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Institution

Mahidol University

EducationBangkok, Nakhon Pathom, Thailand
About: Mahidol University is a education organization based out in Bangkok, Nakhon Pathom, Thailand. It is known for research contribution in the topics: Population & Malaria. The organization has 23758 authors who have published 39761 publications receiving 878781 citations.


Papers
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Journal ArticleDOI
TL;DR: Investigation of which inflammatory mediators were released from bronchial epithelial cells (BECs) after infection with rhinovirus found IFN-γ–induced protein 10 (IP-10) and RANTES were released in the greatest quantities, followed by IL-6, IL-8, and TNF-α, and found this release is specific to acute virus-induced asthma.
Abstract: Background Rhinovirus-induced acute asthma is the most frequent trigger for asthma exacerbations. Objective We assessed which inflammatory mediators were released from bronchial epithelial cells (BECs) after infection with rhinovirus and then determined whether they were also present in subjects with acute virus-induced asthma, with the aim to identify a biomarker or biomarkers for acute virus-induced asthma. Methods BECs were obtained from bronchial brushings of steroid-naive asthmatic subjects and healthy nonatopic control subjects. Cells were infected with rhinovirus 16. Inflammatory mediators were measured by means of flow cytometry with a cytometric bead array. Subjects with acute asthma and virus infection were recruited; they were characterized clinically by using lung function tests and had blood taken to measure the inflammatory mediators identified as important by the BEC experiments. Results IFN-γ–induced protein 10 (IP-10) and RANTES were released in the greatest quantities, followed by IL-6, IL-8, and TNF-α. Dexamethasone treatment of BECs only partially suppressed IP-10 and TNF-α but was more effective at suppressing RANTES, IL-6, and IL-8. In acute clinical asthma serum IP-10 levels were increased to a greater extent in those with acute virus-induced asthma (median of 604 pg/mL compared with 167 pg/mL in those with non–virus-induced acute asthma, P r = −0.8; P Conclusions IP-10 release is specific to acute virus-induced asthma. Clinical implications Measurement of serum IP-10 could be used to predict a viral trigger to acute asthma.

176 citations

Journal ArticleDOI
TL;DR: High NLR was associated with CAD, ACS, stroke, and composite cardiovascular events, and therefore, NLR may be a useful CVD biomarker.
Abstract: Objective. This systematic review aimed to measure the association between neutrophil lymphocyte ratio (NLR) and cardiovascular disease (CVD) risk. Methods. Relevant studies were identified from Medline and Scopus databases. Observational studies with NLR as a study factor were eligible for review. The outcomes of interest were any type of CVD including acute coronary syndrome, coronary artery disease, stroke, or a composite of these cardiovascular events. Mean differences in NLR between CVD and non-CVD patients were pooled using unstandardized mean difference (USMD). Odds ratios of CVD between high and low NLR groups were pooled using a random effects model. Results. Thirty-eight studies (n=76,002) were included. High NLR was significantly associated with the risks of CAD, ACS, stroke, and composite cardiovascular events with pooled ORs of 1.62 (95% CI: 1.38-1.91), 1.64 (95% CI: 1.30, 2.05), 2.36 (95% CI: 1.44, 2.89), and 3.86 (95% CI: 1.73, 8.64), respectively. In addition, mean NLRs in CAD, ACS, and stroke patients were significantly higher than in control groups. Conclusion. High NLR was associated with CAD, ACS, stroke, and composite cardiovascular events. Therefore, NLR may be a useful CVD biomarker.

176 citations

Journal ArticleDOI
TL;DR: In this article, the gelatinization of cationic tapioca starch embedded in gum matrices was investigated by using a Rapid Visco-Analyzer (RVA), differential scanning calorimeter (DSC), scanning electron microscope (SEM), and rheometer.

176 citations


Authors

Showing all 23819 results

NameH-indexPapersCitations
Nicholas J. White1611352104539
Pete Smith1562464138819
Randal J. Kaufman14049179527
Kevin Marsh12856755356
Barry M. Trost124163579501
John R. Perfect11957352325
Jon Clardy11698356617
François Nosten11477750823
Paul Turner114109961390
Paul Kubes10939341022
Ian M. Adcock10766042380
Peter H. Verburg10746434254
Guozhong Cao10469441625
Carol L. Shields102142446800
Nicholas P. J. Day10270850588
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Performance
Metrics
No. of papers from the Institution in previous years
YearPapers
202329
2022187
20213,386
20203,028
20192,630
20182,531