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Clocks on top: The role of the circadian clock in the hypothalamic and pituitary regulation of endocrine physiology

机译:钟顶:生物钟在下丘脑和垂体内分泌生理调节中的作用

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Recent strides in circadian biology over the last several decades have allowed researchers new insight into how molecular circadian clocks influence the broader physiology of mammals. Elucidation of transcriptional feedback loops at the heart of endogenous circadian clocks has allowed for a deeper analysis of how timed cellular programs exert effects on multiple endocrine axes. While the full understanding of endogenous clocks is currently incomplete, recent work has re-evaluated prior findings with a new understanding of the involvement of these cellular oscillators, and how they may play a role in constructing rhythmic hormone synthesis, secretion, reception, and metabolism. This review addresses current research into how multiple circadian clocks in the hypothalamus and pituitary receive photic information from oscillators within the hypothalamic suprachiasmatic nucleus (SCN), and how resultant hypophysiotropic and pituitary hormone release is then temporally gated to produce an optimal result at the cognate target tissue. Special emphasis is placed not only on neural communication among the SCN and other hypothalamic nuclei, but also how endogenous clocks within the endocrine hypothalamus and pituitary may modulate local hormone synthesis and secretion in response to SCN cues. Through evaluation of a larger body of research into the impact of circadian biology on endocrinology, we can develop a greater appreciation into the importance of timing in endocrine systems, and how understanding of these endogenous rhythms can aid in constructing appropriate therapeutic treatments for a variety of endocrinopathies.
机译:近几十年来生物钟生物学的最新进展使研究人员对分子生物钟如何影响哺乳动物的更广泛的生理学有了新的认识。内源性生物钟的心脏转录反馈回路的阐明允许对定时细胞程序如何在多个内分泌轴上产生作用进行更深入的分析。虽然目前尚不完全了解内源时钟,但最近的工作已重新评估了先前的发现,并对这些细胞振荡器的参与以及它们如何在构建节律性激素的合成,分泌,接收和代谢中发挥作用有了新的认识。 。这篇综述着眼于当前的研究,涉及下丘脑和垂体中的多个昼夜节律如何从下丘脑上视交叉核(SCN)内的振荡器接收光信息,以及如何暂时控制促低垂体和垂体激素的释放,从而在同源靶点上产生最佳结果组织。特别强调的不仅是SCN与其他下丘脑核之间的神经通讯,还包括内分泌下丘脑和垂体中的内源钟如何响应SCN信号来调节局部激素的合成和分泌。通过评估有关昼夜节律生物学对内分泌学影响的大量研究,我们可以更好地认识到时机在内分泌系统中的重要性,以及对这些内源性节律的理解如何有助于构建适用于各种疾病的适当治疗方法内分泌病变。

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