Animal Modeling of Early Programming and Disruption of Pubertal Maturation.

J. M. Castellano, M. Tena-Sempere
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引用次数: 23

Abstract

Puberty is a fascinating developmental transition that gates the attainment of reproductive capacity and culminates the somatic and sexual maturation of the organism. Rather than a circumscribed phenomenon, puberty is the endpoint of a long-lasting developmental continuum, which initiates in utero. Besides important genetic determinants, the tempo of puberty is influenced by numerous endogenous and exogenous factors that, acting at different levels of the developing hypothalamic-pituitary-gonadal (HPG) axis along the maturational continuum indicated above, can influence puberty onset. Among the different modifiers of puberty, in this chapter we will focus our attention on two major groups of signals, sex steroids and nutritional cues, and how these interplay mostly with the central elements of the HPG axis, and especially with gonadotropin-releasing hormone neurons and their key upstream afferents, Kiss1 neurons, to influence the timing of puberty. Special emphasis will be given to summarize information emerging from relevant preclinical (mostly rodent) animal models, and how this information might be relevant in terms of translational medicine, as it may help for a better understanding and eventually management of pubertal disorders of escalating prevalence worldwide.
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早期编程和青春期成熟中断的动物模型。
青春期是一个迷人的发育过渡时期,它开启了生殖能力的实现,并使生物体的躯体和性成熟达到高潮。青春期不是一个局限的现象,而是一个长期发育连续体的终点,它始于子宫内。除了重要的遗传决定因素外,青春期的速度还受到许多内源性和外源性因素的影响,这些因素在发育中的下丘脑-垂体-性腺(HPG)轴沿上述成熟连续体的不同水平上起作用,可以影响青春期的开始。在青春期的不同修饰因子中,本章我们将重点关注两组主要的信号,性类固醇和营养线索,以及它们如何与HPG轴的中心元素相互作用,特别是与促性腺激素释放激素神经元及其关键的上游传入神经Kiss1神经元相互作用,以影响青春期的时间。将特别强调总结来自相关临床前(主要是啮齿动物)动物模型的信息,以及这些信息如何与转化医学相关,因为它可能有助于更好地理解和最终管理世界范围内患病率不断上升的青春期疾病。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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