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Transplantation of BDNF Gene Recombinant Mesenchymal Stem Cells and Adhesive Peptide-modified Hydrogel Scaffold for Spinal Cord Repair

机译:BDNF基因重组间充质干细胞的移植及粘性肽改性水凝胶支架脊髓修复

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摘要

Introduction: Mesenchymal Stem Cells (MSCs) are promising candidates for nerve tissue engineering. Brain Derived Neurotrophic Factor (BDNF) secreted by MSCs can function to increase neural differentiation and relieve inflammation response. Gene transfection technology is an efficient strategy to increase the secretion levels of cytokines and enhance cellular functions. However, transfection and in vivo gene expression of environmentally sensitive stem cells have been one of the most challenging subjects due to the requirement in both safety and transfection efficiency. In this study, gene transfection technology was applied to prepare BDNF gene recombinant MSCs based on our previously reported liposomal vector ScreenFect (R) A. To improve cellular survival and gene expression after in situ implantation of MSCs, an adhesive peptide modified hydrogel scaffold was constructed using hyaluronic acid. The scaffold was optimized and modified with an adhesive peptide PPFLMLLKGSTR. The transfected MSCs exhibited improved cellular survival and sustained gene expression in the three-Dimentional (3D) scaffold in vitro. Compared to untransfected MSCs, gene recombinant MSCs effectively improved spinal tissue integrity, inhibited glial scar formation and alleviated inflammatory response. These effects were found discounted when cells were implanted without the scaffold.
机译:引言:间充质干细胞(MSCs)是神经组织工程的有希望的候选者。 MSCs分泌的脑衍生的神经营养因子(BDNF)可以起增加神经分化并缓解炎症反应。基因转染技术是提高细胞因子分泌水平的有效策略,增强细胞功能。然而,由于安全性和转染效率的要求,转染和环境敏感干细胞的体内基因表达是最具挑战性的受试者之一。在本研究中,基于我们先前报道的脂质体载体筛选(R)A.在原位植入MSCs后改善细胞存活和基因表达,构建了基因转染技术基于我们先前报道的脂质体载体筛选(R)A.改善细胞生存和基因表达。使用透明质酸。用粘合剂肽PPFLMLLKGSTR优化和改性支架。转染的MSCs在体外具有改善的细胞存活和三维(3D)支架中的持续基因表达。与未转染的MSCs相比,基因重组MSCs有效地改善了脊髓组织完整性,抑制胶质瘢痕形成和缓解炎症反应。发现这些效果折扣,当没有支架的情况下植入细胞时。

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