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首页> 外文期刊>NPJ Regenerative medicine. >Neural stem cell delivery via porous collagen scaffolds promotes neuronal differentiation and locomotion recovery in spinal cord injury
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Neural stem cell delivery via porous collagen scaffolds promotes neuronal differentiation and locomotion recovery in spinal cord injury

机译:通过多孔胶原支架的神经干细胞递送促进神经元分化和脊髓损伤的运动恢复

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摘要

Neural stem cell (NSC) grafts have demonstrated significant effects in animal models of spinal cord injury (SCI), yet their clinical translation remains challenging. Significant evidence suggests that the supporting matrix of NSC grafts has a crucial role in regulating NSC effects. Here we demonstrate that grafts based on porous collagen-based scaffolds (PCSs), similar to biomaterials utilized clinically in induced regeneration, can deliver and protect embryonic NSCs at SCI sites, leading to significant improvement in locomotion recovery in an experimental mouse SCI model, so that 12 weeks post-injury locomotion performance of implanted animals does not statistically differ from that of uninjured control animals. NSC-seeded PCS grafts can modulate key processes required to induce regeneration in SCI lesions including enhancing NSC neuronal differentiation and functional integration in vivo, enabling robust axonal elongation, and reducing astrogliosis. Our findings suggest that the efficacy and translational potential of emerging NSC-based SCI therapies could be enhanced by delivering NSC via scaffolds derived from well-characterized clinically proven PCS.
机译:神经干细胞(NSC)移植物在脊髓损伤(SCI)的动物模型中表现出显着的影响,但它们的临床翻译仍然挑战。重要的证据表明,NSC移植物的支持基质在调节NSC效应方面具有至关重要的作用。在这里,我们证明了基于多孔胶原基的支架(PCS)的移植物,类似于临床上的生物材料,可以在SCI位点递送和保护胚胎NSCs,导致实验鼠标SCI模型中的运动恢复显着改善,因此12周损伤后的植入动物的机制性能与未加注的对照动物的统计学性能没有统计学不同。 NSC播种的PC移植物可以调节诱导SCI病变中的再生所需的关键方法,包括增强体内NSC神经元分化和功能整合,从而实现稳健的轴突伸长,以及减少十天延迟。我们的研究结果表明,通过源自良好的临床证明PCS的支架,可以通过衍生NSC来增强新出现的基于NSC的SCI疗法的疗效和平移潜力。

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