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Cell motility and ECM proteolysis regulate tumor growth and tumor relapse by altering the fraction of cancer stem cells and their spatial scattering

机译:细胞运动性和ECM蛋白水解通过改变癌症干细胞的比例及其空间分散来调节肿瘤的生长和肿瘤的复发

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Tumors consist of multiple cell sub-populations including cancer stem cells (CSCs), transiently amplifying cells and terminally differentiated cells (TDCs), with the CSC fraction dictating the aggressiveness of the tumor and drug sensitivity. In epithelial cancers, tumor growth is influenced greatly by properties of the extracellular matrix (ECM), with cancer progression associated with an increase in ECM density. However, the extent to which increased ECM confinement induced by an increase in ECM density influences tumor growth and post treatment relapse dynamics remains incompletely understood. In this study, we use a cellular automata-based discrete modeling approach to study the collective influence of ECM density, cell motility and ECM proteolysis on tumor growth, tumor heterogeneity, and tumor relapse after drug treatment. We show that while increased confinement suppresses tumor growth and the spatial scattering of CSCs, this effect can be reversed when cells become more motile and proteolytically active. Our results further suggest that, in addition to the absolute number of CSCs, their spatial positioning also plays an important role in driving tumor growth. In a nutshell, our study suggests that, in confined environments, cell motility and ECM proteolysis are two key factors that regulate tumor growth and tumor relapse dynamics by altering the number and spatial distribution of CSCs.
机译:肿瘤由多个细胞亚群组成,包括癌症干细胞(CSC),瞬时扩增细胞和终末分化细胞(TDC),其中CSC分数决定了肿瘤的侵袭性和药物敏感性。在上皮癌中,肿瘤的生长受细胞外基质(ECM)的特性影响很大,癌症的进展与ECM密度的增加有关。但是,由ECM密度增加引起的ECM限制增加对肿瘤生长和治疗后复发动力学的影响程度尚不完全清楚。在这项研究中,我们使用基于细胞自动机的离散建模方法来研究ECM密度,细胞运动性和ECM蛋白水解对药物治疗后肿瘤生长,肿瘤异质性和肿瘤复发的共同影响。我们表明,虽然增加限制会抑制肿瘤的生长和CSCs的空间散布,但当细胞变得更具运动性和蛋白水解活性时,这种作用可以逆转。我们的结果进一步表明,除了CSC的绝对数量外,它们的空间定位在驱动肿瘤生长中也起着重要作用。简而言之,我们的研究表明,在密闭环境中,细胞运动性和ECM蛋白水解是通过改变CSC的数量和空间分布来调节肿瘤生长和肿瘤复发动态的两个关键因素。

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