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运用拓扑学、形态学和细胞化学标准对大鼠和小鼠的缰核亚核进行相关性研究。

Correlating habenular subnuclei in rat and mouse by using topographic, morphological, and cytochemical criteria.

作者信息

Wagner Franziska, Stroh Thomas, Veh Rüdiger W

机构信息

Institut für Zell- und Neurobiologie, Centrum 2, Charité-Universitätsmedizin Berlin, D-10115 Berlin, Germany.

出版信息

J Comp Neurol. 2014 Aug 1;522(11):2650-62. doi: 10.1002/cne.23554.

Abstract

The mammalian habenulae consist of medial (MHb) and lateral (LHb) nuclear complexes. Especially the LHb has received much interest because it has been recognized as the potential center of an "anti-reward system." Subnuclear organization and connectivity of the LHb are well known. In contrast, criteria to classify habenular neurons into distinct groups with potentially different biological functions are missing, most likely as a result of the lack of appropriate marker proteins. Actually, a huge amount of data concerning the localization of more than 20,000 mouse protein genes is provided in the Allen Brain Atlas. Unfortunately, the immediate use of this information is prohibited by the fact that the subnuclear organization of the habenular complexes in mouse is not known so far. The present report, therefore, uses topographic, structural, and cytochemical information from the rat to recognize corresponding areas within the mouse habenulae. Taking advantage of the fact that the Klüver-Barrera technique allows simultaneous observation of neuronal cell bodies and myelinated fibers, we were able to correlate subnuclear areas in the mouse habenula to subnuclei, which had been rigorously identified by several criteria in the rat. Our data suggest that the topographic localization of habenular subnuclei is rather similar between mouse and rat and that they may be homologous in these two species. Consequently, our data may allow using the Allen Brain Atlas as a source of basal information, which should be helpful to select candidate molecular markers for functionally different neurons in the mouse and potentially in higher mammalian species.

摘要

哺乳动物的缰核由内侧缰核(MHb)和外侧缰核(LHb)核复合体组成。特别是外侧缰核备受关注,因为它被认为是“抗奖赏系统”的潜在中心。外侧缰核的亚核组织和连接性已为人熟知。相比之下,目前缺乏将缰核神经元分类为具有潜在不同生物学功能的不同组别的标准,这很可能是由于缺乏合适的标记蛋白。实际上,艾伦脑图谱提供了大量关于20000多个小鼠蛋白质基因定位的数据。不幸的是,由于目前尚不清楚小鼠缰核复合体的亚核组织,因此无法直接利用这些信息。因此,本报告利用大鼠的地形学、结构和细胞化学信息来识别小鼠缰核内的相应区域。利用克吕弗-巴雷拉技术能够同时观察神经元细胞体和有髓纤维这一事实,我们能够将小鼠缰核中的亚核区域与大鼠中已通过多种标准严格鉴定的亚核相关联。我们的数据表明,小鼠和大鼠缰核亚核的地形定位相当相似,并且在这两个物种中可能是同源的。因此,我们的数据可能使艾伦脑图谱作为基础信息来源得以利用,这将有助于为小鼠以及可能在高等哺乳动物物种中功能不同的神经元选择候选分子标记。

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