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早期神经纤维生长速率与靶距离相关的内在差异。

Intrinsic differences in the growth rate of early nerve fibres related to target distance.

作者信息

Davies A M

机构信息

Department of Anatomy, St George's Hospital Medical School, London, UK.

出版信息

Nature. 1989 Feb 9;337(6207):553-5. doi: 10.1038/337553a0.

Abstract

Target field innervation in the developing vertebrate nervous system coincides with the onset of important trophic interactions. Two factors that determine the timing of this event are the distance axons have to grow to reach their targets, which are known to vary, and the rate at which they grow. There have been few studies of axonal growth rate at this stage of development and no comparative study of the relationship between growth rate and target distance. Embryonic chick cranial sensory neurons are located in discrete ganglia and the distance axons have to grow to reach their targets is different for each ganglion, ranging from several hundred to several thousand microns. Here, I show that these neurons differ in their in vivo growth rates; neurons with more distant targets growing faster. In vitro, single isolated neurons from each of these populations grow at a similar rate to that observed in vivo, indicating that growth rate is an intrinsically determined property of neurons before they reach their targets.

摘要

在发育中的脊椎动物神经系统中,靶场神经支配与重要营养相互作用的开始相吻合。决定这一事件发生时间的两个因素是轴突到达其靶标的生长距离(已知该距离各不相同)以及轴突的生长速度。在发育的这个阶段,对轴突生长速度的研究很少,也没有关于生长速度与靶标距离之间关系的比较研究。胚胎期鸡的颅感觉神经元位于离散的神经节中,每个神经节中轴突到达其靶标的生长距离各不相同,范围从几百微米到几千微米。在这里,我表明这些神经元的体内生长速度不同;靶标距离更远的神经元生长得更快。在体外,来自这些群体中每个群体的单个分离神经元的生长速度与在体内观察到的相似,这表明生长速度是神经元在到达靶标之前内在决定的属性。

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