Αρχειοθήκη ιστολογίου

Δευτέρα 30 Οκτωβρίου 2017

KSHV inhibits stress granule formation by viral ORF57 blocking PKR activation

journal.ppat.1006677.g001

by Nishi R. Sharma, Vladimir Majerciak, Michael J. Kruhlak, Zhi-Ming Zheng

TIA-1 positive stress granules (SG) represent the storage sites of stalled mRNAs and are often associated with the cellular antiviral response. In this report, we provide evidence that Kaposi's sarcoma-associated herpesvirus (KSHV) overcomes the host antiviral response by inhibition of SG formation via a viral lytic protein ORF57. By immunofluorescence analysis, we found that B lymphocytes with KSHV lytic infection are refractory to SG induction. KSHV ORF57, an essential post-transcriptional regulator of viral gene expression and the production of new viral progeny, inhibits SG formation induced experimentally by arsenite and poly I:C, but not by heat stress. KSHV ORF37 (vSOX) bearing intrinsic endoribonuclease activity also inhibits arsenite-induced SG formation, but KSHV RTA, vIRF-2, ORF45, ORF59 and LANA exert no such function. ORF57 binds both PKR-activating protein (PACT) and protein kinase R (PKR) through their RNA-binding motifs and prevents PACT-PKR interaction in the PKR pathway which inhibits KSHV production. Consistently, knocking down PKR expression significantly promotes KSHV virion production. ORF57 interacts with PKR to inhibit PKR binding dsRNA and its autophosphorylation, leading to inhibition of eIF2α phosphorylation and SG formation. Homologous protein HSV-1 ICP27, but not EBV EB2, resembles KSHV ORF57 in the ability to block the PKR/eIF2α/SG pathway. In addition, KSHV ORF57 inhibits poly I:C-induced TLR3 phosphorylation. Altogether, our data provide the first evidence that KSHV ORF57 plays a role in modulating PKR/eIF2α/SG axis and enhances virus production during virus lytic infection.

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Clinical Manifestations and Pathophysiological Mechanisms of the Wiskott-Aldrich Syndrome

AbstractThe Wiskott-Aldrich syndrome (WAS) is a rare X-linked disorder originally described by Dr. Alfred Wiskott in 1937 and Dr. Robert Aldrich in 1954 as a familial disease characterized by infections, bleeding tendency, and eczema. Today, it is well recognized that the syndrome has a wide clinical spectrum ranging from mild, isolated thrombocytopenia to full-blown presentation that can be complicated by life-threatening hemorrhages, immunodeficiency, atopy, autoimmunity, and cancer. The pathophysiology of classic and emerging features is being elucidated by clinical studies, but remains incompletely defined, which hinders the application of targeted therapies. At the same time, progress of hematopoietic stem cell transplantation and gene therapy offer optimistic prospects for treatment ...

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AtHKT1 drives adaptation of Arabidopsis thaliana to salinity by reducing floral sodium content

journal.pgen.1007086.g001

by Dong An, Jiu-Geng Chen, Yi-Qun Gao, Xiang Li, Zhen-Fei Chao, Zi-Ru Chen, Qian-Qian Li, Mei-Ling Han, Ya-Ling Wang, Yong-Fei Wang, Dai-Yin Chao

Arabidopsis thaliana high-affinity potassium transporter 1 (AtHKT1) limits the root-to-shoot sodium transportation and is believed to be essential for salt tolerance in A. thaliana. Nevertheless, natural accessions with 'weak allele' of AtHKT1, e.g. Tsu-1, are mainly distributed in saline areas and are more tolerant to salinity. These findings challenge the role of AtHKT1 in salt tolerance and call into question the involvement of AtHKT1 in salinity adaptation in A. thaliana. Here, we report that AtHKT1 indeed drives natural variation in the salt tolerance of A. thaliana and the coastal AtHKT1, so-called weak allele, is actually hyper-functional in reducing flowers sodium content upon salt stress. Our data showed that AtHKT1 positively contributes to saline adaptation in a linear manner. Forward and reverse genetics analysis established that the single AtHKT1 locus is responsible for the variation in the salinity adaptation between Col-0 and Tsu-1. Reciprocal grafting experiments revealed that shoot AtHKT1 determines the salt tolerance of Tsu-1, whereas root AtHKT1 primarily drives the salt tolerance of Col-0. Furthermore, evidence indicated that Tsu-1 AtHKT1 is highly expressed in stems and is more effective compared to Col-0 AtHKT1 at limiting sodium flow to the flowers. Such efficient retrieval of sodium to the reproductive organ endows Tsu-1 with stronger fertility compared to Col-0 upon salt stress, thus improving Tsu-1 adaptation to a coastal environment. To conclude, our data not only confirm the role of AtHKT1 in saline adaptation, but also sheds light on our understanding of the salt tolerance mechanisms in plants.

