Department of Mathematics, Dartmouth College Hanover, NH, USA.
Front Oncol. 2013 Mar 15;3:51. doi: 10.3389/fonc.2013.00051. eCollection 2013.
Solid tumors, whether in vitro or in vivo, are not an undifferentiated mass of cells. They include necrotic regions, regions of cells that are in a quiescent state (either slowly growing or not growing at all), and regions where cells proliferate rapidly. The decision of a cell to become quiescent or proliferating is thought to depend on both nutrient and oxygen availability and on the presence of tumor necrosis factor, a substance produced by necrotic cells that somehow inhibits the further growth of the tumor. Several different models have been suggested for the basic growth rate of in vitro tumor spheroids, and several different mechanisms are possible by which tumor necrosis factor might halt growth. The models predict the trajectory of growth for a virtual tumor, including proportions of the various components during its time evolution. In this paper we look at a range of hypotheses about basic rates tumor growth and the role of tumor necrotic factor, and determine what possible tumor growth patterns follow from each of twenty-five reasonable models. Proliferating, quiescent and necrotic cells are included, along with tumor necrosis factor as a potential inhibitor of growth in the proliferating pool and two way exchange between the quiescent and proliferating pools. We show that a range of observed qualitative properties of in vitro tumor spheroids at equilibrium are exhibited by one particular simple mathematical model, and discuss implications of this model for tumor growth.
实体肿瘤无论是在体外还是体内,都不是未分化的细胞团。它们包括坏死区域、处于静止状态(生长缓慢或完全不生长)的细胞区域以及细胞快速增殖的区域。细胞是处于静止状态还是增殖状态的决定因素,被认为既取决于营养和氧气的供应情况,也取决于肿瘤坏死因子的存在,肿瘤坏死因子是由坏死细胞产生的一种物质,它以某种方式抑制肿瘤的进一步生长。目前已经提出了几种不同的模型来解释体外肿瘤球体的基本生长率,并且肿瘤坏死因子可能会阻止肿瘤生长的机制也有几种可能。这些模型预测了虚拟肿瘤的生长轨迹,包括其在时间演化过程中各个组成部分的比例。在本文中,我们研究了关于肿瘤生长基本速率和肿瘤坏死因子作用的一系列假设,并确定了从二十五种合理模型中的每一种模型中得出的可能的肿瘤生长模式。我们将增殖、静止和坏死细胞包括在内,同时将肿瘤坏死因子作为增殖池生长的潜在抑制剂以及静止和增殖池之间的双向交换包括在内。我们表明,一个特定的简单数学模型表现出了体外肿瘤球体在平衡状态下的一系列观察到的定性特性,并讨论了该模型对肿瘤生长的影响。