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轴突内和沿轴突的生长和延伸。

Growth and elongation within and along the axon.

机构信息

Department of Zoology, Michigan State University, East Lansing, Michigan 48824-1115.

出版信息

Dev Neurobiol. 2010 Feb 15;70(3):135-49. doi: 10.1002/dneu.20764.

Abstract

Mechanical tension is a particularly effective stimulus for axonal elongation, but little is known about how it leads to the formation of new axon. To better understand this process, we examined the movement of axonal branch points, beads bound to the axon, and docked mitochondria while monitoring axonal width. We found these markers moved in a pattern that suggests elongation occurs by viscoelastic stretching and volume addition along the axon. To test the coupling between "lengthening" and "growth," we measured axonal width while forcing axons to grow and then pause by controlling the tension applied to the growth cone or to the cell body. We found axons thinned during high rates of elongation and thickened when the growth cones were stationary. These findings suggest that forces cause lengthening because they stretch the axon and that growth occurs, in a loosely coupled step, by volume addition along the axon.

摘要

机械张力是轴突伸长的一种特别有效的刺激因素,但对于它如何导致新轴突的形成知之甚少。为了更好地理解这个过程,我们在监测轴突宽度的同时,检查了轴突分支点、结合在轴突上的珠状结构和对接的线粒体的运动。我们发现这些标记物的运动模式表明伸长是通过粘弹性拉伸和沿轴突的体积增加发生的。为了测试“伸长”和“生长”之间的耦合,我们在迫使轴突生长然后通过控制施加在生长锥或细胞体上的张力来暂停生长时测量了轴突的宽度。我们发现,当伸长率较高时,轴突变细,当生长锥静止时,轴突变厚。这些发现表明,力导致伸长,因为它们拉伸了轴突,而生长则是通过沿轴突的体积增加以松散耦合的步骤发生的。

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