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A dominant-negative mutant inhibits multiple prion variants through a common mechanism

journal.pgen.1007085.g001

by Fen Pei, Susanne DiSalvo, Suzanne S. Sindi, Tricia R. Serio

Prions adopt alternative, self-replicating protein conformations and thereby determine novel phenotypes that are often irreversible. Nevertheless, dominant-negative prion mutants can revert phenotypes associated with some conformations. These observations suggest that, while intervention is possible, distinct inhibitors must be developed to overcome the conformational plasticity of prions. To understand the basis of this specificity, we determined the impact of the G58D mutant of the Sup35 prion on three of its conformational variants, which form amyloids in S. cerevisiae. G58D had been previously proposed to have unique effects on these variants, but our studies suggest a common mechanism. All variants, including those reported to be resistant, are inhibited by G58D but at distinct doses. G58D lowers the kinetic stability of the associated amyloid, enhancing its fragmentation by molecular chaperones, promoting Sup35 resolubilization, and leading to amyloid clearance particularly in daughter cells. Reducing the availability or activity of the chaperone Hsp104, even transiently, reverses curing. Thus, the specificity of inhibition is determined by the sensitivity of variants to the mutant dosage rather than mode of action, challenging the view that a unique inhibitor must be developed to combat each variant.

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Common, low-frequency, and rare genetic variants associated with lipoprotein subclasses and triglyceride measures in Finnish men from the METSIM study

journal.pgen.1007079.g001

by James P. Davis, Jeroen R. Huyghe, Adam E. Locke, Anne U. Jackson, Xueling Sim, Heather M. Stringham, Tanya M. Teslovich, Ryan P. Welch, Christian Fuchsberger, Narisu Narisu, Peter S. Chines, Antti J. Kangas, Pasi Soininen, Mika Ala-Korpela, Johanna Kuusisto, Francis S. Collins, Markku Laakso, Michael Boehnke, Karen L. Mohlke

Lipid and lipoprotein subclasses are associated with metabolic and cardiovascular diseases, yet the genetic contributions to variability in subclass traits are not fully understood. We conducted single-variant and gene-based association tests between 15.1M variants from genome-wide and exome array and imputed genotypes and 72 lipid and lipoprotein traits in 8,372 Finns. After accounting for 885 variants at 157 previously identified lipid loci, we identified five novel signals near established loci at HIF3A, ADAMTS3, PLTP, LCAT, and LIPG. Four of the signals were identified with a low-frequency (0.005LCAT. Gene-based associations (P−10) support a role for coding variants in LIPC and LIPG with lipoprotein subclass traits. 30 established lipid-associated loci had a stronger association for a subclass trait than any conventional trait. These novel association signals provide further insight into the molecular basis of dyslipidemia and the etiology of metabolic disorders.

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A systems level approach to temporal expression dynamics in Drosophila reveals clusters of long term memory genes

journal.pgen.1007054.g001

by Julianna Bozler, Balint Z. Kacsoh, Hao Chen, William E. Theurkauf, Zhiping Weng, Giovanni Bosco

The ability to integrate experiential information and recall it in the form of memory is observed in a wide range of taxa, and is a hallmark of highly derived nervous systems. Storage of past experiences is critical for adaptive behaviors that anticipate both adverse and positive environmental factors. The process of memory formation and consolidation involve many synchronized biological events including gene transcription, protein modification, and intracellular trafficking: However, many of these molecular mechanisms remain illusive. With Drosophila as a model system we use a nonassociative memory paradigm and a systems level approach to uncover novel transcriptional patterns. RNA sequencing of Drosophila heads during and after memory formation identified a number of novel memory genes. Tracking the dynamic expression of these genes over time revealed complex gene networks involved in long term memory. In particular, this study focuses on two functional gene clusters of signal peptides and proteases. Bioinformatics network analysis and prediction in combination with high-throughput RNA sequencing identified previously unknown memory genes, which when genetically knocked down resulted in behaviorally validated memory defects.

