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首页> 外文期刊>Materials science & engineering, C. Materials for Biogical applications >Neuronal production from induced pluripotent stem cells in self-assembled collagen-hyaluronic acid-alginate microgel scaffolds with grafted GRGDSP/Ln5-P4
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Neuronal production from induced pluripotent stem cells in self-assembled collagen-hyaluronic acid-alginate microgel scaffolds with grafted GRGDSP/Ln5-P4

机译:来自诱导多能干细胞的神经元生产在自组装胶原透明质酸酸 - 藻酸盐微凝胶支架中,具有接枝GRGDSP / LN5-P4

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Abstract Self-assembled microgel functionalized with peptides was developed and applied to regenerate neurons from induced pluripotent stem cells (iPSCs). Collagen (COL), hyaluronic acid (HA), and alginate (ALG) were modified with methacrylic anhydride (MA), photocrosslinked for patterned particles, grafted with GRGDSP and Ln5-P4, and self-assembled to integrate the microgel into three-dimensional scaffolds. Physicochemical assessments revealed that the ternary microgel scaffolds had an optimal chemical composition at COLMA:HAMA:ALGMA=1:2:1. In fabricating cell-laden constructs, modified GRGDSP/Ln5-P4 in linear self-assembled scaffolds could significantly improve the entrapment efficiency and viability of iPSCs. In addition, GRGDSP/Ln5-P4 in the microgel constructs triggered the differentiation of iPSCs toward neurons, since the percentage of neurite-like cells could be higher than 98% after induction of nerve growth factor. Self-assembled microgel comprising COLMA, HAMA, ALGMA, and GRGDSP/Ln5-P4 may be promising in producing mature neural lineage from iPSCs, to provide better treatment for damaged nervous tissue. Highlights
机译:<![cdata [ 抽象 通过肽官能化的自组装微凝胶被开发并应用于来自诱导多能干细胞(IPSC)的再生神经元。用甲基丙烯酸酐(MA)改性胶原蛋白(COL),透明质酸(HA)和藻酸盐(ALG),用于图案化颗粒的光源,用GRGDSP和LN5-P4接枝,并自组装以将微凝胶整合到三维中脚手架。物理化学评估揭示了三元微凝胶支架在科尔玛具有最佳的化学成分:Hama:藻类 = 1:2:1。在制造电池升起的构建体中,线性自组装支架中的改性GRGDSP / LN5-P4可以显着提高IPSC的夹带效率和活力。此外,微凝胶构建体中的GRGDSP / LN5-P4引发了IPSCS对神经元的分化,因为神经生长因子诱导后神经沸石状细胞的百分比可以高于98%。包括肠球,哈马,藻类和GRGDSP / LN5-P4的自组装微凝胶可能具有从IPSC生产成熟的神经谱系,为受损神经组织提供更好的处理。 突出显示 < CE:Abstract-Sec ID =“AS0010”View =“全部”>

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