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1.
Chinese Journal of School Health ; (12): 839-841, 2019.
Article in Chinese | WPRIM | ID: wpr-818665

ABSTRACT

Objective@#To understand demand for emergency education among college students and to analyze the influencing factors, to provide the evidence for college to make prevention and controlling measures.@*Methods@#A survey was conducted among college students who were selected by stratified random sampling from 4 colleges in Liaoning Province, and data were analyzed using general descriptive analysis, chi-square test and multivariate Logistic regression analysis.@*Results@#There were 90.7% of college students who had urgent needs for emergency education. Students who were female(93.9%), seniors(94.4%), learning in medical colleges(97.6%), having mothers with higher education levels(92.6%), and living in urban areas(94.4%) had higher educational needs. Multivariate analysis showed that gender (OR=5.00), school category (OR=3.87), emergency attitude (OR=8.02), active learning behavior (OR=3.91), emergency knowledge self-assessment (OR=6.64) were influencing factors(P<0.05).@*Conclusion@#The emergency knowledge and preparation of college students were insufficient and emergency education was needed. The government and schools should strengthen their attention and input, develop more effective ways to disseminate emergency knowledge among students so as to improve their response ability.

2.
Chinese Journal of Natural Medicines (English Ed.) ; (6): 434-440, 2016.
Article in English | WPRIM | ID: wpr-812613

ABSTRACT

TRPA1 channels are non-selective cation channels that could be activated by plant-derived pungent products, including gingerol, a main active constituent of ginger. Ginger could improve the digestive function; however whether ginger improves the digestive function through activating TRPA1 receptor in gastrointestinal tract has not been investigated. In the present study, gingerol was used to stimulate cell lines (RIN14B or STC-1) while depletion of extracellular calcium. TRPA1 inhibitor (rethenium red) and TRPA1 gene silencing via TRPA1-specific siRNA were also used for mechanistic studies. The intracellular calcium and secretion of serotonin or cholecystokinin were measured by fura-2/AM and ELISA. Stimulation of those cells with gingerol increased intracellular calcium levels and the serotonin or cholecystokinin secretion. The gingerol-induced intracellular calcium increase and secretion (serotonin or cholecystokinin) release were completely blocked by ruthenium red, EGTA, and TRPA1-specific siRNA. In summary, our results suggested that gingerol derived from ginger might improve the digestive function through secretion releasing from endocrine cells of the gut by inducing TRPA1-mediated calcium influx.


Subject(s)
Humans , Calcium , Metabolism , Calcium Channels , Genetics , Metabolism , Catechols , Pharmacology , Cell Line , Fatty Alcohols , Pharmacology , Gastrointestinal Tract , Metabolism , Zingiber officinale , Chemistry , Nerve Tissue Proteins , Genetics , Metabolism , Plant Extracts , Pharmacology , TRPA1 Cation Channel , Transient Receptor Potential Channels , Genetics , Metabolism
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