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首页> 外文期刊>Developmental neurobiology >The balance between stress resilience and vulnerability is regulated by corticotropin-releasing hormone during the critical postnatal period for sensory development
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The balance between stress resilience and vulnerability is regulated by corticotropin-releasing hormone during the critical postnatal period for sensory development

机译:在感觉发育的关键产后关键时期,应激弹性和脆弱性之间的平衡由促肾上腺皮质激素释放激素调节

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Determining whether a stressful event will lead to stress-resilience or vulnerability depends probably on an adjustable stress response set point, which is most likely effective during postnatal sensory development and involves the regulation of corticotrophin-releasing hormone (CRH) expression. During the critical period of thermal-control establishment in 3-day-old chicks, heat stress was found to render resilient or sensitized response, depending on the ambient temperature. These two different responses were correlated with the amount of activation of the hypothalamic-pituitary-adrenal (HPA) axis. The expression of CRH mRNA in the hypothalamic paraventricular nucleus was augmented during heat challenge a week after heat conditioning in chicks which were trained to be vulnerable to heat, while it declined in chicks that were trained to be resilient. To study the role of CRH in HPA-axis plasticity, CRH or Crh-antisense were intracranially injected into the third ventricle. CRH caused an elevation of both body temperature and plasma corticosterone level, while Crh-antisense caused an opposite response. Moreover, these effects had long term implications by reversing a week later, heat resilience into vulnerability and vice versa. Chicks that had been injected with CRH followed by exposure to mild heat stress, normally inducing resilience, demonstrated, a week later, an elevation in body temperature, and Crh mRNA level similar to heat vulnerability, while Crh-antisense injected chicks, which were exposed to harsh temperature, responded in heat resilience. These results demonstrate a potential role for CRH in determining the stress resilience/vulnerability balance. (c) 2014 Wiley Periodicals, Inc. Develop Neurobiol 75: 842-853, 2015
机译:确定压力事件是否会导致压力恢复或脆弱性可能取决于可调节的压力反应设定点,这在产后感觉发育过程中最有效,并且涉及促肾上腺皮质激素释放激素(CRH)表达的调节。在3天大的雏鸡建立热控制的关键时期,根据环境温度,发现热应激会产生弹性或敏感反应。这两种不同的反应与下丘脑-垂体-肾上腺(HPA)轴的激活量相关。在受热训练的雏鸡进行热调节一周后,在热刺激过程中,下丘脑室旁核中CRH mRNA的表达增加,而经训练具有弹性的雏鸡中CRH mRNA的表达下降。为了研究CRH在HPA轴可塑性中的作用,将CrH或Crh反义物颅内注射到第三脑室。 CRH引起体温和血浆皮质酮水平升高,而Crh反义引起相反的反应。此外,这些影响具有长期影响,因为一周后逆转了,将耐热性转化为脆弱性,反之亦然。注射CRH的小鸡,然后暴露于通常会引起弹性的轻度热应激下,一周后证明了体温升高和Crh mRNA水平类似于热脆弱性,而Crh反义注射的小鸡则暴露在外。在苛刻的温度下,具有回弹性。这些结果证明了CRH在确定压力弹性/脆弱性平衡方面的潜在作用。 (c)2014年,Wiley Periodicals,Inc.开发Neurobiol 75:842-853,2015年

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