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首页> 外文期刊>Biomaterials >The effect of injectable gelatin-hydroxyphenylpropionic acid hydrogel matrices on the proliferation, migration, differentiation and oxidative stress resistance of adult neural stem cells
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The effect of injectable gelatin-hydroxyphenylpropionic acid hydrogel matrices on the proliferation, migration, differentiation and oxidative stress resistance of adult neural stem cells

机译:明胶-羟苯基丙酸水凝胶基质对成年神经干细胞增殖,迁移,分化和抗氧化应激的影响

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Transplanted or endogenous neural stem cells often lack appropriate matrix in cavitary lesions in the central nervous system. In this study, gelatin-hydroxyphenylpropionic acid (Gtn-HPA), which could be enzymatically crosslinked with independent tuning of crosslinking degree and gelation rate, was explored as an injectable hydrogel for adult neural stem cells (aNSCs). The storage modulus of Gtn-HPA could be tuned (449-1717 Pa) to approximate adult brain tissue. Gtn-HPA was cytocompatible with aNSCs (yielding high viability 93%) and promoted aNSC adhesion. Gtn-HPA demonstrated a crosslinking-based approach for preconditioning aNSCs and increased the resistance of aNSCs to oxidative stress, improving their viability from 8-15% to 84% when challenged with 500 μM H 2O 2. In addition, Gtn-HPA was able to modulate proliferation and migration of aNSCs in relation to the crosslinking degree. Finally, Gtn-HPA exhibited bias for neuronal cells. In mixed differentiation conditions, Gtn-HPA increased the proportion of aNSCs expressing neuronal marker β-tubulin III to a greater extent than that for astrocytic marker glial fibrillary acidic protein, indicating an enhancement in differentiation towards neuronal lineage. Between neuronal and astrocytic differentiation conditions, Gtn-HPA also selected for higher survival in the former. Overall, Gtn-HPA hydrogels are promising injectable matrices for supporting and influencing aNSCs in ways that may be beneficial for brain tissue regeneration after injuries.
机译:移植或内源性神经干细胞通常在中枢神经系统的空洞病变中缺乏适当的基质。在这项研究中,明胶-羟基苯基丙酸(Gtn-HPA)可以通过酶联交联,并且可以独立调节交联度和胶凝速率,被用作成人神经干细胞(aNSCs)的可注射水凝胶。可以调节Gtn-HPA的储能模量(449-1717 Pa)来近似成人脑组织。 Gtn-HPA与aNSCs具有细胞相容性(高存活率> 93%),并促进aNSC粘附。 Gtn-HPA展示了一种基于交联的预处理aNSC的方法,并提高了aNSC对氧化应激的抵抗力,在用500μMH 2O 2挑战时将其生存能力从8-15%提高到84%。此外,Gtn-HPA能够调节与交联度有关的aNSC的增殖和迁移。最后,Gtn-HPA对神经元细胞表现出偏见。在混合分化条件下,与星形胶质细胞胶质原纤维酸性蛋白相比,Gtn-HPA增加了表达神经元标记物β-微管蛋白III的aNSCs的比例,表明向神经元谱系分化的增强。在神经元分化和星形细胞分化条件之间,Gtn-HPA还被选择用于前者中更高的存活率。总体而言,Gtn-HPA水凝胶有望以有利于损伤后脑组织再生的方式支持和影响aNSC的可注射基质。

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