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女性生殖周期中的神经和行为可塑性。

Neural and behavioral plasticity across the female reproductive cycle.

机构信息

Champalimaud Research, Champalimaud Foundation, Avenida Brasília, 1400-038 Lisbon, Portugal.

Champalimaud Research, Champalimaud Foundation, Avenida Brasília, 1400-038 Lisbon, Portugal.

出版信息

Trends Endocrinol Metab. 2022 Nov;33(11):769-785. doi: 10.1016/j.tem.2022.09.001. Epub 2022 Oct 14.

Abstract

Sex is fundamental for the evolution and survival of most species. However, sex can also pose danger, because it increases the risk of predation and disease transmission, among others. Thus, in many species, cyclic fluctuations in the concentration of sex hormones coordinate sexual receptivity and attractiveness with female reproductive capacity, promoting copulation when fertilization is possible and preventing it otherwise. In recent decades, numerous studies have reported a wide variety of sex hormone-dependent plastic rearrangements across the entire brain, including areas relevant for female sexual behavior. By contrast, how sex hormone-induced plasticity alters the computations performed by such circuits, such that collectively they produce the appropriate periodic switches in female behavior, is mostly unknown. In this review, we highlight the myriad sex hormone-induced neuronal changes known so far, the full repertoire of behavioral changes across the reproductive cycle, and the few examples where the relationship between sex hormone-dependent plasticity, neural activity, and behavior has been established. We also discuss current challenges to causally link the actions of sex hormones to the modification of specific cellular pathways and behavior, focusing on rodents as a model system while drawing a comparison between rodents and humans wherever possible.

摘要

性对于大多数物种的进化和生存至关重要。然而,性也可能带来危险,因为它会增加被捕食和疾病传播等风险。因此,在许多物种中,性激素浓度的周期性波动将雌性的生殖能力与性接受度和吸引力协调起来,在可能受精时促进交配,否则则阻止交配。近几十年来,许多研究报告了广泛的依赖于性激素的大脑整体可塑性重组,包括与雌性性行为相关的区域。相比之下,性激素诱导的可塑性如何改变这些回路所执行的计算,从而使它们共同产生雌性行为的适当周期性转换,在很大程度上仍是未知的。在这篇综述中,我们强调了迄今为止已知的无数种由性激素引起的神经元变化,以及整个生殖周期中的所有行为变化,以及少数几个已经确定了性激素依赖性可塑性、神经活动和行为之间关系的例子。我们还讨论了目前将性激素的作用与特定细胞通路和行为的改变联系起来的挑战,重点关注作为模型系统的啮齿动物,并尽可能在啮齿动物和人类之间进行比较。

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