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Cell – extracellular matrix interaction in glioma growth.

机译:细胞 - 细胞外基质在胶质瘤生长中的相互作用。

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摘要

The study aims to investigate the role of viscoelastic interactions between cells and extracellular matrix (ECM) in avascular tumor growth. Computer simulations of glioma multicellular tumor spheroid (MTS) growth are being carried out for various conditions. The calculations are based on a continuous model, which simulates oxygen transport into MTS; transitions between three cell phenotypes, cell transport, conditioned by hydrostatic forces in cell–ECM composite system, cell motility and cell adhesion. Visco-elastic cell aggregation and elastic ECM scaffold represent two compressible constituents of the composite. Cell–ECM interactions form a Transition Layer on the spheroid surface, where mechanical characteristics of tumor undergo rapid transition. This layer facilitates tumor progression to a great extent. The study demonstrates strong effects of ECM stiffness, mechanical deformations of the matrix and cell–cell adhesion on tumor progression. The simulations show in particular that at certain, rather high degrees of matrix stiffness a formation of distant multicellular clusters takes place, while at further increase of ECM stiffness subtumors do not form. The model also illustrates to what extent mere mechanical properties of cell–ECM system may contribute into variations of glioma invasion scenarios.
机译:该研究旨在探讨粘弹性相互作用在细胞和细胞外基质(ECM)之间的作用血管肿瘤生长。在各种条件下进行胶质瘤多细胞肿瘤球体(MTS)生长的计算机模拟。计算基于连续模型,将氧气输送到MTS;三种细胞表型之间的过渡,细胞传输,通过细胞-ECM复合体系中的静压力调节,细胞运动性和细胞粘附。粘弹性电池聚集和弹性ECM支架代表两种复合材料的可压缩成分。细胞-ECM相互作用在球状面上形成过渡层,其中肿瘤的机械特性经历快速转变。该层有利于肿瘤进展在很大程度上。该研究表明了ECM刚度,基质的机械变形和细胞 - 细胞粘附对肿瘤进展的强烈影响。仿真尤其表明,在某些情况下,在某些相当高度的基质刚度发生时,发生远处的多细胞簇的形成,而ECM刚度亚管的进一步增加则不会形成。该模型还示出了细胞-ECM系统的机械性能在多大程度上可能有助于胶质瘤入侵情景的变化。

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