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Reprogrammed Patient-Specific Pig Organs for Human Transplants: Interview with Dr. Jeff Ross, CEO of Miromatrix

The waiting lists for organ transplants are long, and people die daily waiting for transplants that never become available. For those that get a transplant, there is a risk that their immune system could reject it. Using organs from pigs is an alternative to human organs since many are a similar size. However, there is a major risk of rejection, so pig organs aren't suitable for transplantation into humans in an unmodified state. Miromatrix, a company based in Minnesota, is working hard to find ways to make pig organs more suited to individual human patients. They have developed a "reprogramming" process, in which mild detergents are pumped through freshly removed pig organs, stripping them of their constituent cells and leaving a blank "scaffold" onto which the patient's own cells can be seeded and grown. Eventually, the organ could be transplanted into the patient, and, theoretically, would have a reduced risk for immune rejection, since it is composed of the patient's own cells.

The company is preparing to initiate a major preclinical liver trial later this year and are targeting their first human transplant for 2020.

Medgadget asked Miromatrix CEO Dr. Jeff Ross some questions about the concept.

 

Conn Hastings, Medgadget: Can you tell us about the current challenges facing transplant patients, such as immunorejection and transplant shortages, and the need for donor-free alternatives?

Jeff Ross, Miromatrix: The chronic shortage of transplantable organs is the largest challenge facing patients today. Over 115,000 patients are on the national transplant waiting list, but only around 30,000 patients receive an organ annually. The true need for transplantable organs to solve life-threatening diseases is estimated to be much greater. Sadly, an average of 20 patients die each day while waiting for an organ to become available. In addition to the shortage, the other challenge facing patients is the lifelong immunosuppression needed to avoid graft failure following a successful transplantation. That failure carries many complications with it, including the increased risk of serious infections and cancer due to the patient's suppressed immune system. There is a tremendous need to address both the overall shortage of life-saving organs and define new ways to avoid long-term immunosuppression.

 

Medgadget: What challenges are biotech companies facing in trying to develop donor-free transplant alternatives?

Jeff Ross: One of the greatest challenges facing many new biotech companies is the task of overcoming some of the past promises those in the regenerative medicine field made too early. For example, when stem cells first gained prominence, they were touted as a 'cure for everything'. Unfortunately, investors in stem cell companies weren't pleased with the results or their returns. The tide is starting to turn, however, with the reemergence of gene therapy, along with CAR T-cell therapy. The investment into regenerative medicine is starting to flow once again, given the vast potential to bring needed therapies and cures to the market.

When we started Miromatrix in 2009, we determined that it was critical to demonstrate that our perfusion decellularization technology could be commercialized. Our first products — MIROMESH® and MIRODERM®– are developed from valuable acellular decellularized pig livers. Like our bioengineered organs, we remove all of the liver's cells while still leaving its blood vessels and natural properties intact. From there, we take sections of the livers and turn them into high surgical meshes and wound therapy products. As such, we have successfully commercialized MIROMESH® for soft tissue reinforcement and MIRODERM® for the management of wounds.

Regulatory hurdles have also been significant challenges to biotech companies, but recent legislation, such as the Regenerative Medicine Advanced Therapy (RMAT) Designation in the 21st Century Cures Act, is giving cellular and tissue engineered products an accelerated path through the FDA approval process. As such, those products may be able to help those with serious medical conditions and address unmet medical needs sooner.

 

Medgadget: Can you explain the Miromatrix approach to preparing pig organs for transplant, and how this compares with other approaches that other companies are currently attempting, such as 3D printed organs, or genetically modified organs?

Jeff Ross: Our approach is really quite simple and builds upon what nature has already created. We start by taking a pig organ, one that is already being harvested as a byproduct of the meat industry, and remove all of its cellular material with our patented perfusion decellularization technology. This is analogous to remodeling a house — think of the drywall as cells. Once you remove all of the drywalls, you are left with the structure of the house, including the architecture and plumbing. The same is true with the organ. Once we remove all of the organ's cells, the result is an ideal substrate with the appropriate architecture, vascular networks and overall design to be repopulated — or recellularized — with human cells to create a functional organ.

The limitation with 3D printing is one would need to understand all of the micro concentrations of numerous proteins, source them, then print everything, including the vasculature. Currently, the technology isn't there; and from a cost standpoint, starting with a whole organ is far superior.

Another approach that hopes to solve the transplant need is to genetically modify pigs so their organs can be directly implanted into humans. The challenge is that there are many unknowns in terms of identifying and modifying the appropriate genes, regulatory pathways, and removing various viruses known to reside in the pig genome without making modifications. If this proves possible someday, the patient will still need to be immunosuppressed, given the cross-species transplantation.

