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首页> 外文期刊>Science Advances >Role of mechanical cues and hypoxia on the growth of tumor cells in strong and weak confinement: A dual in vitro–in silico approach
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Role of mechanical cues and hypoxia on the growth of tumor cells in strong and weak confinement: A dual in vitro–in silico approach

机译:机械提示和缺氧对肿瘤细胞生长的作用强,弱监禁:双体外硅化

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摘要

Characterization of tumor growth dynamics is of major importance for cancer understanding. By contrast with phenomenological approaches, mechanistic modeling can facilitate disclosing underlying tumor mechanisms and lead to identification of physical factors affecting proliferation and invasive behavior. Current mathematical models are often formulated at the tissue or organ scale with the scope of a direct clinical usefulness. Consequently, these approaches remain empirical and do not allow gaining insight into the tumor properties at the scale of small cell aggregates. Here, experimental and numerical studies of the dynamics of tumor aggregates are performed to propose a physics-based mathematical model as a general framework to investigate tumor microenvironment. The quantitative data extracted from the cellular capsule technology microfluidic experiments allow a thorough quantitative comparison with in silico experiments. This dual approach demonstrates the relative impact of oxygen and external mechanical forces during the time course of tumor model progression.
机译:肿瘤生长动力学的表征对于癌症的理解具有重要意义。相反,与现象学方法相比,机械建模可以促进潜在的肿瘤机制,并导致鉴定影响增殖和侵入行为的物理因素。目前的数学模型通常在组织或器官尺度上配制,具有直接临床用途的范围。因此,这些方法仍然是经验的,并且不允许在小细胞聚集体的规模上获得肿瘤性质的洞察。这里,进行肿瘤聚集体动力学的实验和数值研究,以提出一种基于物理学的数学模型,作为调查肿瘤微环境的一般框架。从细胞胶囊技术微流体实验中提取的定量数据允许与硅实验进行彻底的定量比较。这种双向方法证明了肿瘤模型进展时间过程中氧气和外部机械力的相对影响。

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