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Construction of nano-scale cellular environments by coating a multilayer nanofilm on the surface of human induced pluripotent stem cells

机译:纳米细胞环境的建设涂层表面多层nanofilm的人类诱导多能干细胞

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摘要

Interactions with peripheral environments, such as extracellular matrix (ECM) and other cells, and their balance play a crucial role in the maintenance of pluripotency and self-renewal of human pluripotent stem cells. In this study, we focused on a nano-sized artificial cellular environment that is directly attached to the cytoplasmic membrane as a facile method that can effect intercellular interactions at the single-cell level. We designed multilayered nanofilms that are self-assembled on the surface of human induced pluripotent stem cells (iPSCs), by repetitive adsorption of fibronectin and heparin or chondroitin sulfate. However, the surface modification process could also lead to the loss of cell-cell adhesion, which may result in apoptotic cell death. We investigated the proliferation and pluripotency of the iPSCs coated with the nanofilm in order to establish the suitable nanofilm structure and coating conditions. As a result, the cell viability reduced with the increase in the duration of the coating process, but the undifferentiated state and proliferation of the cells were maintained until 2 bilayers were coated. To suppress the dissociation-induced apoptosis, Y-27632, the Rho-associated kinase inhibitor (ROCKi), was added to the coating solution; this allowed the coating of up to 4 bilayers of the nanofilm onto the iPSCs. These results are expected to accelerate the pace of iPSC studies on 3-dimensional cultures and naive pluripotency, in which the regulation of cellular interactions plays a critical role.
机译:与周围环境的互动,例如细胞外基质(ECM)和其他细胞他们的平衡中发挥至关重要的作用维护的多能性和自我更新人类多能干细胞。集中在一个纳米级人造细胞直接连接到环境细胞质膜可以作为一个简单方法影响细胞间相互作用的单细胞水平。表面自组装的纳米薄膜人类诱导多能干细胞(万能)纤连蛋白和重复的吸附肝素和硫酸软骨素。表面改性过程也可能导致信息的损失粘连,可能的结果在凋亡细胞死亡。核扩散和万能干细胞的多能性涂层与nanofilm为了建立合适的nanofilm结构和涂层条件。的增加持续时间减少涂层的过程,但未分化状态和增殖的细胞直到2影响涂层。dissociation-induced凋亡,y - 27632Rho-associated激酶抑制剂(ROCKi)添加到涂料解决方案;涂层的4 nanofilm上的影响万能。加快iPSC研究三维文化和天真的多能性细胞间的相互作用的规定起着至关重要的作用。

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