The advantage of perfusion decellularization and recellularization is the long-term potential to seed the patient's own cells on the decellularized matrix, resulting in a patient-specific organ and negating the need for immunosuppression. We view this as the 'holy grail' of organ transplantation.

 

Medgadget: What organs is Miromatrix currently investigating as potential candidates for this system? Do you envisage any ethical or religious objections from some patients?

Jeff Ross: Our lead organ in development is a transplantable liver to address the need that 40,000 patients die annually of end-stage-liver-failure because there are no drugs, dialysis or devices to help these patients. The only known therapy is a transplantable liver. Our second organ in development is a transplantable kidney. There are over 450,000 patients on hemodialysis today, with a five-year survival rate of about 30% compared with more than 75% with a kidney transplant. Our starting organ scaffold will be pig-derived, and while we remove the pig's cells through our decellularization process, there could be some religious concerns for some patient populations. Future development of the organs based on different starting animal sources could be developed to overcome this concern.

 

Medgadget: Are there any challenges to getting the technique to work at present? In the case of heart transplants, is it necessary to make sure that the tissue can beat before the transplant?

Jeff Ross: Each organ presents its own challenges. With the liver and the kidney, you only need approximately 20% of the total organ function to provide the needed organ function to save a person from liver failure or remove them from dialysis. The heart is more complicated, in that, it requires a 100% function at the time of implant.

 

Medgadget: Can you tell us about your upcoming liver trial and planned first human transplant?

Jeff Ross: Using our patented technology, we will grow a liver in the lab. We'll remove the native organ, then transplant the bioengineered organ into a large animal model. Our goal is to demonstrate that an engineered liver graft allows the animal to survive. Successfully achieving this milestone will then allow us to quickly move towards the clinic, with a goal of performing the first human transplants by the end of 2020.

Link: Miromatrix homepage…

Medgadget?d=yIl2AUoC8zA Medgadget?d=qj6IDK7rITs Medgadget?i=Zt9Gq-4B_vc:wrhqH3avOTg:gIN9


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Using Physiologically Based Pharmacokinetic Modeling for Mechanistic Insight: Cases of Reverse Translation



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Enteropathogenic Escherichia coli O80:H2 in Young Calves with Diarrhea, Belgium

D. Thiry et al.

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Mycobacterium ulcerans DNA in Bandicoot Excreta in Buruli Ulcer–Endemic Area, Northern Queensland, Australia

17-0780-F1-tn.jpg

K. Röltgen et al.

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Incentives for Bushmeat Consumption and Importation among West African Immigrants, Minnesota, USA

E. Walz et al.

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Porcine Astrovirus Type 3 in Central Nervous System of Swine with Polioencephalomyelitis

17-0703-vid1-tn.jpg

B. Arruda et al.

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Identifying factors associated with the direction and significance of microRNA tumor-normal expression differences in colorectal cancer

Abstract

Background

microRNAs are small non-protein-coding RNA molecules that regulate gene expression, and have a potential epigenetic role in disease progression and survival of colorectal cancer. In terms of tumor-normal expression differences, many microRNAs exhibit evidence of being up-regulated in some subjects but down-regulated in others, or are dysregulated only for a subset of the population. We present and implement an approach to identify factors (lifestyle, tumor molecular phenotype, and survival-related) that are associated with the direction and/or significance of these microRNAs' tumor-normal expression differences in colorectal cancer.

Methods

Using expression data for 1394 microRNAs and 1836 colorectal cancer subjects (each with both tumor and normal samples), we perform a dip test to identify microRNAs with multimodal distributions of tumor-normal expression differences. For proximal, distal, and rectal tumor sites separately, these microRNAs are tested for tumor-normal differential expression using a signed rank test, both overall and within levels of each lifestyle, tumor molecular phenotype, and survival-related factor. Appropriate adjustments are made to control the overall FDR.

Results

We identify hundreds of microRNAs whose direction and/or significance of tumor-normal differential expression is associated with one or more lifestyle, tumor molecular phenotype, or survival-related factors.

Conclusions

The results of this study demonstrate the benefit to colorectal cancer researchers to consider multiple subject-level factors when studying dysregulation of microRNAs, whose tumor-related changes in expression can be associated with multiple factors. Our results will serve as a publicly-available resource to provide clarifying information about various factors associated with the direction and significance of tumor-normal differential expression of microRNAs in colorectal cancer.



