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Progress and Challenges in the Search for the Mechanisms of Pulsatile Gonadotropin-Releasing Hormone Secretion

机译:促性腺激素释放激素分泌机制的研究进展与挑战

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Fertility relies on the proper functioning of the hypothalamic–pituitary–gonadal axis. The hormonal cascade begins with hypothalamic neurons secreting gonadotropin-releasing hormone (GnRH) into the hypophyseal portal system. In turn, the GnRH-activated gonadotrophs in the anterior pituitary release gonadotropins, which then act on the gonads to regulate gametogenesis and sex steroidogenesis. Finally, sex steroids close this axis by feeding back to the hypothalamus. Despite this seeming straightforwardness, the axis is orchestrated by a complex neuronal network in the central nervous system. For reproductive success, GnRH neurons, the final output of this network, must integrate and translate a wide range of cues, both environmental and physiological, to the gonadotrophs via pulsatile GnRH secretion. This secretory profile is critical for gonadotropic function, yet the mechanisms underlying these pulses remain unknown. Literature supports both intrinsically and extrinsically driven GnRH neuronal activity. However, the caveat of the techniques supporting either one of the two hypotheses is the gap between events recorded at a single-cell level and GnRH secretion measured at the population level. This review aims to compile data about GnRH neuronal activity focusing on the physiological output, GnRH secretion.
机译:生育能力取决于下丘脑-垂体-性腺轴的正常功能。激素级联反应始于下丘脑神经元,将促性腺激素释放激素(GnRH)分泌到垂体门脉系统中。反过来,垂体前叶中的GnRH激活的促性腺激素释放促性腺激素,然后作用于性腺以调节配子发生和性类固醇生成。最后,性类固醇通过向下丘脑进食来封闭该轴。尽管看似简单,但轴还是由中枢神经系统中的复杂神经元网络编排而成。为了获得生殖成功,该网络的最终输出GnRH神经元必须通过搏动性GnRH分泌物整合并翻译各种环境和生理线索并将其转化为性腺。这种分泌物对于促性腺功能至关重要,但是这些脉冲的潜在机制仍然未知。文献支持内在和外在驱动的GnRH神经元活动。但是,支持这两种假设之一的技术的警告是,单细胞水平记录的事件与人口水平测量的GnRH分泌之间存在差距。本文旨在收集有关GnRH神经元活性的数据,重点是生理输出,GnRH分泌。

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