He Fumei, Cao Jinxiu, Qi Junyang, Liu Zeqi, Liu Gan, Deng Wenbin
School of Pharmaceutical Sciences (Shenzhen), Sun Yat-sen University, Shenzhen, China.
Front Bioeng Biotechnol. 2021 Sep 30;9:721581. doi: 10.3389/fbioe.2021.721581. eCollection 2021.
Transplanting stem cells with the abilities of self-renewal and differentiation is one of the most effective ways to treat many diseases. In order to optimize the therapeutic effect of stem cell transplantation, it is necessary to intervene in stem cell differentiation. Inorganic nanomaterials (NMs), due to their unique physical and chemical properties, can affect the adhesion, migration, proliferation and differentiation of stem cells. In addition, inorganic NMs have huge specific surface area and modifiability that can be used as vectors to transport plasmids, proteins or small molecules to further interfere with the fate of stem cells. In this mini review, we summarized the recent advances of common inorganic NMs in regulating stem cells differentiation, and the effects of the stiffness, size and shape of inorganic NMs on stem cell behavior were discussed. In addition, we further analyzed the existing obstacles and corresponding perspectives of the application of inorganic NMs in the field of stem cells.
移植具有自我更新和分化能力的干细胞是治疗多种疾病最有效的方法之一。为了优化干细胞移植的治疗效果,有必要对干细胞分化进行干预。无机纳米材料(NMs)由于其独特的物理和化学性质,能够影响干细胞的黏附、迁移、增殖和分化。此外,无机纳米材料具有巨大的比表面积和可修饰性,可用作载体来运输质粒、蛋白质或小分子,从而进一步干扰干细胞的命运。在这篇小型综述中,我们总结了常见无机纳米材料在调节干细胞分化方面的最新进展,并讨论了无机纳米材料的硬度、大小和形状对干细胞行为的影响。此外,我们还进一步分析了无机纳米材料在干细胞领域应用中存在的障碍及相应的前景。