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通过轴突运输放射性蛋白标记研究大鼠坐骨神经运动轴突的再生。

Regeneration of motor axons in the rat sciatic nerve studied by labeling with axonally transported radioactive proteins.

作者信息

Forman D S, Berenberg R A

出版信息

Brain Res. 1978 Nov 10;156(2):213-25. doi: 10.1016/0006-8993(78)90504-8.

Abstract

Labeling regenerating axons with axonally transported radioactive proteins provides information about the location of the entire range of axons from the fastest growing ones to those which are trapped in the scar. We have used this technique to study the regeneration of motor axons in the rat sciatic nerve after a crush lesion. From 2 to 14 days after the crush the lumbar spinal cord was exposed by laminectomy and multiple injections of [3H]proline were made stereotactically in the ventral horn. Twenty-four hours later the nerves were removed and the distribution of radioactivity along the nerve was measured by liquid scintillation counting. There was a peak of radioactivity in the regenerating axons distal to the crush due to an accumulation of label in the tips of these axons. After a delay of 3.2 +/- 0.2 (S.E.) days, this peak advanced down the nerve at a rate of 3.0 +/- 0.1 (S.E.) mm/day. The leading edge of this peak, which marks the location of the endings of the most rapidly growing labeled fibers, moved down the nerve at a rate of 4.4 +/- 0.2 mm/day after a delay of 2.1 +/- 0.2 days; this is the same time course as that of the most rapidly regenerating sensory axons in the rat sciatic nerve, measured by the pinch test. Another peak of radioactivity at the crush site, presumed to represent the ends of unregenerated axons or misdirected sprouts, declined rapidly during the first week, and more slowly thereafter.

摘要

用轴突运输的放射性蛋白质标记再生轴突,可提供有关从生长最快的轴突到被困在瘢痕中的轴突的整个轴突范围位置的信息。我们已使用该技术研究大鼠坐骨神经挤压损伤后运动轴突的再生情况。挤压损伤后2至14天,通过椎板切除术暴露腰脊髓,并在腹角进行立体定向多次注射[3H]脯氨酸。24小时后取出神经,通过液体闪烁计数测量沿神经的放射性分布。由于这些轴突尖端中标记物的积累,挤压部位远端的再生轴突中出现放射性峰值。延迟3.2±0.2(标准误)天后,该峰值以3.0±0.1(标准误)毫米/天的速度沿神经向下推进。该峰值的前沿标志着生长最快的标记纤维末端的位置,在延迟2.1±0.2天后以4.4±0.2毫米/天的速度沿神经向下移动;这与通过捏压试验测量的大鼠坐骨神经中再生最快的感觉轴突的时间进程相同。挤压部位的另一个放射性峰值,推测代表未再生轴突或误定向芽的末端,在第一周迅速下降,此后下降速度较慢。

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