由 VEGF/VEGFR2/ERK 介导的硅诱导生物膜可改善大鼠的周围神经缺陷。

IF 1.7 4区 医学 Q3 CLINICAL NEUROLOGY
Neurological Research Pub Date : 2024-08-01 Epub Date: 2024-05-09 DOI:10.1080/01616412.2024.2352232
Jun Wang, Dong Mao, BeiChen Dai, YongJun Rui
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引用次数: 0

摘要

背景:能够再生的周围神经损伤预后较差,影响人们的生活质量。移植治疗周围神经损伤后神经功能的恢复仍是一个世界性难题。硅诱导生物膜作为血管化生物导管,可通过包裹自体或异体神经移植物促进神经再生:我们拟在本研究中探讨硅诱导生物膜对神经再生的影响,以及VEGF/VEGFR2/ERK通路是否参与其中:方法:用硅诱导周围神经损伤大鼠移植神经周围的生物膜。方法:用硅诱导周围神经损伤大鼠移植神经周围的生物膜,测量血管生成和与 VEGF/VEGFR2/ERK 相关的蛋白质。用硅诱导的生物膜包裹移植神经后,对神经的病理和形态进行了研究:结果:我们的研究结果表明,用硅诱导 6 周的生物膜血管化程度最高,对神经再生的效果最佳。此外,硅诱导 4 周、6 周和 8 周的生物膜能显著分泌血管内皮生长因子,其中诱导后第 6 周的含量最高。VEGFR2、VEGF、p-VEGFR2、ERK1、ERK2、p-ERK1和p-ERK2在生物膜中均有表达,p-VEGFR2、p-ERK1和p-ERK2的表达在各时间点均有差异,且第6周的表达量较第4周和第8周显著增加,这表明第6周是诱导生物膜改善周围神经损伤后神经修复的最佳时间:我们的研究结果表明,硅诱导的自体血管化生物膜与自体移植相结合,可通过血管内皮生长因子/血管内皮生长因子受体2/ERK通路快速促进大鼠坐骨神经缺损的修复。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Silicon-induced biofilm improves peripheral nerve defect in rats mediated by VEGF/VEGFR2/ERK.

Background: Injury of peripheral nerve capable of regeneration with much poorer prognosis affects people's life quality. The recovery of nerve function after transplantation for peripheral nerve injury remain a worldwide problem. Silicon-induced biofilms as vascularized biological conduits can promote nerve regeneration by encapsulating autologous or allogeneic nerve graft.Objective: We proposed to explore the effect of silicon-induced biofilms on nerves regeneration and whether the VEGF/VEGFR2/ERK pathway was involved in the present study.Methods: Biofilms around the transplanted nerves in peripheral nerve injury rats were induced by silicon. Vascularization and proteins related to VEGF/VEGFR2/ERK were measured. Pathology and morphology of nerves were investigated after encapsulating the transplanted nerves by silicon-induced biofilms.Results: Our results indicated that the biofilms induced by silicon for 6 weeks showed the most intensive vascularization and the optimal effect on nerve regeneration. Moreover, silicon-induced biofilms for 4, 6 and 8 weeks could significantly secrete VEGF with the highest content at week 6 after induction. VEGFR2, VEGF, p-VEGFR2, ERK1, ERK2, p-ERK1 and p-ERK2 were expressed in the biofilms. p-VEGFR2, p-ERK1 and p-ERK2 expression were different at each time point and significantly increased at week 6 compared with that at week 4 or week 8 which was consistent with that 6 week of was the optimum time for biofilms induction to improve the nerve repair after peripheral nerve injury.Conclusion: Our results suggested that combination of silicon-induced autologous vascularized biofilm and autologous transplantation may promote the repair of rat sciatic nerve defect quickly through VEGF/VEGFR2/ERK pathway.

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来源期刊
Neurological Research
Neurological Research 医学-临床神经学
CiteScore
3.60
自引率
0.00%
发文量
116
审稿时长
5.3 months
期刊介绍: Neurological Research is an international, peer-reviewed journal for reporting both basic and clinical research in the fields of neurosurgery, neurology, neuroengineering and neurosciences. It provides a medium for those who recognize the wider implications of their work and who wish to be informed of the relevant experience of others in related and more distant fields. The scope of the journal includes: •Stem cell applications •Molecular neuroscience •Neuropharmacology •Neuroradiology •Neurochemistry •Biomathematical models •Endovascular neurosurgery •Innovation in neurosurgery.
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