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妊娠期间歇低氧对大鼠胚胎和子代CRFR1受体甲基化的修饰
<正>各种不利因素对妊娠母体和子代生理功能产生不良而长远的影响,流行病学调查和临床研究发现,母体妊娠期和围产期应激,明显增加子代器官和功能发育异常以及各种疾病的患病率。促肾上腺皮质激素释放激素(Corticotropin...
王曦范俊明孟凡森刘宗云陈学群杜继曾
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The anxiogenic effect of prenatal intermittent hypoxia is mediated via CRHR1 in PVN of the hypothalamus
We have previously reported that prenatal intermittent hypoxia(IH,5 km,10.8%O) daily for 4 hours from embryoni...
Jun-Ming FAN~*,Xue-Qun CHEN,Wang XI,Ji-Zeng DU~* Lab of Neurobiology and Physiology,Institute of Neuroscience,School of Medicine,Zhejiang University,Hangzhou 310058,China
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High-altitude hypoxia induces disorders of the brain- endocrine-immune network through activation of corticotropin-releasing factor and its type- 1 receptors被引量:6
2012年
High-altitude hypoxia can induce physiological dysfunction and mountain sickness,but the underlying mechanism is not fully understood.Corticotrophin-releasing factor(CRF) and CRF type-1 receptors(CRFR1) are members of the CRF family and the essential controllers of the physiological activity of the hypothalamo-pituitary-adrenal(HPA) axis and modulators of endocrine and behavioral activity in response to various stressors.We have previously found that high-altitude hypoxia induces disorders of the brain-endocrine-immune network through activation of CRF and CRFR1 in the brain and periphery that include activation of the HPA axis in a time-and dose-dependent manner,impaired or improved learning and memory,and anxiety-like behavioral change.Meanwhile,hypoxia induces dysfunctions of the hypothalamo-pituitary-endocrine and immune systems,including suppression of growth and development,as well as inhibition of reproductive,metabolic and immune functions.In contrast,the small mammals that live on the Qinghai-Tibet Plateau alpine meadow display low responsiveness to extreme high-altitudehypoxia challenge,suggesting well-acclimatized genes and a physiological strategy that developed during evolution through interactions between the genes and environment.All the findings provide evidence for understanding the neuroendocrine mechanisms of hypoxia-induced physiological dysfunction.This review extends these findings.
Xue-qun CHENFan-ping KONGYang ZHAOJi-zeng DU
关键词:促肾上腺皮质激素释放因子内分泌系统免疫网络
低氧抑制大鼠胰岛素分泌机制的初步研究
促肾上腺皮质激素释放激素(corticotropin-releaseing hormone,CRH)在机体应激反应中起着重要的作用。在高糖下,CRH可通过激活分布在胰岛β细胞表面的CRHⅠ型受体(CRHR1)刺激胰岛分泌...
郝珂陈学群杜继曾
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