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1.
China Pharmacy ; (12): 5045-5048, 2017.
Artigo em Chinês | WPRIM | ID: wpr-704470

RESUMO

OBJECTIVE:To provide reference for further promoting the clinical application of chronopharmacology and rational drug use.METHODS:The self-designed questionnairea was used to conduct on-site investigation among participants from 40 hospitals in Anhui province by dint of a meeting.The survey data were analyzed statistically.RESULTS:Totally 170 questionnaires were distributed,and 166 were retrieved,the total response rate was 97.65%.93.37% of the interviewed pharmacists were aware of the circadian rhythms,and 87.35% were aware of the circadian rhythms of more than two kinds;interviewed pharmacists expressed better awareness of indicators like gastric acid secretion (75.30%),blood pressure (67.47%) and growth hormone (66.87%) etc.while their awareness of other diseases like anaphylactic rhinitis (66.87%),gastric ulcer (50.60%) and migraine (50.00%) remained to improve.All the interviewed pharmacists recognized the better therapeutic efficacy (84.34%) and lower side effect (81.33%) of chronopharmacology-referred medication;chronopharmacology characteristics of glucocorticoid drugs were best known (34.34%),followed by antihypertensive drugs (25.30%).CONCLUSIONS:Pharmacists in Anhui province have certain knowledge of chronopharmacology such as biological rhythms,biological process or indicators,biological rhythms of disease and advantage of chronopharmacology-referred medication.It indicates that there has been a foundation for popularizing the concept of chronopharmacology in clinical medication in China;but not often contacted physiological processes or indexes,the understanding of biological rhythm of uncommon diseases are still insufficient,and the understanding of chronopharmacology characteristics of various drugs are far from ideal.

2.
Protein & Cell ; (12): 331-341, 2010.
Artigo em Inglês | WPRIM | ID: wpr-757757

RESUMO

Circadian clocks are the internal time-keeping mechanisms for organisms to synchronize their cellular and physiological processes to the daily light/dark cycles. The molecular mechanisms underlying circadian clocks are remarkably similar in eukaryotes. Neurospora crassa, a filamentous fungus, is one of the best understood model organisms for circadian research. In recent years, accumulating data have revealed complex regulation in the Neurospora circadian clock at transcriptional, posttranscriptional, post-translational and epigenetic levels. Here we review the recent progress towards our understanding of the molecular mechanism of the Neurospora circadian oscillator. These advances have provided novel insights and furthered our understanding of the mechanism of eukaryotic circadian clocks.


Assuntos
Relógios Circadianos , Epigenômica , Neurospora , Genética , Metabolismo , Fisiologia , Neurospora crassa , Genética , Metabolismo , Fisiologia
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