurocognitive sequelae, and has not been investigated for its immunostimulatory effects. Furthermore, WBRT exposes the entire intracranial tumor immune microenvironment to radiation. SRS delivers a high dose of conformal radiation with image guidance to minimize dose to surrounding normal brain tissue, and appears to promote anti-tumor immunity. In parallel with many of these discoveries, immune checkpoint inhibitors (ICIs) have demonstrated a survival advantage in multiple malignancies commonly associated with brain metastases (e.g., melanoma). Combination SRS and ICI are theorized to be synergistic in anti-tumor immunity directed to brain metastases. The purpose of this review is to explore the synergy of SRS and ICIs, including pre-clinical data, existing clinical data, and ongoing prospective trials.

PMID: 30301252 [PubMed - indexed for MEDLINE]



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Escin induces apoptosis in human bladder cancer cells: An in vitro and in vivo study.

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Escin induces apoptosis in human bladder cancer cells: An in vitro and in vivo study.

Eur J Pharmacol. 2018 Dec 05;840:79-88

Authors: Cheng CL, Chao WT, Li YH, Ou YC, Wang SS, Chiu KY, Yuan SY

Abstract
Escin (β-escin) is used as traditional folk medicine. The anti-tumour effects of escin have been demonstrated in vitro in certain cell lines, but its effect on bladder cancer has not been well investigated. In this study, the apoptotic activity of escin dissolved in dimethyl sulfoxide (DMSO) in bladder cancer cells and normal peripheral blood mononuclear cells (PBMC) and SV-HUC1 cells (controls) was determined. Cell cytotoxicity was assessed using the MTT assay. Cell cycle, Reactive oxygen species (ROS) generation, annexin V-FITC staining (for detecting early apoptosis), and changes in mitochondrial membrane potential were evaluated using flow cytometry. Expression of apoptosis-related proteins such as Fas (CD95) death receptor/FADD (Fas-associated protein with death domain) and BCL2 family of proteins was assessed using immunoblotting. Escin dose-dependently inhibited the growth of human bladder cancer cells, and showed IC50 of ~40 μM. The cell population in the sub-G1 phase, annexin-V staining, Fas expression, ratio of BAX/BCL2, cleavage of activated caspase-3/-8/-9, increase in poly (ADP-ribose) polymerase (PARP) levels, and suppression of nuclear factor kappa B (NF-κB) were observed after 24 h of escin treatment. Escin decreased mitochondrial membrane potential and increased cytochrome C release via generation of reactive oxygen species, which led to apoptosis of bladder cancer cells. Furthermore, escin effectively inhibited bladder tumour growth in a xenograft mouse model. Together, these results demonstrate that escin induces apoptosis in human bladder cancer cells through the Fas death receptor and mitochondrial pathways and inhibits bladder tumour growth. Escin is a potential chemotherapeutic agent for bladder cancer.

PMID: 30287153 [PubMed - indexed for MEDLINE]



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Exogenous C₈-Ceramide Induces Apoptosis by Overproduction of ROS and the Switch of Superoxide Dismutases SOD1 to SOD2 in Human Lung Cancer Cells.

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Exogenous C₈-Ceramide Induces Apoptosis by Overproduction of ROS and the Switch of Superoxide Dismutases SOD1 to SOD2 in Human Lung Cancer Cells.

Int J Mol Sci. 2018 Oct 02;19(10):

Authors: Chang YC, Fong Y, Tsai EM, Chang YG, Chou HL, Wu CY, Teng YN, Liu TC, Yuan SS, Chiu CC

Abstract
Ceramides, abundant sphingolipids on the cell membrane, can act as signaling molecules to regulate cellular functions including cell viability. Exogenous ceramide has been shown to exert potent anti-proliferative effects against cancer cells, but little is known about how it affects reactive oxygen species (ROS) in lung cancer cells. In this study, we investigated the effect of N-octanoyl-D-erythro-sphingosine (C₈-ceramide) on human non-small-cell lung cancer H1299 cells. Flow cytometry-based assays indicated that C₈-ceramide increased the level of endogenous ROS in H1299 cells. Interestingly, the ratio of superoxide dismutases (SODs) SOD1 and SOD2 seem to be regulated by C₈-ceramide treatment. Furthermore, the accumulation of cell cycle G1 phase and apoptotic populations in C₈-ceramide-treated H1299 cells was observed. The results of the Western blot showed that C₈-ceramide causes a dramatically increased protein level of cyclin D1, a critical regulator of cell cycle G1/S transition. These results suggest that C₈-ceramide acts as a potent chemotherapeutic agent and may increase the endogenous ROS level by regulating the switch of SOD1 and SOD2, causing the anti-proliferation, and consequently triggering the apoptosis of NSCLC H1299 cells. Accordingly, our works may give a promising strategy for lung cancer treatment in the future.

