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水蛭神经节发生过程中的细胞死亡:双极细胞在所有神经节中出现然后退化。

Cell death during gangliogenesis in the leech: bipolar cells appear and then degenerate in all ganglia.

作者信息

Stewart R R, Gao W Q, Peinado A, Zipser B, Macagno E R

出版信息

J Neurosci. 1987 Jun;7(6):1919-27. doi: 10.1523/JNEUROSCI.07-06-01919.1987.

Abstract

The bipolar cells can be recognized very early during gangliogenesis in the leech central nervous system by their expression of antigens that are recognized by the monoclonal antibody Laz1-1. They are the first cells to express these antigens, which are later shared with a distinct set of other cells in the leech nervous system. Their processes extend several segments rostrally and caudally along the forming interganglionic connective nerves; they are first found in anterior segments and gradually appear in more posterior ones over the course of 2-3 d. At about the time bipolar cells appear in the neuromeres of the tail ganglion, those in the most anterior segmental ganglia begin to degenerate. Degeneration proceeds caudally over the next 3 d, until all bipolar cells have disappeared. Bipolar cells are, thus, members of that class of cells that exists for only a short period in neurogenesis and then presumably disappears once its functions are no longer required. These cells' morphology and appearance at the earliest stages in the formation of the interganglionic connective nerves are suggestive of a role in the establishment of these longitudinal pathways in the leech CNS.

摘要

在水蛭中枢神经系统神经节形成过程中,双极细胞可通过其表达的能被单克隆抗体Laz1-1识别的抗原来很早就被识别出来。它们是最早表达这些抗原的细胞,这些抗原后来被水蛭神经系统中另一组不同的细胞所共有。它们的突起沿着形成中的神经节间连接神经向头端和尾端延伸几个节段;它们首先出现在前部节段,并在2 - 3天的时间里逐渐出现在更靠后的节段。大约在双极细胞出现在尾神经节的神经节段时,最前部节段神经节中的双极细胞开始退化。退化在接下来的3天里向尾端进行,直到所有双极细胞都消失。因此,双极细胞属于在神经发生过程中仅短暂存在的一类细胞,一旦其功能不再需要,大概就会消失。这些细胞在神经节间连接神经形成的最早阶段的形态和外观表明它们在水蛭中枢神经系统中这些纵向通路的建立中发挥作用。

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