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抑制 KLF7 靶向 microRNA146b 促进坐骨神经再生。

Inhibition of KLF7-Targeting MicroRNA 146b Promotes Sciatic Nerve Regeneration.

机构信息

Department of Anatomy, Mudanjiang College of Medicine, Mudanjiang, 157011, China.

The Affiliated Hongqi Hospital, Mudanjiang College of Medicine, Mudanjiang, 157011, China.

出版信息

Neurosci Bull. 2018 Jun;34(3):419-437. doi: 10.1007/s12264-018-0206-x. Epub 2018 Jan 22.

Abstract

A previous study has indicated that Krüppel-like factor 7 (KLF7), a transcription factor that stimulates Schwann cell (SC) proliferation and axonal regeneration after peripheral nerve injury, is a promising therapeutic transcription factor in nerve injury. We aimed to identify whether inhibition of microRNA-146b (miR-146b) affected SC proliferation, migration, and myelinated axon regeneration following sciatic nerve injury by regulating its direct target KLF7. SCs were transfected with miRNA lentivirus, miRNA inhibitor lentivirus, or KLF7 siRNA lentivirus in vitro. The expression of miR146b and KLF7, as well as SC proliferation and migration, were subsequently evaluated. In vivo, an acellular nerve allograft (ANA) followed by injection of GFP control vector or a lentiviral vector encoding an miR-146b inhibitor was used to assess the repair potential in a model of sciatic nerve gap. miR-146b directly targeted KLF7 by binding to the 3'-UTR, suppressing KLF7. Up-regulation of miR-146b and KLF7 knockdown significantly reduced the proliferation and migration of SCs, whereas silencing miR-146b resulted in increased proliferation and migration. KLF7 protein was localized in SCs in which miR-146b was expressed in vivo. Similarly, 4 weeks after the ANA, anti-miR-146b increased KLF7 and its target gene nerve growth factor cascade, promoting axonal outgrowth. Closer analysis revealed improved nerve conduction and sciatic function index score, and enhanced expression of neurofilaments, P0 (anti-peripheral myelin), and myelinated axon regeneration. Our findings provide new insight into the regulation of KLF7 by miR-146b during peripheral nerve regeneration and suggest a potential therapeutic strategy for peripheral nerve injury.

摘要

先前的研究表明,转录因子 Krüppel 样因子 7(KLF7)可刺激周围神经损伤后雪旺细胞(SC)增殖和轴突再生,是神经损伤有前途的治疗性转录因子。我们旨在确定通过调节其直接靶标 KLF7,抑制 microRNA-146b(miR-146b)是否会影响坐骨神经损伤后 SC 的增殖、迁移和有髓轴突再生。体外将 miR 慢病毒、miR 抑制剂慢病毒或 KLF7 siRNA 慢病毒转染 SC。随后评估 miR146b 和 KLF7 的表达以及 SC 的增殖和迁移。在体内,使用去细胞神经同种异体移植物(ANA),然后注射 GFP 对照载体或编码 miR-146b 抑制剂的慢病毒载体,以评估坐骨神经间隙模型中的修复潜力。miR-146b 通过与 3'-UTR 结合直接靶向 KLF7,抑制 KLF7。miR-146b 的上调和 KLF7 的敲低显著降低了 SC 的增殖和迁移,而沉默 miR-146b 导致增殖和迁移增加。KLF7 蛋白在体内表达 miR-146b 的 SC 中定位。同样,ANA 后 4 周,抗 miR-146b 增加了 KLF7 及其靶基因神经生长因子级联,促进了轴突的生长。更深入的分析显示,神经传导和坐骨神经功能指数评分得到改善,神经丝、P0(抗周围髓鞘)和有髓轴突再生的表达增强。我们的研究结果为 miR-146b 在周围神经再生过程中对 KLF7 的调节提供了新的见解,并为周围神经损伤提供了一种潜在的治疗策略。

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