小鼠大脑皮层的新生和出生后发育。超微结构的研究。

Acta neurologica latinoamericana Pub Date : 1975-01-01
G Nosal, K N Lin, G Lapointe
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引用次数: 0

摘要

通过结构尤其是超微结构的研究,研究了发育中的小鼠(从出生到断奶)小脑皮层浦肯野细胞(Pk)的成熟过程。与成年神经元相比,通过研究选择性形态学特征(Pk的形状和大小,神经元环境)以及神经元成分的特定特征,特别是“核-核糖体系统”,确定了四个发育阶段。发育阶段分为:早期、中期、晚期成神经细胞和年轻神经元。浦肯野细胞的神经发生可以概括如下:(a)核成熟发生在发育早期,明显早于核周细胞器的成熟;(b)细胞质成熟逐渐延长,直至达到年轻神经元状态。一些结构,如核内的颗粒团块和“斑点体”,包括两层膜的核包膜,以及游离或附着在内质网上的核糖体成分,似乎在神经元发育过程中发挥了重要作用。小鼠和大鼠浦肯野细胞的成熟过程大体相似,除了一些形态和/或时间变量外,其他发育中的神经细胞也具有可比性。这种神经元成熟模型可以单独使用,也可以与同时建立的另一种神经行为进化模型进行比较。这两种模型都显示出对发展中动物服用致幻剂和麻醉药等神经精神药物后所引起的影响的评价非常有用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
[Neo and postnatal development of the cerebral cortex in mice. Ultrastructural study].

Maturation in the Purkinje cell (Pk) of the cerebellar cortex of developing mice (from birth up to weaning) was investigated by structural and especially ultrastructural studies. In comparison to the adult neuron, four developmental stages were identified by studying selective morphological features (shape and size of the Pk, neuronal environment) as well as specific characteristics of neuronal constituants, particularly the "nucleus-ribosome system". The stages are: early, intermediate and late neuroblasts and young neuron. The neuronogenesis of the Purkinje cell can be summarized as follows: (a) the nuclear maturation occurs early in the development and markedly preceeds that of several organelles in the perikaryon; (b) the cytoplasmic maturation extends gradually until the young neuron state was reached. Some structures such as the granular mass and the "spotted body" in the nucleus, the nuclear envelop including its two membranes, and the ribosomal components either free or attached to the Endoplasmic Reticulum seem to exert an important role during neuronal development. Maturation processes in the Purkinje cell are generally similar in both mouse and rat and, except for some morphological and/or chronological variables, comparable in others developing nerve cells. This model of neuronal maturation is used alone or in comparison to another model of neuro-behavioral evolution which was established concommitantly. Both of these models reveal to be very useful for the evaluation of the effects induced in the developing animal following the administration of neuropsychotropic drugs such as Hallucinogens and Narcotics.

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