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光密封神经吻合术:自体组织应用

Photosealed Neurorrhaphy Using Autologous Tissue.

机构信息

Wellman Center for Photomedicine, Harvard Medical School, Massachusetts General Hospital, Boston, MA 02114, USA.

Plastic Surgery Research Laboratory, Department of Surgery, Harvard Medical School, Massachusetts General Hospital, Boston, MA 02114, USA.

出版信息

Int J Mol Sci. 2024 Jun 25;25(13):6958. doi: 10.3390/ijms25136958.

Abstract

Photochemical sealing of a nerve wrap over the repair site isolates and optimizes the regenerating nerve microenvironment. To facilitate clinical adoption of the technology, we investigated photosealed autologous tissue in a rodent sciatic nerve transection and repair model. Rats underwent transection of the sciatic nerve with repair performed in three groups: standard microsurgical neurorrhaphy (SN) and photochemical sealing with a crosslinked human amnion (xHAM) or autologous vein. Functional recovery was assessed at four-week intervals using footprint analysis. Gastrocnemius muscle mass preservation, histology, and nerve histomorphometry were evaluated at 120 days. Nerves treated with a PTB-sealed autologous vein improved functional recovery at 120 days although the comparison between groups was not significantly different (SN: -58.4 +/- 10.9; XHAM: -57.9 +/- 8.7; Vein: -52.4 +/- 17.1). Good muscle mass preservation was observed in all groups, with no statistical differences between groups (SN: 69 +/- 7%; XHAM: 70 +/- 7%; Vein: 70 +/- 7%). Histomorphometry showed good axonal regeneration in all repair techniques. These results demonstrate that peripheral nerve repair using photosealed autologous veins produced regeneration at least equivalent to current gold-standard microsurgery. The use of autologous veins removes costs and foreign body concerns and would be readily available during surgery. This study illustrates a new repair method that could restore normal endoneurial homeostasis with minimal trauma following severe nerve injury.

摘要

用光化学方法将神经包裹物密封在修复部位,可以隔离并优化再生神经的微环境。为了促进该技术的临床应用,我们在大鼠坐骨神经横断和修复模型中研究了光密封的自体组织。大鼠行坐骨神经横断,修复分为三组:标准显微神经吻合术(SN)和用光化学交联人羊膜(xHAM)或自体静脉进行密封。术后每隔四周采用足迹分析评估功能恢复情况,120 天评估比目鱼肌质量保留、组织学和神经组织形态计量学。尽管组间比较无显著差异,但用 PTB 密封的自体静脉处理的神经在 120 天时改善了功能恢复(SN:-58.4 +/- 10.9;xHAM:-57.9 +/- 8.7;静脉:-52.4 +/- 17.1)。所有组均观察到良好的肌肉质量保留,组间无统计学差异(SN:69 +/- 7%;xHAM:70 +/- 7%;静脉:70 +/- 7%)。组织形态计量学显示所有修复技术均有良好的轴突再生。这些结果表明,用光密封的自体静脉进行周围神经修复产生的再生至少与当前的金标准显微外科相当。自体静脉的使用消除了成本和异物的担忧,并且在手术期间可以随时获得。本研究展示了一种新的修复方法,可在严重神经损伤后最小化创伤恢复正常的神经内膜稳态。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9eac/11241074/ef4a9a610fc3/ijms-25-06958-g001.jpg

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