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成年大鼠促黄体生成激素释放激素(LHRH)神经元细胞体和终末的动态变化。

Dynamic alterations in luteinizing hormone-releasing hormone (LHRH) neuronal cell bodies and terminals of adult rats.

作者信息

King J C, Rubin B S

机构信息

Department of Anatomy and Cellular Biology, Tufts University, School of Medicine, Boston, Massachusetts 02111, USA.

出版信息

Cell Mol Neurobiol. 1995 Feb;15(1):89-106. doi: 10.1007/BF02069560.

Abstract
  1. The decapeptide lueteinizing hormone-releasing hormone (LHRH) is synthesized in neuronal cell bodies diffusely distributed across the basal forebrain and is secreted from neuronal terminals in the median eminence. Once secreted, LHRH enters the portal vessels and is then transported to the anterior pituitary, where it modulates the synthesis and secretion of gonadotropins, which are essential to gonadal function and reproduction. 2. Because of the difficulties encountered in studying these diffusely distributed neurons, we have developed strategies which combine immunocytochemistry and computer-assisted techniques to examine individual LHRH neuronal cell bodies, as well as the entire population of LHRH neurons from the diagonal band of Broca to the mammillary bodies. In addition, we have examined LHRH neuronal terminals in the median eminence using computer-assisted imaging techniques to examine individual terminals by electron microscopy or across all rostral-caudal regions of the median eminence by light microscopy. In our most recent studies using confocal microscopy, we have examined the relationships of LHRH terminals to glial processes. 3. These studies reveal a very dynamic system of LHRH neuronal cell bodies and terminals. The population of neurons in which LHRH can be detected varies as a function of time after gonadectomy, during the estrous cycle, and during the preovulatory surge of LH during the afternoon of proestrus. Dynamic changes are also observed in LHRH terminals in the median eminence as a function of time after gonadectomy and in specific rostral-caudal regions of the median eminence during the preovulatory surge of LH. Finally, confocal microscopy reveals that LHRH terminals are prevented from contacting the basal lamina of the brain by glial end-feet. 4. We are currently examining the hypothesis that these relationships change as a function of endocrine milieu and, therefore, participate in the modulation of LHRH secretion. Ongoing studies focus on defining the sites of action and synergy of multiple sources of regulation of LHRH secretion and their relative importance to ensuring reproductive success.
摘要
  1. 十肽促黄体生成素释放激素(LHRH)在广泛分布于基底前脑的神经元细胞体中合成,并从中位隆起的神经元终末分泌。一旦分泌出来,LHRH进入门静脉血管,然后被运输到垂体前叶,在那里它调节促性腺激素的合成和分泌,促性腺激素对性腺功能和生殖至关重要。2. 由于研究这些广泛分布的神经元存在困难,我们开发了将免疫细胞化学和计算机辅助技术相结合的策略,以检查单个LHRH神经元细胞体,以及从布洛卡斜带到乳头体的整个LHRH神经元群体。此外,我们使用计算机辅助成像技术检查了中位隆起中的LHRH神经元终末,通过电子显微镜检查单个终末,或通过光学显微镜检查中位隆起所有头-尾区域。在我们最近使用共聚焦显微镜的研究中,我们检查了LHRH终末与神经胶质突起的关系。3. 这些研究揭示了一个非常动态的LHRH神经元细胞体和终末系统。能够检测到LHRH的神经元群体随性腺切除术后的时间、发情周期以及发情前期下午LH排卵前激增而变化。在性腺切除术后的时间以及LH排卵前激增期间,中位隆起中的LHRH终末也观察到动态变化。最后,共聚焦显微镜显示神经胶质终足阻止LHRH终末与脑基底膜接触。4. 我们目前正在研究这样一个假设,即这些关系随内分泌环境而变化,因此参与LHRH分泌的调节。正在进行的研究集中于确定LHRH分泌多种调节来源的作用位点和协同作用,以及它们对确保生殖成功的相对重要性。

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