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Emergent Stratification in Solid Tumors Selects for Reduced Cohesion of Tumor Cells: A Multi-Cell Virtual-Tissue Model of Tumor Evolution Using CompuCell3D

机译:实体肿瘤中的新兴分层选择可降低肿瘤细胞的凝聚力:使用CompuCell3D的肿瘤进化的多细胞虚拟组织模型

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摘要

Tumor cells and structure both evolve due to heritable variation of cell behaviors and selection over periods of weeks to years (somatic evolution). Micro-environmental factors exert selection pressures on tumor-cell behaviors, which influence both the rate and direction of evolution of specific behaviors, especially the development of tumor-cell aggression and resistance to chemotherapies. In this paper, we present, step-by-step, the development of a multi-cell, virtual-tissue model of tumor somatic evolution, simulated using the open-source CompuCell3D modeling environment. Our model includes essential cell behaviors, microenvironmental components and their interactions. Our model provides a platform for exploring selection pressures leading to the evolution of tumor-cell aggression, showing that emergent stratification into regions with different cell survival rates drives the evolution of less cohesive cells with lower levels of cadherins and higher levels of integrins. Such reduced cohesivity is a key hallmark in the progression of many types of solid tumors.
机译:肿瘤细胞和结构均由于细胞行为的遗传变化和在数周至数年的时间内选择(体细胞进化)而进化。微环境因素对肿瘤细胞的行为施加选择压力,从而影响特定行为演化的速度和方向,特别是肿瘤细胞的侵袭性和对化学疗法的抵抗力。在本文中,我们将分步介绍使用开源CompuCell3D建模环境模拟的肿瘤体细胞进化的多细胞虚拟组织模型的开发。我们的模型包括基本的细胞行为,微环境成分及其相互作用。我们的模型提供了一个平台,可用于探索导致肿瘤细胞侵袭性演变的选择压力,表明出现分层至具有不同细胞存活率的区域会驱动具有较低黏附因子和较高整合素水平的凝聚力较低的细胞的进化。这种降低的内聚性是许多类型实体瘤进展中的关键标志。

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