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Central Regulation of Hypothalamic-Pituitary-Thyroid Axis Under Physiological and Pathophysiological Conditions

机译:生理和病理生理条件下下丘脑-垂体-甲状腺轴的中央调节

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摘要

TRH is a tripeptide amide that functions as a neurotransmitter but also serves as a neurohormone that has a critical role in the central regulation of the hypothalamic-pituitary-thyroid axis. Hypophysiotropic TRH neurons involved in this neuroendocrine process are located in the hypothalamic paraventricular nucleus and secrete TRH into the pericapillary space of the external zone of the median eminence for conveyance to anterior pituitary thyrotrophs. Under basal conditions, the activity of hypophysiotropic TRH neurons is regulated by the negative feedback effects of thyroid hormone to ensure stable, circulating, thyroid hormone concentrations, a mechanism that involves complex interactions between hypophysiotropic TRH neurons and the vascular system, cerebrospinal fluid, and specialized glial cells called tanycytes. Hypophysiotropic TRH neurons also integrate other humoral and neuronal inputs that can alter the setpoint for negative feedback regulation by thyroid hormone. This mechanism facilitates adaptation of the organism to changing environmental conditions, including the shortage of food and a cold environment. The thyroid axis is also affected by other adverse conditions such as infection, but the central mechanisms mediating suppression of hypophysiotropic TRH may be pathophysiological. In this review, we discuss current knowledge about the mechanisms that contribute to the regulation of hypophysiotropic TRH neurons under physiological and pathophysiological conditions.
机译:TRH是一种三肽酰胺,既可以充当神经递质,又可以充当神经激素,在下丘脑-垂体-甲状腺轴的中央调节中起关键作用。参与该神经内分泌过程的促体液性TRH神经元位于丘脑下丘脑室旁核中,并将TRH分泌到正中隆起外部区域的毛细血管周腔空间中,以输送至垂体前叶甲状腺激素。在基础条件下,促甲状腺激素的负反馈调节促体质TRH神经元的活性,以确保稳定,循环的甲状腺激素浓度,这种机制涉及促促体TRH神经元与血管系统,脑脊液和特殊器官之间复杂的相互作用。胶质细胞称为单核细胞。促营养性TRH神经元还整合了其他体液和神经元输入,可以改变甲状腺激素负反馈调节的设定值。这种机制促进了生物体适应不断变化的环境条件,包括食物短缺和寒冷的环境。甲状腺轴也受到其他不利条件(如感染)的影响,但是介导抑制促体质性TRH的主要机制可能是病理生理性的。在这篇综述中,我们讨论了有关在生理和病理生理条件下促低亲TRH神经元调节机制的最新知识。

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