PMID: 30279365 [PubMed - indexed for MEDLINE]



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Shugoshin 1 is dislocated by KSHV-encoded LANA inducing aneuploidy.

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Shugoshin 1 is dislocated by KSHV-encoded LANA inducing aneuploidy.

PLoS Pathog. 2018 09;14(9):e1007253

Authors: Lang F, Sun Z, Pei Y, Singh RK, Jha HC, Robertson ES

Abstract
Shugoshin-1 (Sgo1) protects the integrity of the centromeres, and H2A phosphorylation is critical for this process. The mitotic checkpoint kinase Bub1, phosphorylates H2A and ensures fidelity of chromosome segregation and chromosome number. Oncogenic KSHV induces genetic alterations through chromosomal instability (CIN), and its essential antigen LANA regulates Bub1. We show that LANA inhibits Bub1 phosphorylation of H2A and Cdc20, important for chromosome segregation and mitotic signaling. Inhibition of H2A phosphorylation at residue T120 by LANA resulted in dislocation of Sgo1, and cohesin from the centromeres. Arrest of Cdc20 phosphorylation also rescued degradation of Securin and Cyclin B1 at mitotic exit, and interaction of H2A, and Cdc20 with Bub1 was inhibited by LANA. The N-terminal nuclear localization sequence domain of LANA was essential for LANA and Bub1 interaction, reversed LANA inhibited phosphorylation of H2A and Cdc20, and attenuated LANA-induced aneuploidy and cell proliferation. This molecular mechanism whereby KSHV-induced CIN, demonstrated that the NNLS of LANA is a promising target for development of anti-viral therapies targeting KSHV associated cancers.

PMID: 30212568 [PubMed - indexed for MEDLINE]



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Synergistic antiproliferative and differentiating effect of 2,4-monofurfurylidene-tetra-O-methylsorbitol and 4,6-dimethyl-2-(3,4,5-trimethoxyphenylamino)pyrimidine on primary and immortalized keratinocytes.

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Synergistic antiproliferative and differentiating effect of 2,4-monofurfurylidene-tetra-O-methylsorbitol and 4,6-dimethyl-2-(3,4,5-trimethoxyphenylamino)pyrimidine on primary and immortalized keratinocytes.

Biomed Pharmacother. 2018 Nov;107:155-167

Authors: Serafino A, Nicotera G, Andreola F, Giovannini D, Zonfrillo M, Sferrazza G, Calcaterra A, De Angelis C, Camponeschi C, Pierimarchi P

Abstract
Psoriasis is one of the most common chronic autoinflammatory skin disease, associated with hyperproliferation and abnormal differentiation of keratinocytes, inflammation, and angiogenesis. The available treatments for psoriasis are not curative and may have numerous side effects, and topical administration is preferred over systemic therapy due to the reduced systemic burden of the drug. Thus, novel and more efficacious formulations of anti-inflammatory and/or differentiating compounds for topical application could be very useful for the disease management and for improving the quality of life of the patients. Here we evaluated the potential as anti-psoriatic of an equimolar mixture of two compounds, 2,4-Monofurfurylidene-tetra-O-methylsorbitol (Compound A) and 4,6-dimethyl-2-(3,4,5-trimethoxyphenylamino)pyrimidine (Compound B), that, used individually, are known to possess immunomodulating properties (Compound A) and keratolitic and anti-inflammatory activity (Compound B). Human immortalized keratinocyte cell line (HaCaT cells) and primary human keratinocyte cells from adult donor (HEKa) were used as in vitro experimental models. We show that the mix A + B exhibits antiproliferative activity and induces terminal differentiation more efficiently than compounds A and B used individually. We confirm that the compound B is the active ingredient of the mixture and the mainly responsible for anti-psoriatic activity, but the mix A + B is more effective and possesses lower cytotoxicity than the compound B alone. This could be ascribable to the association with compound A, that is known to possess, in addition to the immunomodulating ability, antioxidant and antiradical action. Our results indicate that mix A + B could be a suitable candidate for a new cosmeceutical formulation for topical treatment of psoriasis.

PMID: 30086462 [PubMed - indexed for MEDLINE]



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Severity, change over time and risk factors of anxiety in children with cancer depends on anxiety instrument used.

Severity, change over time and risk factors of anxiety in children with cancer depends on anxiety instrument used.

