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首页> 外文期刊>International journal for numerical methods in biomedical engineering >Tumor cell invasiveness in the initial stages of bladder cancer development - A computational study
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Tumor cell invasiveness in the initial stages of bladder cancer development - A computational study

机译:膀胱癌发展初始阶段的肿瘤细胞侵袭 - 计算研究

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摘要

Bladder cancer is one of the most common types of cancer, being the sixth more frequent in men, and one with higher recurrence rates and overall treatment costs. We introduce an agent-based computational model of the urothelium, adopting a Cellular Potts Model (CPM) approach to describe both a healthy urothelium and the development of bladder cancer. We focus on the identification of the conditions in which cancer cells cross, by mechanical means, the basement membrane and invade the bladder lamina propria. When within the urothelium the tumor grows in a very constrained environment. These tight conditions imply that the urothelium layer where the tumor initiates greatly determines tumor growth and invasiveness. Moreover, we demonstrate how specific mechanical properties of the cancer cells, as their stiffness or the adhesion to neighboring cells, heavily modulate the critical initial moments of tumor development. We propose that these characteristics should be considered as therapeutic targets to control tumor growth.
机译:膀胱癌是最常见的癌症类型之一,是男性中的第六次更频繁,复发率较高和整体治疗成本。我们介绍了尿液中基于代理的基于代理的计算模型,采用细胞盆栽模型(CPM)方法来描述健康的尿路升性和膀胱癌的发育。我们专注于鉴定癌细胞通过机械手段,基底膜和侵入膀胱薄膜丙的病症的鉴定。当尿溶质内时,肿瘤在一个非常受限制的环境中生长。这些紧张的条件意味着尿液层肿瘤引发的尿液层大大决定肿瘤生长和侵袭性。此外,我们证明了癌细胞的特定力学性能,作为对邻近细胞的刚度或粘附性,严重调节肿瘤发育的关键初始时刻。我们提出这些特征应被视为治疗肿瘤生长的治疗靶标。

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