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RhoA knockdown by cationic amphiphilic copolymer/siRhoA polyplexes enhances axonal regeneration in rat spinal cord injury model

机译:阳离子两亲共聚物/ siRhoA多链体对RhoA的抑制作用增强了大鼠脊髓损伤模型中的轴突再生

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摘要

Spinal cord injury (SCI) results in permanent loss of motor and sensory function due to developmentally-related and injured-induced changes in the extrinsic microenvironment and intrinsic neuronal biochemistry that limit plasticity and axonal regeneration. Our long term goal is to develop cationic, amphiphilic copolymers (poly (lactide-co-glycolide)-g-polyethylenimine, PgP) for combinatorial delivery of therapeutic nucleic acids (TNAs) and drugs targeting these different barriers. In this study, we evaluated the ability of PgP to deliver siRNA targeting RhoA, a critical signaling pathway activated by multiple extracellular inhibitors of axonal regeneration. After generation of rat compression SCI model, PgP/siRhoA polyplexes were locally injected into the lesion site. Relative to untreated injury only, PgP/siRhoA polyplexes significantly reduced RhoA mRNA and protein expression for up to 4 weeks post-injury. Histological analysis at 4 weeks post-injury showed that RhoA knockdown was accompanied by reduced apoptosis, cavity size, and astrogliosis and increased axonal regeneration within the lesion site. These studies demonstrate that PgP is an efficient non-viral delivery carrier for therapeutic siRhoA to the injured spinal cord and may be a promising platform for the development of combinatorial TNA/drug therapy.
机译:脊髓损伤(SCI)由于外部相关微环境和内在神经元生化的发育相关和损伤诱导的变化而导致运动和感觉功能永久丧失,从而限制了可塑性和轴突再生。我们的长期目标是开发阳离子,两亲性共聚物(聚(丙交酯-乙交酯)-g-聚乙烯亚胺,PgP),用于组合递送治疗性核酸(TNA)和靶向这些不同障碍的药物。在这项研究中,我们评估了PgP递送靶向RhoA的siRNA的能力,RhoA是由多种轴突再生的细胞外抑制剂激活的关键信号通路。生成大鼠压缩SCI模型后,将PgP / siRhoA多聚体局部注入病变部位。仅相对于未经治疗的损伤,PgP / siRhoA多聚体在损伤后长达4周的时间内显着降低RhoA mRNA和蛋白表达。损伤后4周的组织学分析表明,RhoA基因敲低伴随着细胞凋亡,空腔大小和星形胶质细胞减少以及病变部位轴突再生的增加。这些研究表明,PgP是治疗siRhoA到受伤脊髓的有效非病毒载体,并且可能是开发组合TNA /药物疗法的有前途的平台。

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