基于导管的周围神经修复中的光生物调制和血管化:叙述性综述。

IF 1.8 Q2 SURGERY
Christopher R Fellin, Richard C Steiner, Jack T Buchen, Juanita J Anders, Shailly H Jariwala
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引用次数: 0

摘要

背景:周围神经损伤给患者带来了严重的临床问题,尤其是在最严重的情况下,完全横断(神经损伤)会导致患者完全丧失感觉/运动功能。神经引导导管(NGC)是一种常见的治疗方法,可在恢复期间保护和引导再生轴突。然而,治疗效果仍然有限,而且往往无法实现完全的神经再支配,尤其是在严重缺损(大于 3 厘米)的情况下,血管缺乏会导致神经坏死。结论:因此,有必要采用多种治疗方法来提高 NGCs 的疗效。刺激 NGCs 内的血管生成有助于通过与宿主血管的快速内嵌缓解缺氧,而光生物调控疗法(PBMT)已证明对再生神经细胞和新生血管具有有益的治疗效果。在这篇综述中,我们讨论了目前将 NGCs、血管化和 PBMT 作为治疗周围神经损伤的方法的趋势,并强调了采用组合方法改善功能和临床效果的必要性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Photobiomodulation and Vascularization in Conduit-Based Peripheral Nerve Repair: A Narrative Review.

Background: Peripheral nerve injuries pose a significant clinical issue for patients, especially in the most severe cases wherein complete transection (neurotmesis) results in total loss of sensory/motor function. Nerve guidance conduits (NGCs) are a common treatment option that protects and guides regenerating axons during recovery. However, treatment outcomes remain limited and often fail to achieve full reinnervation, especially in critically sized defects (>3 cm) where a lack of vascularization leads to neural necrosis. Conclusions: A multitreatment approach is, therefore, necessary to improve the efficacy of NGCs. Stimulating angiogenesis within NGCs can help alleviate oxygen deficiency through rapid inosculation with the host vasculature, whereas photobiomodulation therapy (PBMT) has demonstrated beneficial therapeutic effects on regenerating nerve cells and neovascularization. In this review, we discuss the current trends of NGCs, vascularization, and PBMT as treatments for peripheral nerve neurotmesis and highlight the need for a combinatorial approach to improve functional and clinical outcomes.

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来源期刊
CiteScore
4.10
自引率
0.00%
发文量
0
期刊介绍: Photobiomodulation, Photomedicine, and Laser Surgery Editor-in-Chief: Michael R Hamblin, PhD Co-Editor-in-Chief: Heidi Abrahamse, PhD
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