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The combined strategy of mesenchymal stem cells and tissue-engineered scaffolds for spinal cord injury regeneration

机译:间充质干细胞与组织工程支架相结合的脊髓损伤再生策略

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摘要

Spinal cord injury (SCI) is a traumatic lesion that can result in the loss of motor or sensory neurons. Stem cell (SC)-based therapies have been demonstrated to promote neuronal regeneration following SCI, by releasing a range of trophic factors that support endogenous repair or by differentiating into neurons, or glial cells in order to replace the damaged cells. However, numerous limitations remain for therapies based on SC transplantion alone, including a low rate of survival/engraftment. Nevertheless, scaffolds are 3-dimentional substrates that have revealed to support cell survival, proliferation and differentiation in vivo, by mimicking a more favorable endogenous microenvironment. A multidisciplinary approach, which combines engineered scaffolds with SCs has been proposed as a promising strategy for encouraging spinal cord regeneration. The present review has focused on the regenerative potential of mesenchymal SCs isolated from different sources and combined with various scaffold types, in preclinical and clinical SCI studies.
机译:脊髓损伤(SCI)是一种创伤性损伤,可导致运动或感觉神经元丢失。已经证明,基于干细胞(SC)的疗法可通过释放一系列支持内源性修复的营养因子或分化为神经元或神经胶质细胞以替代受损细胞,从而促进SCI后的神经元再生。然而,仅基于SC移植的疗法仍然存在许多局限性,包括低存活率/植入率。然而,支架是3维底物,通过模拟更有利的内源性微环境,已揭示其在体内支持细胞存活,增殖和分化。已经提出了将工程支架与SC结合的多学科方法,作为鼓励脊髓再生的有前途的策略。在临床前和临床SCI研究中,本综述着重于从不同来源分离并与各种支架类型结合的间充质SC的再生潜力。

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