Title of article
Three-dimensional multispecies nonlinear tumor growth—II: Tumor invasion and angiogenesis
Author/Authors
Frieboes، نويسنده , , Hermann B. and Jin، نويسنده , , Terry Yuan-Fang and Chuang، نويسنده , , Yao-Li and Wise، نويسنده , , Steven M. and Lowengrub، نويسنده , , John S. and Cristini، نويسنده , , Vittorio، نويسنده ,
Issue Information
روزنامه با شماره پیاپی سال 2010
Pages
25
From page
1254
To page
1278
Abstract
We extend the diffuse interface model developed in Wise et al. (2008) to study nonlinear tumor growth in 3-D. Extensions include the tracking of multiple viable cell species populations through a continuum diffuse-interface method, onset and aging of discrete tumor vessels through angiogenesis, and incorporation of individual cell movement using a hybrid continuum-discrete approach. We investigate disease progression as a function of cellular-scale parameters such as proliferation and oxygen/nutrient uptake rates. We find that heterogeneity in the physiologically complex tumor microenvironment, caused by non-uniform distribution of oxygen, cell nutrients, and metabolites, as well as phenotypic changes affecting cellular-scale parameters, can be quantitatively linked to the tumor macro-scale as a mechanism that promotes morphological instability. This instability leads to invasion through tumor infiltration of surrounding healthy tissue. Models that employ a biologically founded, multiscale approach, as illustrated in this work, could help to quantitatively link the critical effect of heterogeneity in the tumor microenvironment with clinically observed tumor growth and invasion. Using patient tumor-specific parameter values, this may provide a predictive tool to characterize the complex in vivo tumor physiological characteristics and clinical response, and thus lead to improved treatment modalities and prognosis.
Keywords
Invasion , CANCER , metastasis , Computer simulation , Three dimensional model
Journal title
Journal of Theoretical Biology
Serial Year
2010
Journal title
Journal of Theoretical Biology
Record number
1540198
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