Commercial dishes with gelatin-free microstructured inserts for elongated stem cell self-renewal and pluripotency
Qian Ban, Wenqiao Hui, Quanchao Duan, Wenfei Liu, Meng Zhang, Xiaofeng Li, Hanyue Kang, Zhenni Shi, Yan Zhang, Jinbin Hou, Xiuzhen Xu, Shoudong Ye, Baowei Zhang, Xiaobin Xu
Journal:iScience
IF:5.8
DOI:10.1016/j.isci.2023.106446
PMID:
Published:2023-03-17
research field:生物医学工程干细胞生物学组织工程细胞工程
Abstract
Here, we report the scalable fabrication of 2i-functionalized micro-pyramid-array (μPyA/+2i) inserts for use in commercial multi-well plates, as the alternative cultivation platform for maintaining long-term self-renewal and pluripotency of multiple mESCs and mouse induced pluripotent stem cells. Relevant evidence including cell morphology characterization increased alkaline phosphatase activity, high expression of mESC self-renewal markers, decreased levels of differentiation-associated markers, and high proportion of self-renewal marker cells are provided. Further studies demonstrated that μPyA/+2i could cause a higher cell density in mESC colony, and induce gene expression changes. Subsequent studies showed that μPyA/+2i can influence the cytoskeleton and promote cell adhesion through Cldn-7 upregulation. In summary, these μPyA/+2i inserts offer flexible and gelatin-free micro-envriomnets to maintain long-term self-renewal and pluripotency of mESCs. Enabled by the microstructured inserst, the facile stem cell manipulation and transfer among culture dishes will broaden stem cells both in routine and translational applications.
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