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三维侵袭性实体瘤微环境增强恶性肿瘤的演变与形态学

Evolution and morphology of microenvironment-enhanced malignancy of three-dimensional invasive solid tumors.

作者信息

Jiao Yang, Torquato Salvatore

机构信息

Physical Science in Oncology Center, Princeton University, Princeton, New Jersey 08544, USA.

出版信息

Phys Rev E Stat Nonlin Soft Matter Phys. 2013 May;87(5):052707. doi: 10.1103/PhysRevE.87.052707. Epub 2013 May 13.

Abstract

The emergence of invasive and metastatic behavior in malignant tumors can often lead to fatal outcomes for patients. The collective malignant tumor behavior resulting from the complex tumor-host interactions and the interactions between the tumor cells is currently poorly understood. In this paper, we employ a cellular automaton (CA) model to investigate microenvironment-enhanced malignant behaviors and morphologies of in vitro avascular invasive solid tumors in three dimensions. Our CA model incorporates a variety of microscopic-scale tumor-host interactions, including the degradation of the extracellular matrix by the malignant cells, nutrient-driven cell migration, pressure buildup due to the deformation of the microenvironment by the growing tumor, and its effect on the local tumor-host interface stability. Moreover, the effects of cell-cell adhesion on tumor growth are explicitly taken into account. Specifically, we find that while strong cell-cell adhesion can suppress the invasive behavior of the tumors growing in soft microenvironments, cancer malignancy can be significantly enhanced by harsh microenvironmental conditions, such as exposure to high pressure levels. We infer from the simulation results a qualitative phase diagram that characterizes the expected malignant behavior of invasive solid tumors in terms of two competing malignancy effects: the rigidity of the microenvironment and cell-cell adhesion. This diagram exhibits phase transitions between noninvasive and invasive behaviors. We also discuss the implications of our results for the diagnosis, prognosis, and treatment of malignant tumors.

摘要

恶性肿瘤中侵袭性和转移性的出现常常会给患者带来致命后果。目前,对于由复杂的肿瘤-宿主相互作用以及肿瘤细胞之间相互作用所导致的集体恶性肿瘤行为,人们了解甚少。在本文中,我们采用细胞自动机(CA)模型来研究三维体外无血管侵袭性实体瘤的微环境增强恶性行为和形态。我们的CA模型纳入了多种微观尺度的肿瘤-宿主相互作用,包括恶性细胞对细胞外基质的降解、营养物质驱动的细胞迁移、肿瘤生长导致微环境变形引起的压力积累及其对局部肿瘤-宿主界面稳定性的影响。此外,还明确考虑了细胞间黏附对肿瘤生长的影响。具体而言,我们发现虽然强细胞间黏附可以抑制在软微环境中生长的肿瘤的侵袭行为,但恶劣的微环境条件,如暴露于高压水平,可显著增强癌症的恶性程度。我们从模拟结果推断出一个定性相图,该相图根据两种相互竞争的恶性效应——微环境的刚性和细胞间黏附,来表征侵袭性实体瘤预期的恶性行为。此图展示了非侵袭性和侵袭性行为之间的相变。我们还讨论了我们的结果对恶性肿瘤诊断、预后和治疗的意义。

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