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首页> 外文期刊>Neuroendocrinology: International Journal for Basic and Clinical Studies on Neuroendocrine Relationships >Human GnRH deficiency: a unique disease model to unravel the ontogeny of GnRH neurons.
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Human GnRH deficiency: a unique disease model to unravel the ontogeny of GnRH neurons.

机译:人类GnRH缺乏症:一种独特的疾病模型,可揭示GnRH神经元的个体发育。

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摘要

Evolutionary survival of a species is largely a function of its reproductive fitness. In mammals, a sparsely populated and widely dispersed network of hypothalamic neurons, the gonadotropin-releasing hormone (GnRH) neurons, serve as the pilot light of reproduction via coordinated secretion of GnRH. Since it first description, human GnRH deficiency has been recognized both clinically and genetically as a heterogeneous disease. A spectrum of different reproductive phenotypes comprised of congenital GnRH deficiency with anosmia (Kallmann syndrome), congenital GnRH deficiency with normal olfaction (normosmic idiopathic hypogonadotropic hypogonadism), and adult-onset hypogonadotropic hypogonadism has been described. In the last two decades, several genes and pathways which govern GnRH ontogeny have been discovered by studying humans with GnRH deficiency. More importantly, detailed study of these patients has highlighted the emerging theme of oligogenicity and genotypic synergism, and also expanded the phenotypic diversity with the documentation of reversal of GnRH deficiency later in adulthood in some patients. The underlying genetic defect has also helped understand the associated nonreproductive phenotypes seen in some of these patients. These insights now provide practicing clinicians with targeted genetic diagnostic strategies and also impact on clinical management.
机译:一个物种的进化生存在很大程度上取决于其繁殖适应性。在哺乳动物中,下丘脑神经元稀疏且分布广泛的网络,即促性腺激素释放激素(GnRH)神经元,通过GnRH的协调分泌,成为繁殖的先导光。自从首次描述以来,人类GnRH缺乏症已在临床和遗传上被视为异质性​​疾病。已经描述了一系列不同的生殖表型,包括先天性GnRH缺乏症伴有失眠症(Kallmann综合征),先天性GnRH缺乏症伴正常嗅觉(正常人特发性性腺功能低下性腺机能减退)和成人发作性性腺功能低下性腺机能减退。在过去的二十年中,通过研究患有GnRH缺陷的人类,已经发现了控制GnRH个体发育的几种基因和途径。更重要的是,对这些患者的详细研究突出了寡聚性和基因型协同作用的新兴主题,并且在某些患者成年后期证明GnRH缺乏症得到逆转,从而扩大了表型多样性。潜在的遗传缺陷也帮助了解了其中一些患者的相关非生殖表型。这些见解现在为执业的临床医生提供了针对性的遗传诊断策略,并且还影响了临床管理。

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