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2023年的神经吻合:超越缝合的神经修复辅助手段。

Nerve Coaptation in 2023: Adjuncts to Nerve Repair Beyond Suture.

作者信息

Clifford Alexis L, Klifto Christopher S, Li Neill Y

机构信息

University of Florida College of Medicine, Gainesville, FL.

Department of Orthopaedic Surgery, Duke University, Durham, NC.

出版信息

J Hand Surg Glob Online. 2024 Apr 11;6(5):705-710. doi: 10.1016/j.jhsg.2024.01.027. eCollection 2024 Sep.

DOI:10.1016/j.jhsg.2024.01.027
PMID:39381375
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC11456665/
Abstract

Effective nerve coaptation entails tensionless repair of healthy fascicles with intact fascicular architecture and a well-vascularized environment, supportive of the regenerative cellular behaviors of neurons, immune cells, and Schwann cells. Suture coaptations have historically been used to ensure that these criteria are met for end-to-end repair, nerve transfers, and allograft or autograft reconstructions; however, unfortunately, overall restoration of function remains poor. As optimal coaptation is required for return of sensorimotor function, adjunct biomaterials are increasingly being enlisted attempting to optimize these suture-based coaptations. The purpose of this review was to discuss the biological, preclinical, and clinical data for the use of fibrin glue and nerve wraps made of type 1 collagen, porcine small intestine submucosa, chitosan, and human amniotic membrane. This study provides available data on each material's ability to optimize the regenerative potential of nerve repair as well as available outcomes data. Although each biomaterial discussed has benefits to nerve regeneration, at large, data remain heterogeneous, and continued investigation is required to fully understand the specific mechanisms involved and the long-term potential clinical impacts each can provide for improvement of sensorimotor outcomes.

摘要

有效的神经对接需要对健康的神经束进行无张力修复,保持神经束结构完整,并营造血管化良好的环境,以支持神经元、免疫细胞和施万细胞的再生细胞行为。历史上,缝合对接一直用于确保在端对端修复、神经移植以及同种异体或自体移植重建中满足这些标准;然而,遗憾的是,功能的总体恢复情况仍然很差。由于感觉运动功能的恢复需要最佳对接,因此越来越多地使用辅助生物材料来优化这些基于缝合的对接。本综述的目的是讨论使用纤维蛋白胶以及由I型胶原蛋白、猪小肠黏膜下层、壳聚糖和人羊膜制成的神经包裹材料的生物学、临床前和临床数据。本研究提供了关于每种材料优化神经修复再生潜力的可用数据以及可用的结果数据。尽管所讨论的每种生物材料都对神经再生有益,但总体而言,数据仍然参差不齐,需要继续进行研究,以充分了解其中涉及的具体机制以及每种材料对改善感觉运动结果可能产生的长期潜在临床影响。