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Mechanobiology of tumor invasion: Engineering meets oncology

机译:肿瘤入侵的力学学:工程符合肿瘤学

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摘要

The physical sciences and engineering have introduced novel perspectives into the study of cancer through model systems, tools, and metrics that enable integration of basic science observations with clinical data. These methods have contributed to the identification of several overarching mechanisms that drive processes during cancer progression including tumor growth, angiogenesis, and metastasis. During tumor cell invasion - the first clinically observable step of metastasis - cells demonstrate diverse and evolving physical phenotypes that cannot typically be defined by any single molecular mechanism, and mechanobiology has been used to study the physical cell behaviors that comprise the "invasive phenotype". In this review, we discuss the continually evolving pathological characterization and in vitro mechanobiological characterization of tumor invasion, with emphasis on emerging physical biology and mechanobiology strategies that have contributed to a more robust mechanistic understanding of tumor cell invasion. These physical approaches may ultimately help to better predict and identify tumor metastasis.
机译:通过模型系统,工具和指标,物理科学和工程介绍了对癌症研究的新颖观点,使得基本科学观察与临床数据能够整合。这些方法有助于鉴定若干总体机制,该机制驱动癌症进展过程中的过程,包括肿瘤生长,血管生成和转移。在肿瘤细胞侵袭期间 - 转移 - 细胞的第一个临床观察步骤证明了通常不能通过任何单一分子机制定义的多样化和不断发展的物理表型,并且用于研究包含“侵袭性表型”的物理细胞行为。在本综述中,我们探讨了肿瘤侵袭的不断发展的病理学特征和体外力学表征,重点是新兴的物理生物学和力学策略,这是对肿瘤细胞侵袭的更强大的机制理解。这些物理方法最终可能有助于更好地预测和识别肿瘤转移。

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