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星形胶质细胞通过激活生理终止途径来阻断哺乳动物的轴突再生。

Astrocytes block axonal regeneration in mammals by activating the physiological stop pathway.

作者信息

Liuzzi F J, Lasek R J

出版信息

Science. 1987 Aug 7;237(4815):642-5. doi: 10.1126/science.3603044.

Abstract

Regenerating sensory axons in the dorsal roots of adult mammals are stopped at the junction between the root and spinal cord by reactive astrocytes. Do these cells stop axonal elongation by activating the physiological mechanisms that normally operate to stop axons during development, or do they physically obstruct the elongating axons? In order to distinguish these possibilities, the cytology of the axon tips of regenerating axons that were stopped by astrocytes was compared with the axon tips that were physically obstructed at a cul-de-sac produced by ligating a peripheral nerve. The terminals of the physically obstructed axon tips were distended with neurofilaments and other axonally transported structures that had accumulated when the axons stopped elongating. By contrast, neurofilaments did not accumulate in the tips of regenerating axons that were stopped by spinal cord astrocytes at the dorsal root transitional zone. These axo-glial terminals resembled the terminals that axons make on target neurons during normal development. On the basis of these observations, astrocytes appear to stop axons from regenerating in the mammalian spinal cord by activating the physiological stop pathway that is built into the axon and that normally operates when axons form stable terminals on target cells.

摘要

成年哺乳动物背根中再生的感觉轴突在神经根与脊髓的交界处被反应性星形胶质细胞阻止。这些细胞是通过激活在发育过程中正常发挥作用以阻止轴突生长的生理机制来阻止轴突伸长,还是通过物理方式阻碍伸长的轴突呢?为了区分这些可能性,将被星形胶质细胞阻止的再生轴突的轴突末端的细胞学特征与在结扎周围神经形成的死胡同中被物理阻碍的轴突末端进行了比较。被物理阻碍的轴突末端充满了神经丝和其他在轴突停止伸长时积累的轴突运输结构。相比之下,在背根过渡区被脊髓星形胶质细胞阻止的再生轴突末端没有积累神经丝。这些轴突 - 胶质细胞末端类似于轴突在正常发育过程中与靶神经元形成的末端。基于这些观察结果,星形胶质细胞似乎通过激活内置在轴突中且通常在轴突在靶细胞上形成稳定末端时发挥作用的生理停止途径来阻止哺乳动物脊髓中的轴突再生。

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