神经干细胞
纳米纤维
材料科学
干细胞
细胞
纳米技术
压电
神经细胞
膜
细胞生长
细胞生物学
生物医学工程
化学
生物化学
生物
医学
复合材料
作者
Xiheng Lu,Chunhui Sun,Lu Chen,Zhichao Feng,Haoyang Gao,Shuang Hu,Mengwei Dong,Jingang Wang,Weijia Zhou,Na Ren,Hengxing Zhou,Hong Liu
出处
期刊:Small
[Wiley]
日期:2022-02-14
卷期号:18 (13)
被引量:31
标识
DOI:10.1002/smll.202107236
摘要
Abstract Neural stem cells (NSCs) therapy is promising for treating neurodegenerative disorders and neural injuries. However, the limited in vitro expansion, spontaneous differentiation, and decrease in stemness obstruct the acquisition of high quantities of NSCs, restricting the clinical application of cell‐based therapies and tissue engineering. This article reports a facile method of promoting NSCs expansion and maintaining stemness using wireless electrical stimulation triggered by piezoelectric nanomaterials. A nanofibrous membrane of poly L‐lactic acid (PLLA) is prepared by electrostatic spinning, and the favorable piezoelectric property of PLLA facilitates the freeing of electrons after transformation. These self‐powered electric signals generated by PLLA significantly enhance NSCs proliferation. Further, an undifferentiated cellular state is maintained in the NSCs cultured on the surfaces of PLLA nanofibers exposed to ultrasonic vibration. In addition, the neural differentiation potencies and functions of NSCs expanded by piezoelectric‐driven localized electricity are not attenuated. Moreover, cell stemness can be maintained by wireless electric stimulation. Taken together, the electronic signals mediated by PLLA nanofibers facilitate NSCs proliferation. This efficient and simple strategy can maintain the stemness of NSCs during proliferation, which is essential for their clinical application, and opens up opportunities for the mass production of NSCs for use in cell therapy.
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