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有尾目动物尾部再生过程中新生脊髓神经节的起源

Origin of renewed spinal ganglia during tail regeneration in urodeles.

作者信息

Koussoulakos S, Margaritis L H, Anton H

机构信息

Department of Cell Biology and Biophysics, University of Athens, Greece.

出版信息

Dev Neurosci. 1999;21(2):134-9. doi: 10.1159/000017375.

Abstract

The source of the cells which form the spinal ganglia within the regenerating urodele tail is not yet indisputably known. Classical and modern experimental approaches trace the spinal cord as the most probable source. The aim of the present study was to further investigate this item by conventional histology, counting of mitotic figures, and estimating the labeling index. The main results can be summarized as follows: (a) The regenerated part of the tail contained only two bilaterally asymmetrical pairs of ganglia, with respect to the rostrocaudal (anterior-posterior) axis. (b) The anterior ganglia were slightly differentiated and appropriately localized; therefore, analysis was performed mainly in the posterior, still developing ganglia. (c) An anatomical continuation between the ventrolateral side of the regenerated spinal cord and the laterally forming spinal ganglion was noticed. There was some indication that many cells migrated out from the spinal cord towards the spinal ganglion, through the ventral root. (d) The mitotic and the labeling index along the regenerated spinal cord exhibited individual peaks near the level of each developing ganglion. The last two observations corroborate and reinforce the prevailing view that the progenitors of the spinal ganglion cells which are formed in the regenerating tail are of spinal cord origin.

摘要

在再生的有尾两栖类动物尾巴中形成脊髓神经节的细胞来源尚未得到确凿的认定。经典和现代的实验方法都将脊髓追溯为最有可能的来源。本研究的目的是通过传统组织学、有丝分裂计数以及标记指数估算等方法进一步探究这一问题。主要结果可总结如下:(a) 尾巴的再生部分仅包含两对双侧不对称的神经节,相对于头尾(前后)轴而言。(b) 前部神经节略有分化且定位恰当;因此,分析主要在后部仍在发育的神经节中进行。(c) 观察到再生脊髓的腹外侧与侧向形成的脊髓神经节之间存在解剖学上的延续。有迹象表明许多细胞从脊髓通过腹根向脊髓神经节迁移。(d) 沿再生脊髓的有丝分裂和标记指数在每个发育中的神经节水平附近呈现出各自的峰值。最后这两个观察结果证实并强化了普遍观点,即在再生尾巴中形成的脊髓神经节细胞的祖细胞源自脊髓。

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