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Psychological Roots of Palliative Care Benefit in Cancer Psychological Roots of Palliative Care Benefit in Cancer

Early palliative care can improve coping strategies, which in turn are associated with subsequent improved quality of life and reduced depression.Medscape Medical News (Source: Medscape Medical News Headlines)

MedWorm Message: Have you tried our new medical search engine? More powerful than before. Log on with your social media account. 100% free.



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Expression of PYCARD Gene Transcript Variant mRNA in Peripheral Blood Mononuclear Cells of Primary Gout Patients with Different Chinese Medicine Syndromes

Abstract

Objective

To study the expression level and role of apoptosis-associated speck-like protein containing a caspase recruitment domain (PYCARD) gene transcript variant mRNA in peripheral blood mononuclear cells (PBMCs) of primary gout (PG) patients with different Chinese medicine (CM) syndromes.

Methods

The expressions of PYCARD gene transcript variant mRNA and interleukin-1β (IL-1β) mRNA in PBMCs were investigated in 96 PG patients with acute phase (APPG, 44 cases) and non-acute phase (NAPPG, 52 cases) and 30 healthy controls (HCs) by reverse transcription-polymerase chain reaction (PCR) and/or realtime quantitative PCR. PYCARD and nuclear factor-κB (p50) [NF-κB (p50)] protein was detected by Western blot in PBMCs respectively. IL-1β, IL-4 and IL-10 protein levels in plasma of HCs and PG patients were measured by enzyme-linked immuno sorbent assay.

Results

The main CM syndromes in APPG patients were obstruction of dampness and heat syndrome (ODHS, 36.36%) and intermingled phlegm-blood stasis syndrome (IPBSS, 27.27%), while in NAPPG patients were Pi (Spleen)-deficiency induced dampness syndrome (PDIDS, 40.38%) and qi-blood deficiency syndrome (QBDS, 26.92%). It showed statistical significances of the expressions of PYCARD gene and its transcript variant mRNA, the protein of PYCARD and NF-κB (p50) and the plasma IL-1β, IL-4 and IL-10 in APPG, NAPPG, ODHS, IPBSS, PDIDS and QBDS groups, compared with the HC group respectively (P<0.05 or P<0.01). There were also significant differences of mRNA expressions of PYCARD-1 and PYCARD-2 as well as protein expressions of IL-1β, IL-4 and IL-10 among the 4 CM syndromes groups (P<0.05 or P<0.01). Correlation analysis showed positive correlation between the mRNA expressions of PYCARD-1 gene transcript variant and IL-1β in APPG patients (r=0.3088, P=0.0183).

Conclusion

PYCARD gene and its transcript variant may play a critical and regulative role in the inflammatory response of PG patients with different phases and CM syndromes.



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Conn. fire, EMS crews receive body armor

An inter-town Capital Expenditure Grant from the state purchased tactical protective equipment to ensure the safety of first responders

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A mechanically strong and tough anion exchange membrane engineered with non-covalent modalities

Chem. Commun., 2017, Accepted Manuscript
DOI: 10.1039/C7CC07284H, Communication
Xiaojuan Wang, Ping Wang, Yiyan Sun, Jinlei Wang, Huagao Fang, Shanzhong Yang, Haibing Wei, Yunsheng Ding
A mechanically robust and tough anion exchange membrane was constructed by using the strategy of supramolecular modalities. After introducing a secondary amide as a hydrogen-bonding crosslinking motif into the side...
The content of this RSS Feed (c) The Royal Society of Chemistry


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Dexamethasone attenuates methacholine-mediated aquaporin 5 downregulation in human nasal epithelial cells via suppression of NF-κB activation

Background

Cholinergic stimulation plays a major role in inflammatory airway diseases. However, its role in airway surface liquid homeostasis and aquaporin 5 (AQP5) regulation remains unclear. In this study we sought to determine the effects of methacholine and dexamethasone on AQP5 expression in human nasal epithelial cells (HNEpC).

Methods

HNEpC were cultured with methacholine or dexamethasone at 4 concentrations in vitro. The subcellular distribution of AQP5 was explored using immunocytochemistry. The pharmacologic effects of methacholine and dexamethasone on the expression of the phosphorylation of cyclic adenosine monophosphate–responsive element binding protein (p-CREB), AQP5, and nuclear factor-kappaB (NF-κB) were examined using Western blotting.

