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Control of human skin cell adhesion, proliferation and migration by microengineered substrata: transposition from solid phase to clinically relevant materials

机译:通过微工程基质控制人类皮肤细胞的粘附,增殖和迁移:从固相转移到临床相关材料

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The present quantitative time-lapse videomicroscopical study demonstrates that adhesion and migration of human keratinocytes, dermal fibroblasts and myofibroblasts in dissociated culture can be oriented and accelerated on solid-phase substrata comprising microtopography and micropatterned surface chemistry. Greater precision in the control of cell behaviour was attempted using microtopographic 'ratchet' devices intended only to allow unidirectional cell migration. The data suggests that that cell-specific guidance cues may preferentially influence subpopulations within mixed cultures, and that cell phenotype is influenced strongly by cell substrate interactions. Evidence reaffirming substratum-dependency for several parameters of behaviour in cultured cells was obtained by replacing rigid substrata with a compliant and derivatised polyvinyl alcohol hydrogel where the magnitude of the responses was equivalent.
机译:当前的定量延时视频显微镜研究表明,在分离培养物中,人角质形成细胞,真皮成纤维细胞和成肌纤维细胞的粘附和迁移可以在包含微形貌和微图案表面化学的固相基质上定向和加速。使用旨在仅允许单向细胞迁移的微形“棘轮”装置尝试了更高的细胞行为控制精度。数据表明,细胞特异性指导信号可能会优先影响混合培养物中的亚群,并且细胞表型会受到细胞底物相互作用的强烈影响。通过用反应强度相同的顺应性和衍生化聚乙烯醇水凝胶代替刚性基质,获得了对培养的细胞行为的几个参数的基质依赖性的证据。

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