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首页> 外文期刊>Depression and anxiety >RISK AND RESILIENCE: GENETIC AND ENVIRONMENTAL INFLUENCES ON DEVELOPMENT OF THE STRESS RESPONSE
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RISK AND RESILIENCE: GENETIC AND ENVIRONMENTAL INFLUENCES ON DEVELOPMENT OF THE STRESS RESPONSE

机译:风险和韧性:遗传和环境对应力响应发展的影响

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摘要

Exposure to stressful events during development has consistently been shown to produce long-lasting alterations in the hypothalamic-pituitary-adrenal (HPA) axis, which may increase vulnerability to disease, including posttraumatic stress disorder and other mood and anxiety disorders. Recently reported genetic association studies indicate that these effects may be mediated, in part, by gene x environment interactions involving polymorphisms within two key genes, CRHR1 and FKBP5. Data suggest that these genes regulate HPA axis function in conjunction with exposure to child maltreatment or abuse. In addition, a large and growing body of preclinical research suggests that increased activity of the amygdala-HPA axis induced by experimental manipulation of the amygdala mimics several of the physiological and behavioral symptoms of stress-related psychiatric illness in humans. Notably, interactions between the developing amygdala and HPA axis underlie critical periods for emotional learning, which are modulated by developmental support and maternal care. These translational findings lead to an integrated hypothesis: high levels of early life trauma lead to disease through the developmental interaction of genetic variants with neural circuits that regulate emotion, together mediating risk and resilience in adults.
机译:一直显示,在发育过程中暴露于压力事件会在下丘脑-垂体-肾上腺(HPA)轴上产生持久的变化,这可能增加对疾病的脆弱性,包括创伤后应激障碍以及其他情绪和焦虑症。最近报道的遗传关联研究表明,这些影响可能部分由涉及两个关键基因CRHR1和FKBP5内多态性的基因x环境相互作用介导。数据表明,这些基因与暴露于儿童虐待或虐待一起调节HPA轴功能。此外,大量的临床前研究表明,通过对杏仁核进行实验性操纵而引起的杏仁核-HPA轴活性的增加,模拟了人类与压力有关的精神病的几种生理和行为症状。值得注意的是,发育中的杏仁核和HPA轴之间的相互作用是情感学习的关键时期,这是受发育支持和孕产妇保健调节的。这些转化发现导致了一个综合的假设:早期的高水平创伤会通过遗传变异与调节情绪的神经回路的发展相互作用而导致疾病,从而共同调节成人的风险和适应力。

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