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用于解决上肢周围神经缺损的生物材料的研发

Development of Biomaterials for Addressing Upper Extremity Peripheral Nerve Gaps.

作者信息

Smadi Bassam M, Shekouhi Ramin, Azizi Armina, Chim Harvey

机构信息

J Crayton Pruitt Department of Biomedical Engineering, University of Florida, Gainesville, FL.

Nanoscience Institute for Medical and Engineering Technology (NIMET), University of Florida, Gainesville, FL.

出版信息

J Hand Surg Glob Online. 2024 Mar 27;6(5):711-717. doi: 10.1016/j.jhsg.2024.01.023. eCollection 2024 Sep.

Abstract

Peripheral nerve injuries within the upper extremities can lead to impaired function and reduced quality of life. Although autografts have traditionally served as the primary therapeutic approach to bridge nerve gaps, these present challenges related to donor site morbidity. This review delves into the realm of biomaterials tailored for addressing nerve gaps. Biomaterials, whether natural or synthetically derived, offer the potential not only to act as scaffolds for nerve regeneration but also to be enhanced with growth factors and agents that promote nerve recovery. The historical progression of these biomaterials as well as their current applications, advantages, inherent challenges, and future impact in the arena of regenerative medicine are discussed. By providing a comprehensive overview, we aim to shed light on the transformative potential of biomaterials in peripheral nerve repair and the path toward refining their efficacy in clinical settings.

摘要

上肢的周围神经损伤会导致功能受损和生活质量下降。尽管自体移植传统上一直是修复神经缺损的主要治疗方法,但这些方法存在供体部位发病相关的挑战。本综述深入探讨了用于解决神经缺损的生物材料领域。生物材料,无论是天然的还是合成的,不仅有潜力作为神经再生的支架,还可以用促进神经恢复的生长因子和药物进行强化。本文讨论了这些生物材料的历史发展、当前应用、优势、固有挑战以及在再生医学领域的未来影响。通过提供全面的概述,我们旨在阐明生物材料在周围神经修复中的变革潜力以及在临床环境中提高其疗效的途径。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fe17/11456663/e5319817fb0f/gr1.jpg

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