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哺乳动物下丘脑和视前区性别差异的个体发生。

Ontogeny of sex differences in the mammalian hypothalamus and preoptic area.

作者信息

Tobet S A, Hanna I K

机构信息

Program in Neuroscience, Shriver Center, Waltham, Massachusetts 02254, USA.

出版信息

Cell Mol Neurobiol. 1997 Dec;17(6):565-601. doi: 10.1023/a:1022529918810.

DOI:10.1023/a:1022529918810
PMID:9442348
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC11560209/
Abstract
  1. There are numerous sites in the nervous system where steroid hormones dramatically influence development. Increasing interest in mechanisms in neural development is providing avenues for understanding how gonadal steroids alter the ontogeny of these regions during sexual differentiation. 2. An increasing number of researchers are examining effects of gonadal steroids on neurite outgrowth, cell differentiation, cell death, cell migration, and synaptogenesis. The interrelated timing of these events may be a key aspect influenced by gonadal steroids throughout development. 3. The preoptic area and hypothalamus are characteristically heterogeneous in terms of cell type (e.g., different neuropeptides) and cell derivation. Perhaps a major reason for the ontogeny of sexual differences in the preoptic area and hypothalamus lies in the convergence of many different cell types from diverse sources (i.e., proliferative zones surrounding the lateral and third ventricles, and the olfactory placodes) that can be influenced in an interactive manner by gonadal steroid mechanisms. 4. The characterization of multiple mechanisms (e.g., trophic, migratory, apoptotic, fate, etc.,) that contribute to permanent changes in brain structure and ultimately function is essential for unraveling the process of sexual differentiation.
摘要
  1. 神经系统中有许多部位,类固醇激素对其发育有显著影响。人们对神经发育机制的兴趣日益浓厚,这为理解性腺类固醇在性别分化过程中如何改变这些区域的个体发育提供了途径。2. 越来越多的研究人员正在研究性腺类固醇对神经突生长、细胞分化、细胞死亡、细胞迁移和突触形成的影响。这些事件相互关联的时间安排可能是性腺类固醇在整个发育过程中影响的一个关键方面。3. 视前区和下丘脑在细胞类型(如不同的神经肽)和细胞来源方面具有典型的异质性。视前区和下丘脑性别差异个体发育的一个主要原因可能在于来自不同来源(即侧脑室和第三脑室周围的增殖区以及嗅基板)的许多不同细胞类型的汇聚,这些细胞类型可受到性腺类固醇机制的交互影响。4. 表征多种机制(如营养、迁移、凋亡、命运等)对脑结构和最终功能的永久性变化的作用,对于阐明性别分化过程至关重要。

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Presumptive Estrogen Target Neurons Express mRNAs for both the Neurotrophins and Neurotrophin Receptors: A Basis for Potential Developmental Interactions of Estrogen with the Neurotrophins.推定雌激素靶神经元表达神经营养因子及其受体的 mRNAs:雌激素与神经营养因子潜在发育相互作用的基础。
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