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首页> 外文期刊>Nature Communications >Microenvironment-responsive immunoregulatory electrospun fibers for promoting nerve function recovery
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Microenvironment-responsive immunoregulatory electrospun fibers for promoting nerve function recovery

机译:微环境响应性免疫调节型电纺纤维促进神经功能恢复

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The strategies concerning modification of the?complex immune pathological inflammatory environment during acute spinal cord injury remain oversimplified and superficial. Inspired by the acidic microenvironment at acute injury sites, a functional pH-responsive immunoregulation-assisted neural regeneration strategy was constructed. With the capability of directly responding to the?acidic microenvironment at focal areas followed by triggered release of the IL-4 plasmid-loaded liposomes within a?few hours to suppress the release of inflammatory cytokines and promote neural differentiation of mesenchymal stem cells in vitro, the microenvironment-responsive immunoregulatory electrospun fibers were implanted into acute spinal cord injury rats. Together with sustained release of nerve growth factor (NGF) achieved by microsol core-shell structure, the immunological fiber scaffolds were revealed to bring significantly shifted immune cells subtype to down-regulate the?acute inflammation response, reduce scar tissue formation, promote angiogenesis as well as neural differentiation at the?injury site, and enhance functional recovery in vivo. Overall, this strategy provided a delivery system through microenvironment-responsive immunological regulation effect so as to break through the current dilemma from the contradiction between immune response and nerve regeneration, providing an alternative for the treatment of acute spinal cord injury. Inflammatory responses determine the pathological course of spinal cord injury. Here, the authors report on pH responsive fibers for triggered release of IL-4 plasmid liposomes and sustained release of nerve growth factor to regulate the immune response and promote nerve regeneration to enhance functional recovery.
机译:关于急性脊髓损伤期间修饰的策略 - 复杂的免疫病变炎症环境仍然过于简化和肤浅。由急性损伤部位的酸性微环境的启发,构建了功能性pH-响应免疫调节辅助神经再生策略。通过直接响应焦点区域的酸性微环境的能力,然后在a中触发IL-4质粒加载的脂质体的释放,抑制炎性细胞因子的释放,并促进体外间充质干细胞的神经分化。将微环境响应性免疫调节型电纺纤维植入急性脊髓损伤大鼠中。与Microsol核心壳结构达到的神经生长因子(NGF)的持续释放,揭示了免疫纤维支架,以使显着变化的免疫细胞亚型降低调节?急性炎症反应,减少瘢痕组织形成,促进血管生成。以及损伤部位的神经分化,增强体内功能恢复。总体而言,该策略通过微环境响应的免疫调节效果提供了一种递送系统,以便通过免疫应答和神经再生之间的矛盾突破当前的困境,为治疗急性脊髓损伤提供替代方案。炎症反应决定了脊髓损伤的病理过程。在此,作者报告了对触发IL-4质粒脂质体的触发释放的pH响应纤维和神经生长因子的持续释放,以调节免疫应答,促进神经再生以提高功能性回收。

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