Psychooncology. 2019 Jan 22;:

Authors: Lazor T, Pole JD, De Souza C, Schechter T, Grant R, Davis H, Duong N, Stein E, Cook S, Tigelaar L, Sung L

Abstract
OBJECTIVE: The primary objective was to describe severity of anxiety among children and adolescents receiving chemotherapy for cancer or undergoing hematopoietic stem cell transplantation (HSCT). Secondary objectives were to describe how anxiety changes over time and determine factors associated with anxiety.
METHODS: Participants were aged 8-18 and either receiving chemotherapy for cancer or undergoing HSCT for any indication. Respondents self-reported three anxiety measurement instruments at chemotherapy cycle or HSCT conditioning start and three weeks later.
RESULTS: The proportion of participants with severe anxiety ranged from 10/77 (13.0%) to 22/77 (28.6%) depending on instrument used. Change over time also varied across instruments, with significant improvement observed with PedsQL (procedural) (P=0.037) and PROMIS (P=0.013). Factors associated with anxiety similarly varied by instrument. Older age was associated with more anxiety on the PedsQL (worry) (P=0.036) and higher household income was associated with less anxiety on the MASC-10 (P=0.028).
CONCLUSIONS: While we found that a small proportion of patients met or exceeded thresholds for severe anxiety, we also noted that severity, change over time and predictors of anxiety varied depending on instrument used. Future research should ensure selected instruments measure the construct of interest and describe how anxiety is conceptualized in the study.

PMID: 30669186 [PubMed - as supplied by publisher]



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Accelerated progression of IDH mutant glioma after first recurrence.

Accelerated progression of IDH mutant glioma after first recurrence.

Neuro Oncol. 2019 Jan 22;:

Authors: Miller JJ, Loebel F, Juratli TA, Tummala SS, Williams EA, Batchelor TT, Arrillaga-Romany I, Cahill DP

Abstract
Background: Isocitrate dehydrogenase (IDH) mutant gliomas are a distinct subtype, reflected in WHO 2016 revised diagnostic criteria. To inform IDH-targeting trial design, we sought to characterize outcomes exclusively within IDH mutant gliomas.
Methods: We retrospectively analyzed 275 IDH mutant glioma patients treated at our institution. Progression was determined using low-grade glioma RANO criteria. We calculated survival statistics with the Kaplan-Meier method and survival proportions were correlated with molecular, histologic and clinical factors.
Results: During a median follow-up of 6.4 years, 44 deaths (7.6%) and 149 first progression (PFS1) events (54.1%) were observed. Median PFS1 was 5.7 years (95% CI 4.7-6.4) and OS was 18.7 years (95% CI 12.2 years - not reached). Consistent with prior studies, we observed an association of grade, molecular diagnosis and treatment with PFS1. Following the first progressive episode, 79 second progression events occurred during a median follow-up period of 4.1 years. Median PFS following an initial progressive event (PFS2) was accelerated at 3.1 years (95% CI 2.1-4.1). PFS2 was a surrogate prognostic marker, identifying patients with poorer overall survival.
Conclusion: We report outcomes in a large cohort of IDH mutant glioma, providing a well-characterized historical control population for future clinical trial design. Notably, the interval between first to second recurrence (PFS2 - 3.0 years) is shorter than time from diagnosis to first recurrence (PFS1 - 5.7 years), evidence that these tumors clinically degenerate from an indolent course to an accelerated malignant phase. Thus, PFS2 represents a relevant outcome for trials investigating drug efficacy at recurrence.

PMID: 30668823 [PubMed - as supplied by publisher]



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Liquid biopsy in Central Nervous System metastases: a RANO review and proposals for clinical applications.

Liquid biopsy in Central Nervous System metastases: a RANO review and proposals for clinical applications.

Neuro Oncol. 2019 Jan 22;:

Authors: Boire A, Brandsma D, Brastianos PK, Le Rhun E, Ahluwalia M, Junk L, Glantz M, Groves MD, Lee EQ, Lin N, Raizer J, Rudà R, Weller M, van den Bent MJ, Vogelbaum MA, Chang S, Wen PY, Soffietti R

Abstract
Liquid biopsies collect and analyze tumor components in body fluids, and there is an increasing interest in the investigation of liquid biopsies as a surrogate for tumor tissue in the management of both primary and secondary brain tumors. Herein we critically review available literature on spinal fluid and plasma circulating tumor cells (CTCs) and cell-free tumor (ctDNA) for diagnosis and monitoring of leptomeningeal and parenchymal brain metastases. We discuss technical issues and propose several potential applications of liquid biopsies in different clinical settings, i.e. for initial diagnosis, for assessment during treatment and for guidance of treatment decisions. Last, ongoing clinical studies on CNS metastases, that include liquid biopsies, are summarized and recommendations for future clinical studies are provided.

