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Inhibin at 90: From Discovery to Clinical Application, a Historical Review

机译:90岁的抑制素:从发现到临床应用的历史回顾

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When it was initially discovered in 1923, inhibin was characterized as a hypophysiotropic hormone that acts on pituitary cells to regulate pituitary hormone secretion. Ninety years later, what we know about inhibin stretches far beyond its well-established capacity to inhibit activin signaling and suppress pituitary FSH production. Inhibin is one of the major reproductive hormones involved in the regulation of folliculogenesis and steroidogenesis. Although the physiological role of inhibin as an activin antagonist in other organ systems is not as well defined as it is in the pituitary-gonadal axis, inhibin also modulates biological processes in other organs through paracrine, autocrine, and/or endocrine mechanisms. Inhibin and components of its signaling pathway are expressed in many organs. Diagnostically, inhibin is used for prenatal screening of Down syndrome as part of the quadruple test and as a biochemical marker in the assessment of ovarian reserve. In this review, we provide a comprehensive summary of our current understanding of the biological role of inhibin, its relationship with activin, its signaling mechanisms, and its potential value as a diagnostic marker for reproductive function and pregnancy-associated conditions.
机译:当抑制素最初于1923年被发现时,其特征是一种促垂体激素,它作用于垂体细胞以调节垂体激素的分泌。九十年后,我们对抑制素的了解远远超出了其公认的抑制激活素信号传导和抑制垂体FSH产生的能力。抑制素是参与卵泡生成和类固醇生成的主要生殖激素之一。尽管抑制素在其他器官系统中作为激活素拮抗剂的生理作用并未在垂体-性腺轴中得到很好的定义,但抑制素还通过旁分泌,自分泌和/或内分泌机制调节其他器官中的生物过程。抑制素及其信号传导途径的成分在许多器官中表达。在诊断上,抑制素被用于唐氏综合症的产前筛查,作为四联试验的一部分,并作为评估卵巢储备的生化标记。在这篇综述中,我们提供了关于抑制素的生物学作用,其与激活素的关系,其信号传导机制以及其作为生殖功能和妊娠相关状况的诊断标志物的潜在价值的当前理解的全面总结。

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