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Cell-Imprinted Substrates Act as an Artificial Niche for Skin Regeneration

机译:细胞印迹的底物充当皮肤再生的人造生态位

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Bioinspired materials can mimic the stem cell environment and modulate stem cell differentiation and proliferation. In this study, biomimetic microanoenvironments were fabricated by cell-imprinted substrates based on mature human keratinocyte morphological templates. The data obtained from atomic force microscopy and field emission scanning electron microscopy revealed that the keratinocyte-cell-imprinted poly(dimethylsiloxane) casting procedure could imitate the surface morphology of the plasma membrane, ranging from the nanoscale to the macroscale, which may provide the required topographical cell fingerprints to induce differentiation. Gene expression levels of the genes analyzed (involucrin, collagen type I, and keratin 10) together with protein expression data showed that human adipose-derived stem cells (ADSCs) seeded on these cell-imprinted substrates were driven to adopt the specific shape and characteristics of keratinocytes. The observed morphology of the ADSCs grown on the keratinocyte casts was noticeably different from that of stem cells cultivated on the stem-cell-imprinted substrates. Since the shape and geometry of the nucleus could potentially alter the gene expression, we used molecular dynamics to probe the effect of the confining geometry on the chain arrangement of simulated chromatin fibers in the nuclei. The results obtained suggested that induction of mature cell shapes onto stem cells can influence nucleus deformation of the stem cells followed by regulation of target genes. This might pave the way for a reliable, efficient, and cheap approach of controlling stem cell differentiation toward skin cells for wound healing applications.
机译:受生物启发的材料可以模拟干细胞环境并调节干细胞的分化和增殖。在这项研究中,仿生微/纳米环境是基于成熟的人角质形成细胞形态学模板,通过细胞印迹基质制备的。从原子力显微镜和场发射扫描电子显微镜获得的数据表明,角质形成细胞印迹聚(二甲基硅氧烷)浇铸程序可以模仿质膜的表面形态,从纳米尺度到宏观尺度,这可能提供所需的条件。地形细胞指纹诱导分化。分析的基因(整合素,I型胶原和角蛋白10)的基因表达水平以及蛋白质表达数据表明,接种在这些细胞印迹基质上的人类脂肪干细胞(ADSC)被驱动采用特定的形状和特征角质形成细胞。观察到的在角质形成细胞铸型上生长的ADSC形态与在干细胞印迹基质上培养的干细胞形态明显不同。由于细胞核的形状和几何形状可能会改变基因表达,因此我们使用分子动力学方法来研究限制几何形状对细胞核中染色质纤维的链排列的影响。获得的结果表明,成熟细胞形状对干细胞的诱导可以影响干细胞的核变形,进而影响靶基因的调控。这可能为为伤口愈合应用控制干细胞向皮肤细胞分化的可靠,有效和廉价方法铺平道路。

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