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周围神经修复与再生的基础与当前策略

Fundamentals and Current Strategies for Peripheral Nerve Repair and Regeneration.

机构信息

3B's Research Group, I3Bs - Research Institute on Biomaterials, Biodegradables and Biomimetics, Headquarters of the European Institute of Excellence on Tissue Engineering and Regenerative Medicine, University of Minho, Guimarães, Portugal.

ICVS/3B's - PT Government Associated Laboratory, Guimarães, Portugal.

出版信息

Adv Exp Med Biol. 2020;1249:173-201. doi: 10.1007/978-981-15-3258-0_12.

Abstract

A body of evidence indicates that peripheral nerves have an extraordinary yet limited capacity to regenerate after an injury. Peripheral nerve injuries have confounded professionals in this field, from neuroscientists to neurologists, plastic surgeons, and the scientific community. Despite all the efforts, full functional recovery is still seldom. The inadequate results attained with the "gold standard" autograft procedure still encourage a dynamic and energetic research around the world for establishing good performing tissue-engineered alternative grafts. Resourcing to nerve guidance conduits, a variety of methods have been experimentally used to bridge peripheral nerve gaps of limited size, up to 30-40 mm in length, in humans. Herein, we aim to summarize the fundamentals related to peripheral nerve anatomy and overview the challenges and scientific evidences related to peripheral nerve injury and repair mechanisms. The most relevant reports dealing with the use of both synthetic and natural-based biomaterials used in tissue engineering strategies when treatment of nerve injuries is envisioned are also discussed in depth, along with the state-of-the-art approaches in this field.

摘要

有大量证据表明,外周神经在受伤后具有非凡但有限的再生能力。外周神经损伤使神经科学家、神经学家、整形外科医生和科学界等领域的专业人员感到困惑。尽管付出了所有努力,功能完全恢复仍然很少见。“金标准”自体移植物手术所取得的结果并不理想,这仍然鼓励全世界开展积极的研究,以建立性能良好的组织工程替代移植物。通过神经引导管,已经实验性地使用了多种方法来桥接人类有限大小的外周神经间隙,长度可达 30-40 毫米。在此,我们旨在总结外周神经解剖学的基础知识,并概述与外周神经损伤和修复机制相关的挑战和科学证据。还深入讨论了在设想治疗神经损伤时使用的组织工程策略中基于合成和天然的生物材料的最相关报告,并介绍了该领域的最新方法。

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