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外源性纤维蛋白基质前体刺激硅胶室内神经再生的时间进程。

Exogenous fibrin matrix precursors stimulate the temporal progress of nerve regeneration within a silicone chamber.

作者信息

Williams L R

机构信息

Department of Neurosciences, School of Medicine, University of California, San Diego, La Jolla 92093.

出版信息

Neurochem Res. 1987 Oct;12(10):851-60. doi: 10.1007/BF00966306.

DOI:10.1007/BF00966306
PMID:3683735
Abstract

The silicone chamber model permits the investigation of the cellular and molecular events underlying successful regeneration of the rat sciatic nerve across a 10 mm gap. When 25 microliter chambers are implanted prefilled with phosphate-buffered saline (PBS), it takes 5-7 days before sufficient fibrin matrix (derived from plasma precursors) accumulates naturally to form a complete bridge across the chamber gap; at 1 week postimplantation, cellular migration into the matrix from the nerve stumps is just beginning. The temporal progress of regeneration might be stimulated if a fibrin matrix, conducive to cell migration, was provided to the nerve stumps at or shortly after the time of chamber implantation. To test this hypothesis, chambers were prefilled, at the time of implantation, with different preparations of homologous plasma. A solution of 90% platelet-free plasma dialyzed against PBS (DP) formed a fibrin matrix by 24 hours postimplantation that, like the naturally formed matrix, had a predominantly longitudinal orientation. The temporal progress of regeneration was stimulated in the DP-prefilled chambers; at 17 days postimplantation, the extents of Schwann cell migration and axonal elongation were significantly greater than in the control system. In contrast, prefilling chambers with either non-citrated plasma or DP + calcium resulted in the generation of a matrix within 8 minutes that was composed of randomly oriented fibrin polymers. These matrices significantly retarded the progress of regeneration.

摘要

硅胶腔室模型可用于研究大鼠坐骨神经成功跨越10毫米间隙再生过程中潜在的细胞和分子事件。当植入预先充满磷酸盐缓冲盐水(PBS)的25微升腔室时,需要5 - 7天才能自然积累足够的纤维蛋白基质(源自血浆前体)以形成跨越腔室间隙的完整桥接;植入后1周,细胞才刚刚开始从神经残端迁移到基质中。如果在腔室植入时或植入后不久为神经残端提供有利于细胞迁移的纤维蛋白基质,可能会刺激再生的时间进程。为了验证这一假设,在植入时给腔室预先充满不同的同源血浆制剂。用PBS透析的90%无血小板血浆(DP)溶液在植入后24小时形成纤维蛋白基质,该基质与自然形成的基质一样,主要呈纵向排列。在预先充满DP的腔室中,再生的时间进程受到刺激;植入后17天,雪旺细胞迁移和轴突伸长的程度明显大于对照组。相比之下,用未枸橼酸化血浆或DP + 钙预先填充腔室会在8分钟内产生由随机取向的纤维蛋白聚合物组成的基质。这些基质显著阻碍了再生进程。

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Exogenous fibrin matrix precursors stimulate the temporal progress of nerve regeneration within a silicone chamber.外源性纤维蛋白基质前体刺激硅胶室内神经再生的时间进程。
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