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Mathematical Modelling of a Brain Tumour Initiation and Early Development: A Coupled Model of Glioblastoma Growth Pre-Existing Vessel Co-Option Angiogenesis and Blood Perfusion

机译:脑肿瘤启动和早期发育的数学模型:胶质母细胞瘤生长预先存在的血管共选项血管生成和血液灌注的耦合模型。

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摘要

We propose a coupled mathematical modelling system to investigate glioblastoma growth in response to dynamic changes in chemical and haemodynamic microenvironments caused by pre-existing vessel co-option, remodelling, collapse and angiogenesis. A typical tree-like architecture network with different orders for vessel diameter is designed to model pre-existing vasculature in host tissue. The chemical substances including oxygen, vascular endothelial growth factor, extra-cellular matrix and matrix degradation enzymes are calculated based on the haemodynamic environment which is obtained by coupled modelling of intravascular blood flow with interstitial fluid flow. The haemodynamic changes, including vessel diameter and permeability, are introduced to reflect a series of pathological characteristics of abnormal tumour vessels including vessel dilation, leakage, angiogenesis, regression and collapse. Migrating cells are included as a new phenotype to describe the migration behaviour of malignant tumour cells. The simulation focuses on the avascular phase of tumour development and stops at an early phase of angiogenesis. The model is able to demonstrate the main features of glioblastoma growth in this phase such as the formation of pseudopalisades, cell migration along the host vessels, the pre-existing vasculature co-option, angiogenesis and remodelling. The model also enables us to examine the influence of initial conditions and local environment on the early phase of glioblastoma growth.
机译:我们提出了一个耦合的数学建模系统,以研究胶质母细胞瘤的生长,以响应由预先存在的血管选择,重塑,萎缩和血管生成引起的化学和血液动力学微环境的动态变化。设计具有不同血管直径阶数的典型树状架构网络,以模拟宿主组织中预先存在的脉管系统。基于血流动力学环境,计算化学物质,包括氧气,血管内皮生长因子,细胞外基质和基质降解酶,这是通过血管内血流与间质液流的耦合建模获得的。引入血液动力学变化,包括血管直径和通透性,以反映异常肿瘤血管的一系列病理特征,包括血管扩张,渗漏,血管生成,消退和塌陷。迁移细胞作为新的表型被包括在内,以描述恶性肿瘤细胞的迁移行为。模拟集中在肿瘤发展的无血管阶段,并在血管生成的早期阶段停止。该模型能够证明胶质母细胞瘤在这一阶段的生长的主要特征,例如假性栅状线的形成,沿宿主血管的细胞迁移,先前存在的脉管系统共选,血管生成和重塑。该模型还使我们能够检查初始条件和局部环境对胶质母细胞瘤生长早期的影响。

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  • 期刊名称 other
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  • 年(卷),期 -1(11),3
  • 年度 -1
  • 页码 e0150296
  • 总页数 28
  • 原文格式 PDF
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