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聚酰亚胺筛状电极长期植入成年大鼠坐骨神经横断处后轴突发芽和反应性组织变化的免疫组织化学特征

Immunohistochemical characterization of axonal sprouting and reactive tissue changes after long-term implantation of a polyimide sieve electrode to the transected adult rat sciatic nerve.

作者信息

Klinge P M, Vafa M A, Brinker T, Brandis A, Walter G F, Stieglitz T, Samii M, Wewetzer K

机构信息

Department of Neurosurgery, Hannover Medical School, Germany.

出版信息

Biomaterials. 2001 Sep;22(17):2333-43. doi: 10.1016/s0142-9612(00)00420-8.

Abstract

The development of artificial microstructures suited for interfacing of peripheral nerves is not only relevant for basic neurophysiological research but also for future prosthetic approaches. Aim of the present study was to provide a detailed analysis of axonal sprouting and reactive tissue changes after implantation of a flexible sieve electrode to the proximal stump of the adult rat sciatic nerve. We report here that massive neurite growth after implantation, steadily increasing over a period of 11 months, was observed. Parallel to this increase was the expression of myelin markers like Po, whereas non-myelin-forming Schwann cells did not change. Compared to five weeks post-implantation. where both Schwann-cell phenotypes were intermingled with each other, non-myelin-forming Schwann cells occupied a peripheral position in each microfascicle after 11 months. After an initial increase, hematogenous macrophages were down-regulated in number but maintained close contact with the implant. However, at no time were signs of its degradation observed. It is concluded that the introduced flexible polyimide electrode is suitable for contacting peripheral nerves since it permits substantial neurite growth and offers excellent long-term stability.

摘要

开发适用于外周神经接口的人工微结构不仅与基础神经生理学研究相关,也与未来的假肢方法有关。本研究的目的是详细分析将柔性筛状电极植入成年大鼠坐骨神经近端残端后轴突发芽和反应性组织变化。我们在此报告,观察到植入后大量神经突生长,在11个月的时间里稳步增加。与此增加并行的是髓磷脂标记物如Po的表达,而不形成髓磷脂的雪旺细胞没有变化。与植入后五周相比,那时两种雪旺细胞表型相互混杂,11个月后,不形成髓磷脂的雪旺细胞在每个微束中占据外周位置。在最初增加之后,血源性巨噬细胞数量下调,但与植入物保持密切接触。然而,在任何时候都未观察到其降解迹象。得出的结论是,引入的柔性聚酰亚胺电极适用于与外周神经接触,因为它允许大量神经突生长并提供出色的长期稳定性。

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