...
首页> 外文期刊>Cells tissues organs >Optimal degradation rate for collagen chambers used for regeneration of peripheral nerves over long gaps.
【24h】

Optimal degradation rate for collagen chambers used for regeneration of peripheral nerves over long gaps.

机译:用于长间隙内再生周围神经的胶原蛋白腔的最佳降解速率。

获取原文
获取原文并翻译 | 示例
           

摘要

The experimental study of peripheral nerve regeneration has depended heavily on the use of a nerve chamber in which the stumps of the transected nerve are inserted. A large variety of chamber fillings and chamber types have been used in an effort to induce a higher quality of regeneration across the gap initially separating the two stumps. In this study we studied the morphology of nerves regenerated across a 15 mm gap following implantation of a series of five chambers. The chambers were fabricated from type I collagen and possessed identical pore volume fractions as well as average pore diameters, but differed in cross-link density continuously along the series. The residual mass of the implanted chambers at 9 weeks was observed to increase continuously with increasing cross-link density along the series, indicating a continuous decrease in degradation rate. The quality of regenerated nerves, determined by the number of large diameter fibers (A-fibers) per nerve, the average diameter of all axons andthe ratio of area occupied by axons (N-Ratio), was superior at an intermediate level of chamber degradation rate. The maximal quality of peripheral nerve regeneration corresponded to an optimal degradation rate with an estimated chamber half-life of approximately 2-3 weeks following implantation. A speculative mechanistic explanation of the observed optimum focuses on the hypothetical role of cell and cytokine traffic that may take place through holes in the chamber generated by the degradation process. The data show the presence of a hitherto unreported optimal chamber degradation rate that leads to regenerated nerves of maximum quality.
机译:周围神经再生的实验研究在很大程度上取决于神经腔的使用,在神经腔中插入横断神经的残端。已经使用了各种各样的腔室填充物和腔室类型,以试图在最初将两个树桩分开的间隙上产生更高质量的再生。在这项研究中,我们研究了植入五个腔室后在15毫米间隙处再生的神经形态。腔室由I型胶原制成,具有相同的孔体积分数和平均孔径,但交联密度沿系列连续变化。观察到在第9周植入室的残留质量随着系列中交联密度的增加而连续增加,表明降解速率不断降低。再生神经的质量由每条神经的大直径纤维(A-纤维)数量,所有轴突的平均直径和轴突占据的面积比(N-Ratio)决定,在腔室退化的中等水平上要好率。植入后,周围神经再生的最大质量对应于最佳降解速率,其估计腔室半衰期约为2-3周。对观察到的最佳值的投机性机械解释着眼于细胞和细胞因子运输的假设作用,这些作用可能通过降解过程在培养室内的孔中发生。数据显示迄今尚未报道的最佳房室退化率的存在,可导致再生神经的最高质量。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号