首页> 美国卫生研究院文献>Society for Endocrinology Open Access >The effects of apelin on hypothalamic–pituitary–adrenal axis neuroendocrine function are mediated through corticotrophin-releasing factor- and vasopressin-dependent mechanisms
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The effects of apelin on hypothalamic–pituitary–adrenal axis neuroendocrine function are mediated through corticotrophin-releasing factor- and vasopressin-dependent mechanisms

机译:apelin对下丘脑-垂体-肾上腺轴神经内分泌功能的影响是通过促肾上腺皮质激素释放因子和血管加压素依赖性机制介导的

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摘要

The apelinergic system has a widespread expression in the central nervous system (CNS) including the paraventricular nucleus, supraoptic nucleus and median eminence, and isolated cells of the anterior lobe of the pituitary. This pattern of expression in hypothalamic nuclei known to contain corticotrophin-releasing factor (CRF) and vasopressin (AVP) and to co-ordinate endocrine responses to stress has generated interest in a role for apelin in the modulation of stress, perhaps via the regulation of hormone release from the pituitary. In this study, to determine whether apelin has a central role in the regulation of CRF and AVP neurones, we investigated the effect of i.c.v. administration of pGlu-apelin-13 on neuroendocrine function in male mice pre-treated with the CRF receptor antagonist, α-helical CRF9–41, and in mice-lacking functional AVP V1b receptors (V1bR KO). Administration of pGlu-apelin-13 (1 mg/kg i.c.v.) resulted in significant increases in plasma ACTH and corticosterone (CORT), which were significantly reduced by pre-treatment with α-helical CRF9–41, indicating the involvement of a CRF-dependent mechanism. Additionally, pGlu-apelin-13-mediated increases in both plasma ACTH and CORT were significantly attenuated in V1bR KO animals when compared with wild-type controls, indicating a role for the vasopressinergic system in the regulation of the effects of apelin on neuroendocrine function. Together, these data confirm that the in vivo effects of apelin on hypothalamic–pituitary–adrenal neuroendocrine function appear to be mediated through both CRF- and AVP-dependent mechanisms.
机译:Apelinergic系统在中枢神经系统(CNS)中广泛表达,包括脑室旁核,视上核和正中隆起,以及垂体前叶的分离细胞。下丘脑核中的这种表达模式已知包含促肾上腺皮质激素释放因子(CRF)和加压素(AVP),并协调内分泌对压力的反应,引起人们对apelin在调节压力中的作用的兴趣,也许是通过调节垂体释放激素。在这项研究中,为了确定apelin是否在CRF和AVP神经元的调节中起核心作用,我们调查了i.c.v.在经CRF受体拮抗剂α-螺旋CRF9-41预处理的雄性小鼠和缺乏功能性AVP V1b受体(V1bR KO)的雄性小鼠中,施用pGlu-apelin-13对神经内分泌功能的影响。施用pGlu-apelin-13(1μmg/ kg icv)导致血浆ACTH和皮质酮(CORT)显着增加,而用α-螺旋CRF9-41预处理则显着降低了血浆Cath-apelin-13,表明CRF-依赖机制。此外,与野生型对照相比,V1bR KO动物中pGlu-apelin-13介导的血浆ACTH和CORT的增加显着减弱,表明血管加压素系统在调节apelin对神经内分泌功能的作用中起作用。总之,这些数据证实了apelin对下丘脑-垂体-肾上腺神经内分泌功能的体内作用似乎是通过CRF和AVP依赖性机制介导的。

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