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脉冲电磁场对大鼠坐骨神经挤压伤再生的生物力学微环境刺激作用

Biomechanical microenvironmental stimulating effect of pulsed electromagnetic field on the regeneration of crush injured rat sciatic nerve.

作者信息

Lee Sang-Yoon, Kim Bongju, Lee Sung-Ho, Ju Kyungwon, Kim Soung-Min, Lee Jong-Ho, Pang KangMi

机构信息

Dental Research Institute, Department of Oral and Maxillofacial Surgery, Seoul National University School of Dentistry, Seoul, Republic of Korea.

Dental Life Science Research Institute, Innovation Research and Support Center for Dental Science, Seoul National University Dental Hospital, Seoul, Republic of Korea.

出版信息

Biomed Eng Lett. 2023 Apr 7;13(2):235-243. doi: 10.1007/s13534-023-00276-w. eCollection 2023 May.

Abstract

This study evaluated the biomechanical microenvironmental stimulating effect of pulsed electromagnetic field (PEMF) on the regeneration of crush-injured rat sciatic nerve, when combined with bone marrow mesenchymal stem cells (BMSCs) and recombinant human nerve growth factor (rhNGF-β), in the form of an adenoviral vector-mediated NGF. Sprague-Dawley rats were equally distributed into six groups; PBS, BMSC, NGF-Ad + BMSC, PEMF + PBS, PEMF + BMSC and PEMF + NGF-Ad + BMSC. The PBS group received PBS (volume: 10μL/rat), the BMSC group with BMSCs (1 × 10 cell/10 μL/rat) and NGF-Ad group with the rhNGF-β Ad infected BMSCs (1 × 10 cell/10 μL/rat) immediate after right sciatic nerve crush injury. The PEMF groups were exposed to PEMF of 1mT, 50 Hz, 1 h/day. The rats were observed for 3 weeks. PEMF alone did not showed the positive effect compared with negative control group. The groups transplanted with BMSCs showed higher axonal regeneration compared with the groups without transplantation of the cells whether BMSC was infected with NGF-Ad or not and whether the animals received PEMF. PEMF + NGF-Ad + BMSC group showed the significantly highest number of axons than the other groups. Functionally, all groups showed marked improvement at 3 weeks postoperatively although the difference was not statistically significant among the groups. PEMF showed the positive effect when combined with BMSC and NGF-ad in aspect of number of axons. Therefore, combining the microenvironment stimulation methods of PEMF and conventional methods such as transplantation of stem cells and growth factor could be considered for the regeneration methods in the nerve damage.

摘要

本研究评估了脉冲电磁场(PEMF)对挤压损伤的大鼠坐骨神经再生的生物力学微环境刺激作用,该作用通过腺病毒载体介导的神经生长因子(rhNGF-β)与骨髓间充质干细胞(BMSCs)联合实现。将Sprague-Dawley大鼠平均分为六组:PBS组、BMSC组、NGF-Ad + BMSC组、PEMF + PBS组、PEMF + BMSC组和PEMF + NGF-Ad + BMSC组。PBS组在右侧坐骨神经挤压损伤后立即注射PBS(体积:10μL/只大鼠),BMSC组注射BMSCs(1×10⁶细胞/10μL/只大鼠),NGF-Ad组注射经rhNGF-β腺病毒感染的BMSCs(1×10⁶细胞/10μL/只大鼠)。PEMF组每天暴露于1mT、50Hz的PEMF下1小时。观察大鼠3周。与阴性对照组相比,单独的PEMF未显示出积极效果。无论BMSC是否被NGF-Ad感染以及动物是否接受PEMF,移植BMSCs的组与未移植细胞的组相比,轴突再生更高。PEMF + NGF-Ad + BMSC组的轴突数量明显高于其他组。在功能上,所有组在术后3周均显示出明显改善,尽管各组之间的差异无统计学意义。在轴突数量方面,PEMF与BMSC和NGF-ad联合时显示出积极效果。因此,对于神经损伤的再生方法,可以考虑将PEMF的微环境刺激方法与传统方法如干细胞移植和生长因子相结合。

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