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鼠小脑总细胞数量的发育性增加。

Developmental increase of total cell numbers in the murine cerebellum.

机构信息

Anatomisches Institut, Anatomie & Zellbiologie, University of Bonn, Bonn, Germany.

出版信息

Cerebellum. 2007;6(4):315-20. doi: 10.1080/14734220601169699. Epub 2007 Jan 25.

Abstract

The cerebellum has been widely used as a paradigm to study basic mechanisms of brain development and cortical histogenesis. Its highly regular structure has always made it particularly attractive to approaches relying on, and yielding, quantitative information, which provide a cornerstone of systems-oriented integrative analyses. Astonishingly, though, a systematic quantification of cell generation during cerebellar development has so far not been provided. Here, we use the isotropic fractionator (i.e., cell counts based on tissue homogenates from anatomically defined regions; cf. Herculano-Houzel S, Lent R., J Neurosci. 2005;25:2518-21) to assess the developmental increase of total cell numbers in the murine cerebellum from embryonic day 17 into early adulthood. Our data show that the quantitative increase of cerebellar cell numbers follows a classical, S-shaped growth curve as described by the Hill-equation. The adult murine cerebellum was found to comprise a total of (44.03+/-0.42) * 10(6) cells, half of which are generated before postnatal day 12+/-0.18. Consistent results were obtained by using two approaches to cell counting, one based on manual assessment, the other on flow cytometry. These data provide a reliable quantitative description of cerebellar growth in the mouse and define a predictive model that should allow their integration with quantitative and qualitative descriptions of cerebellar development.

摘要

小脑一直被广泛用作研究大脑发育和皮质组织发生基本机制的范例。其高度规则的结构使其特别适合依赖和产生定量信息的方法,这些方法为面向系统的综合分析提供了基石。然而,令人惊讶的是,小脑发育过程中的细胞发生的系统定量分析至今尚未提供。在这里,我们使用各向同性分馏器(即基于组织匀浆的细胞计数,来自解剖定义的区域;参见 Herculano-Houzel S, Lent R.,J Neurosci. 2005;25:2518-21)来评估从胚胎第 17 天到成年早期的小鼠小脑总细胞数量的发育增加。我们的数据表明,小脑细胞数量的定量增加遵循经典的 S 形生长曲线,如 Hill 方程所描述的。成年小鼠小脑共包含(44.03+/-0.42)* 10(6)个细胞,其中一半是在出生后第 12+/-0.18 天之前产生的。通过使用两种细胞计数方法,一种基于手动评估,另一种基于流式细胞术,得到了一致的结果。这些数据为小鼠小脑生长提供了可靠的定量描述,并定义了一个预测模型,该模型应允许将其与小脑发育的定量和定性描述进行整合。

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