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首页> 外文期刊>Biomaterials >Synergistic effects of self-assembling peptide and neural stem/progenitor cells to promote tissue repair and forelimb functional recovery in cervical spinal cord injury
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Synergistic effects of self-assembling peptide and neural stem/progenitor cells to promote tissue repair and forelimb functional recovery in cervical spinal cord injury

机译:自组装肽与神经干/祖细胞在宫颈脊髓损伤中促进组织修复和前肢功能恢复的协同效应

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While neural stem/progenitor cells (NPCs) show promise for traumatic spinal cord injury (SCI), their efficacy in cervical SCI remains to be established. Moreover, their application to SCI is limited by the challenges posed by the lesion including the glial scar and the post-traumatic cavitation. Given this background, we sought to examine the synergistic effect of self-assembling peptide (SAP) molecules, designed to optimize the post-traumatic CNS microenvironment, and NSCs in a clinically-relevant model of contusive/compressive cervical SCI. We injected K2(QL)6K2 (QL6) SAPs into the lesion epicenter 14 days after bilateral clip compression-induced cervical SCI in rats, combined with simultaneous transplantation of neural stem/progenitor cells (NPCs) intraspinally adjacent to the lesion epicenter. The QL6 SAPs reduced the volume of cystic cavitation in the spinal cord lesion. Simultaneously engrafted NPCs preserved motor neurons and attenuated perilesional inflammation. The combination of QL6 and NPCs promoted forelimb neurobehavioral recovery and was associated with significant improvement in forelimb print area and stride length. In summary, we report for the first time histologic and functional benefits in a clinically-relevant model of cervical SCI through the synergistic effects of combined SAP and NPCs.
机译:虽然神经干细胞/祖细胞(NPC)显示出对脊髓损伤(SCI)的希望,但它们在宫颈SCI中的疗效仍有待确定。而且,它们在SCI中的应用受到病变所带来的挑战的限制,这些挑战包括神经胶质瘢痕和创伤后空化。在这种背景下,我们试图在临床相关的挫伤性/压缩性宫颈SCI模型中研究自组装肽(SAP)分子的协同效应,以优化创伤后CNS微环境和NSC的作用。我们在大鼠双侧夹压缩诱导的宫颈SCI后14天将K2(QL)6K2(QL6)SAP注射到病变震中,并同时移植了与病变震中相邻的脊髓内神经干/祖细胞(NPC)。 QL6 SAP减少了脊髓病变中的囊性空化。同时移植的NPC保留了运动神经元并减轻了病灶周围的炎症。 QL6和NPC的结合促进了前肢神经行为的恢复,并与前肢印记面积和步幅的显着改善相关。总而言之,我们首次通过结合SAP和NPC的协同作用,在宫颈SCI的临床相关模型中首次报告了组织学和功能方面的益处。

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