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Controlling matrix stiffness and topography for the study of tumor cell migration

机译:控制基质刚度和形貌以研究肿瘤细胞迁移

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摘要

Cellular studies have long been performed on the bench top, within Petri dishes and flasks that expose cells to surroundings that differ greatly from their native environment. The complexity of a human tissue is such that to truly replicate a cell’s physiologic microenvironment in vitro is currently impossible. It is nevertheless important to determine how various factors of the microenvironment interact to drive cell behavior, particularly with regard to disease states, such as cancer. Here we focus on two key elements of the cellular microenvironment, matrix stiffness and architecture, in the context of tumor cell behavior. We discuss recent work focusing on the effects of these individual properties on cancer cell migration and describe one technique developed by our lab that could be applied to dissect the effects of specific structural and mechanical cues, and which may lead to useful insights into the potentially synergistic effects of these properties on tumor cell behavior.
机译:长期以来,一直在工作台上的培养皿和烧瓶中进行细胞研究,使细胞暴露于与其天然环境大不相同的环境中。人体组织的复杂性使得目前无法在体外真正复制细胞的生理微环境。然而,重要的是确定微环境的各种因素如何相互作用以驱动细胞行为,尤其是在疾病状态(例如癌症)方面。在这里,我们集中在肿瘤细胞行为的背景下,细胞微环境的两个关键要素,基质刚度和结构。我们讨论了专注于这些个体特性对癌细胞迁移的影响的最新工作,并描述了我们实验室开发的一种技术,该技术可用于剖析特定结构和机械线索的影响,并且可能导致对潜在协同作用的有用见解这些特性对肿瘤细胞行为的影响。

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