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Cell type-specific adaptation of cellular and nuclear volume in micro-engineered 3D environments

机译:在微工程3D环境中细胞和核体积对细胞类型的适应性

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Bio-functionalized three-dimensional (3D) structures fabricated by direct laser writing (DLW) are structurally and mechanically well-defined and ideal for systematically investigating the influence of three-dimensionality and substrate stiffness on cell behavior. Here, we show that different fibroblast-like and epithelial cell lines maintain normal proliferation rates and form functional cell-matrix contacts in DLW-fabricated 3D scaffolds of different mechanics and geometry. Furthermore, the molecular composition of cell-matrix contacts forming in these 3D micro-environments and under conventional 2D culture conditions is identical, based on the analysis of several marker proteins (paxillin, phosphopaxillin, phospho-focal adhesion kinase, vinculin, beta 1-integrin). However, fibroblast-like and epithelial cells differ markedly in the way they adapt their total cell and nuclear volumes in 3D environments. While fibroblast-like cell lines display significantly increased cell and nuclear volumes in 3D substrates compared to 2D substrates, epithelial cells retain similar cell and nuclear volumes in 2D and 3D environments. Despite differential cell volume regulation between fibroblasts and epithelial cells in 3D environments, the nucleus-to-cell (N/C) volume ratios remain constant for all cell types and culture conditions. Thus, changes in cell and nuclear volume during the transition from 2D to 3D environments are strongly cell type-dependent, but independent of scaffold stiffness, while cells maintain the N/C ratio regardless of culture conditions. (C) 2015 Elsevier Ltd. All rights reserved.
机译:通过直接激光写入(DLW)制造的生物功能化的三维(3D)结构在结构和机械上都得到了很好的定义,非常适合系统地研究三维和基底刚度对细胞行为的影响。在这里,我们显示了不同的成纤维细胞样和上皮细胞系维持正常的增殖速率,并在不同力学和几何形状的DLW制成的3D支架中形成功能性的细胞-基质接触。此外,根据对几种标记蛋白(paxillin,phosphopaxillin,phospho-focal粘附激酶,vinulin,beta 1-beta)的分析,在这些3D微环境中和常规2D培养条件下形成的细胞-基质接触的分子组成是相同的。整合素)。但是,成纤维细胞样和上皮细胞在3D环境中适应其总细胞和核体积的方式显着不同。与2D基质相比,虽然成纤维细胞样细胞系在3D基质中显示出显着增加的细胞和核体积,但上皮细胞在2D和3D环境中保留了相似的细胞和核体积。尽管在3D环境中成纤维细胞和上皮细胞之间的细胞体积调节存在差异,但对于所有细胞类型和培养条件,核与细胞(N / C)体积比仍保持恒定。因此,从2D环境过渡到3D环境期间,细胞和核体积的变化与细胞类型密切相关,但与支架刚度无关,而无论培养条件如何,细胞均保持N / C比。 (C)2015 Elsevier Ltd.保留所有权利。

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