PMID: 30668804 [PubMed - as supplied by publisher]



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Controversies in relation to neck management in N0 early oral tongue cancer.

Controversies in relation to neck management in N0 early oral tongue cancer.

Jpn J Clin Oncol. 2019 Jan 22;:

Authors: Hanai N, Asakage T, Kiyota N, Homma A, Hayashi R

Abstract
The standard local treatment for early-stage tongue cancer with no clinical lymph node metastases is partial glossectomy. The frequency of occult lymph node metastasis is ~20-30%. Thus, whether prophylactic neck dissection with glossectomy or glossectomy alone should be performed has been a controversial issue since the 1980s. Both treatments have advantages and disadvantages; however, especially in cases involving prophylactic neck dissection, surgical invasion and complications including the cosmetic disadvantage caused by neck skin incision, accessory nerve paralysis or facial nerve (mandibular marginal branch) paralysis, stiffness of the shoulder or neck and a feeling of neck tightness have been considered issues that could be solved by providing less-invasive treatment to the 70-80% of patients without occult lymph node metastasis.A more accurate preoperative diagnosis and strict follow-up are required to provide minimally invasive treatment while ensuring the therapeutic effect. It is also necessary to narrow down the target based on the risk-benefit balance. The depth of invasion should be considered in cases involving oral cavity malignancies. This was also taken into account in recent revisions of eighth edition of the TNM Classification of Malignant Tumors and it is an important factor for N0 neck management. This review article summarizes previous and recent reports on neck management, focusing on the risk-benefit and future perspectives of the diagnosis and treatment of early-stage oral tongue cancer. This effort is an attempt to establish treatment from the patient's point of view, with the patient's quality of life taken into account.

PMID: 30668761 [PubMed - as supplied by publisher]



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TNM classification of gynaecological malignant tumours, eighth edition: changes between the seventh and eighth editions.

TNM classification of gynaecological malignant tumours, eighth edition: changes between the seventh and eighth editions.

Jpn J Clin Oncol. 2019 Jan 22;:

Authors: Tokunaga H, Shimada M, Ishikawa M, Yaegashi N

Abstract
The staging classification of gynaecological malignancies has been revised by the International Federation of Gynecology and Obstetrics (FIGO) and has been subsequently reviewed by the FIGO Committee on Gynecologic Oncology, the International Union for Cancer Control TNM Committee and the American Joint Committee on Cancer. The major change in the eighth edition of TNM classification of gynaecological malignant tumours is integrated staging for ovarian, fallopian tube and primary peritoneal carcinoma, whereas the seventh edition distinguished 'ovary and primary peritoneal carcinoma' and 'Fallopian tube carcinoma'. Furthermore, the new edition describes a prognostic factor grid for vulvar, cervical, endometrial and ovarian, fallopian tube and primary peritoneal carcinoma. If these factors contribute strongly to the prognosis, they may be incorporated into future staging classifications. This paper reviews the staging system for gynaecological malignancies, how it was developed, and current problems to be resolved.

PMID: 30668753 [PubMed - as supplied by publisher]



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Subgroups of parotid gland infiltrating ductal carcinoma benefit from postoperative radiotherapy: a population-based study.

Subgroups of parotid gland infiltrating ductal carcinoma benefit from postoperative radiotherapy: a population-based study.

Future Oncol. 2019 Jan 22;:

Authors: Lv T, Wang Y, Wang X

Abstract
AIM: To analyze the prognostic factors and the impact of postoperative radiotherapy (PORT) in parotid gland infiltrating ductal carcinoma (IDC).
MATERIALS & METHODS: 252 patients diagnosed with parotid gland IDC were identified from the SEER database. Kaplan-Meier and Cox regression analysis was performed to evaluate the prognostic factors. Propensity score matching was applied then.
RESULTS: Multivariate analysis showed old age and chemotherapy were independent risk factors in parotid gland IDC. Subgroup analysis demonstrated that overall survival (OS) rate of the PORT group was significantly superior to that of the no radiotherapy group in the T3-4 subgroup (p = 0.049), N1 subgroup (p = 0.019) and Tumor, Node, Metastasis (TNM) III subgroup (p = 0.025).
CONCLUSION: PORT improved survival of parotid gland IDC patients within T3-4, N1 and TNM III subgroups.

PMID: 30667284 [PubMed - as supplied by publisher]



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