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一项关于神经节细胞在调节其他视网膜细胞分裂和死亡中作用的调查。

An investigation into the role of ganglion cells in the regulation of division and death of other retinal cells.

作者信息

Beazley L D, Perry V H, Baker B, Darby J E

出版信息

Brain Res. 1987 Jun;430(2):169-84. doi: 10.1016/0165-3806(87)90151-9.

Abstract

The patterns of cell death and division are described in the normal postnatal rat retina and following transection of the optic nerve on the day of birth. Optic nerve transection on the day of birth results in the rapid degeneration of the ganglion cells. Mitosis at the outer retinal surface ceases first in the temporal retina, then in the nasal retina and becomes progressively more restricted to peripheral regions. Mitotic activity was not affected by the loss of ganglion cells. Cell death takes place in a wave passing from the ganglion cell to the inner nuclear to the outer nuclear layer. The time course of cell death is not affected by the loss of ganglion cells following optic nerve transection, and there is no significant increase in the number of cells which degenerate in the inner nuclear layer. The effects of removing a major postsynaptic target of local circuit neurones appears to be less pronounced than has been reported for relay neurones.

摘要

本文描述了正常新生大鼠视网膜以及出生当天视神经横断后的细胞死亡和分裂模式。出生当天进行视神经横断会导致神经节细胞迅速退化。视网膜外表面的有丝分裂首先在颞侧视网膜停止,然后在鼻侧视网膜停止,并逐渐局限于周边区域。有丝分裂活动不受神经节细胞缺失的影响。细胞死亡以一种从神经节细胞层传递到内核层再到外核层的波的形式发生。细胞死亡的时间进程不受视神经横断后神经节细胞缺失的影响,并且内核层中退化细胞的数量没有显著增加。去除局部回路神经元的一个主要突触后靶点的影响似乎比报道的中继神经元的影响不那么明显。

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