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An injectable and self-healing hydrogel with controlled release of curcumin to repair spinal cord injury

机译:一种可注射和自愈的水凝胶,具有控制释放姜黄素以修复脊髓损伤

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摘要

The harsh local micro-environment following spinal cord injury (SCI) remains a great challenge for neural regeneration. Local reconstitution of a favorable micro-environment by biocompatible scaffolds with desirable functions has thus been an area of concern. Herein, a hybrid hydrogel was developed using Fmoc-grafted chitosan (FC) and Fmoc peptide (FI). Dynamic reversible π-π stacking interactions of the fluorenyl rings enabled the FC/FI hybrid hydrogel to exhibit excellent injectable and self-healing properties, as characterized by visual appearances and rheological tests. Furthermore, the FC/FI hybrid hydrogel showed a slow and persistent release of curcumin (Cur), which was named as FC/FI-Cur hydrogel. In vitro studies confirmed that with the support of FC/FI-Cur hydrogel, neurite outgrowth was promoted, and Schwann cell (SC) migration away from dorsal root ganglia (DRG) spheres with enhanced myelination was substantiated. The FC/FI-Cur hydrogel well reassembled extracellular matrix at the lesion site of rat spinal cord and exerted outstanding effects in modulating local inflammatory reaction by regulating the phenotypes of infiltrated inflammatory cells. In addition, endogenous SCs were recruited in the FC/FI-Cur graft and participated in the remyelination process of the regenerated nerves. These outcomes favored functional recovery, as evidenced by improved hind limbs movement and enhanced electrophysiological properties. Thus, our study not only advanced the development of multifunctional hydrogels but also provided insights into comprehensive approaches for SCI repair.
机译:脊髓损伤(SCI)后苛刻的局部微环境仍然是神经再生的巨大挑战。因此,通过生物相容性的脚手架具有所需功能的良好微环境的局部重构是一个关注的领域。这里,使用FMOC接枝壳聚糖(FC)和FMOC肽(FI)开发杂交水凝胶。芴基环的动态可逆π-π堆叠相互作用使Fc / Fi杂化水凝胶具有出色的可注射和自愈合特性,其特征在于视觉外观和流变测试。此外,Fc / Fi杂交水凝胶显示出姜黄素(Cur)的缓慢和持续的释放,其被命名为Fc / Fi-Cur凝胶。体外研究证实,随着Fc / Fi-Curlogel的支持,促进了神经突生长,并且证实了施曼细胞(SC)迁移与增强的髓鞘导致的背根神经节(DRG)球体迁移。 Fc / Fi-Cur水凝胶在大鼠脊髓病变位点处重组细胞外基质,并通过调节渗透炎性细胞的表型调节局部炎症反应的突出效果。此外,在FC / FI-CR接枝中招募内源SCS并参与再生神经的重新髓鞘过程。这些结果赞成功能恢复,通过改善的后肢运动和增强的电生理学特性所证明。因此,我们的研究不仅提出了多功能水凝胶的发展,而且还为SCI修复的综合方法提供了深度。

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