神经干细胞
祖细胞
细胞生物学
诱导多能干细胞
化学
细胞分化
干细胞
前体细胞
细胞培养
神经细胞
移植
细胞
磁性纳米粒子
祖细胞
下调和上调
神经上皮细胞
谱系(遗传)
氧化铁纳米粒子
基质(化学分析)
神经球
纳米技术
纳米颗粒
生物
生物物理学
信号转导
细胞命运测定
石墨烯
作者
Cailing Zhang,Junbo Jiang,Guiyuan Cai,Xiangyu Liu,Haiyang Zhang,Guangqing Xu,Yuan‐Huan Ma,Yue Lan
摘要
Post-central nervous system injury, the endogenous repair and mobilization of neural stem cells are insufficient, necessitating the reliance on exogenous cell transplantation as the predominant repair and replacement strategy. The behavior and differentiation fate of induced pluripotent stem cells (iPSCs) are highly susceptible to external stimuli, including the cell culture matrix and physical electromagnetic signals. In this study, we innovatively utilize magnetic graphene oxide composite nanoparticles to regulate the proliferation and neural lineage differentiation of induced pluripotent stem cell-derived neural progenitor cells (iPSC-derived hNPCs). Our results reveal that a specific concentration of magnetic graphene oxide effectively maintains stemness properties, promotes cell proliferation, and preferentially directs differentiation toward neuronal lineages under induced differentiation conditions. Additionally, this treatment upregulated the expression of synaptic-related proteins while concurrently reducing the astrocytic differentiation ratio. These findings provide a novel materials-based strategy for optimizing hNPCs in vitro culture and directed differentiation systems.
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