Results

AQP5 was found to be located in cell membrane and cytoplasm and present in every group without a statistically significant difference. Methacholine inhibited expression of AQP5 and p-CREB in HNEpC, whereas dexamethasone increased these protein levels dose-dependently in a statistically significant manner. In turn, HNEpC treated with methacholine and dexamethasone showed the same trends as those intervened separately with these 2 drugs. Moreover, dexamethasone had the ability to reverse the inhibitory effect of methacholine. Western blotting revealed that, after incubation with 10−4 mol/L methacholine, NF-κB increased significantly, by 186.67%, compared with the untreated control group. Again, such an increase could be significantly reversed after dexamethasone treatment.

Conclusion

NF-κB activation is important for inhibition of p-CREB/AQP5 expression after methacholine intervention, and dexamethasone adjusts it to the opposite side. This observation could provide additional insight into the anti-inflammatory effects of glucocorticoids that contribute to maintaining airway surface liquid and mucosal defense.



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Evaluation of patient nasal saline irrigation practices following endoscopic sinus surgery

Background

Functional endoscopic sinus surgery (FESS) is an effective treatment for chronic rhinosinusitis (CRS). Postoperative management strategies after FESS often vary from surgeon to surgeon. Recent data suggests that nasal saline irrigation following FESS is almost universally recommended; however, patient adherence has not been formally evaluated. The purpose of this study is to evaluate postoperative nasal irrigation practices and its effects on short-term outcomes in post-FESS patients.

Methods

Eighty-two patients were followed prospectively following FESS at a tertiary-academic medical institution for 3 postoperative visits. Patients were surveyed on their irrigation practices (start date, frequency, and volume per irrigation per side), and adherence to prescribed antibiotic and steroid regimens. At each visit, 22-item Sino-Nasal Outcome Test (SNOT-22) questionnaires and endoscopic examinations were evaluated by the Lund-Kennedy Endoscopy Score (LKES). Factors evaluated include: patient demographics (age, sex, ethnicity), preoperative Lund-Mackay and SNOT-22 scores, comorbidities, extent of procedure, and use of nasal packing and/or spacers.

Results

Adherence to irrigation instructions was 82.9%. Factors significantly associated with compliance with irrigation instructions included younger age (p = 0.0022), prior irrigation (p < 0.0001), revision surgery (p = 0.0014), and non-native English language speaking (p = 0.0095). Patients were more likely to irrigate with larger volumes if they were younger (p = 0.0284), had prior irrigation (p < 0.0001), or had revision surgery (p = 0.0056).

Conclusion

Multiple factors are associated with patient compliance with nasal saline irrigation after FESS. Ethnic and cultural considerations, such as language barriers, should also be considered to improve outcomes. Identification of patients who may be noncompliant could potentially benefit from increased preoperative counseling to improve adherence rates.



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Efficacy of nasal irrigation with 200 μg/mL amphotericin B after functional endoscopic sinus surgery: a randomized, placebo-controlled, double-blind study

Background

Previous studies have shown controversial results of topical amphotericin B (AMB) nasal irrigation for chronic rhinosinusitis (CRS). The purpose of this study was to evaluate the efficacy of 200 μg/mL AMB nasal irrigation as an adjuvant therapy after functional endoscopic sinus surgery (FESS).

Methods

Patients with CRS who had received FESS for treatment were recruited and assigned to 1 of 2 groups at random at 1 month postsurgery. In the AMB group patients received nasal irrigation with 200 μg/mL of AMB for 2 months on a daily basis. In the control group normal saline irrigation was given instead. Before FESS and before and after nasal irrigation, patients' sinonasal symptoms were assessed through a questionnaire that was a Taiwanese version of the 22-item Sino-Nasal Outcome Test (TWSNOT-22). In addition, patients received endoscopic examination, acoustic rhinometry, smell test, saccharine transit test, and bacterial cultures obtained from their middle meati.

Results

A total of 73 patients completed the study between December 2014 and January 2017. Among them, 37 received nasal irrigation with AMB solution, and 36 with saline. In the AMB group, scores of TWSNOT-22 dropped significantly after irrigation compared with before (p = 0.005). In the control group, TWSNOT-22 scores did not changed after irrigation (p = 0.451). However, there were no significant differences in TWSNOT-22, endoscopic score, smell test, saccharine transit test, and bacterial culture rate after irrigation between 2 groups.

Conclusion

Our study showed that in post-FESS care, nasal irrigation with 200 μg/mL of AMB did not provide additional benefit compared with saline irrigation.



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