Emergent Behaviors from a Cellular Automaton Model for Invasive Tumor Growth in Heterogeneous Microenvironments

被引:69
作者
Jiao, Yang [1 ]
Torquato, Salvatore [1 ,2 ]
机构
[1] Princeton Univ, Phys Sci Oncol Ctr, Princeton Inst Sci & Technol Mat, Princeton, NJ 08544 USA
[2] Princeton Univ, Dept Chem & Phys, Princeton Ctr Theoret Sci, Program Appl & Computat Math, Princeton, NJ 08544 USA
关键词
MALIGNANT BRAIN-TUMORS; MATHEMATICAL-MODEL; SELF-ORGANIZATION; STEM-CELL; IN-VITRO; CANCER; EVOLUTION; DIFFUSION; PACKINGS; DYNAMICS;
D O I
10.1371/journal.pcbi.1002314
中图分类号
Q5 [生物化学];
学科分类号
071010 ; 081704 ;
摘要
Understanding tumor invasion and metastasis is of crucial importance for both fundamental cancer research and clinical practice. In vitro experiments have established that the invasive growth of malignant tumors is characterized by the dendritic invasive branches composed of chains of tumor cells emanating from the primary tumor mass. The preponderance of previous tumor simulations focused on non-invasive (or proliferative) growth. The formation of the invasive cell chains and their interactions with the primary tumor mass and host microenvironment are not well understood. Here, we present a novel cellular automaton (CA) model that enables one to efficiently simulate invasive tumor growth in a heterogeneous host microenvironment. By taking into account a variety of microscopic-scale tumor-host interactions, including the short-range mechanical interactions between tumor cells and tumor stroma, degradation of the extracellular matrix by the invasive cells and oxygen/nutrient gradient driven cell motions, our CA model predicts a rich spectrum of growth dynamics and emergent behaviors of invasive tumors. Besides robustly reproducing the salient features of dendritic invasive growth, such as least-resistance paths of cells and intrabranch homotype attraction, we also predict nontrivial coupling between the growth dynamics of the primary tumor mass and the invasive cells. In addition, we show that the properties of the host microenvironment can significantly affect tumor morphology and growth dynamics, emphasizing the importance of understanding the tumor-host interaction. The capability of our CA model suggests that sophisticated in silico tools could eventually be utilized in clinical situations to predict neoplastic progression and propose individualized optimal treatment strategies.
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页数:14
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  • [1] Tumor morphology and phenotypic evolution driven by selective pressure from the microenvironment
    Anderson, Alexander R. A.
    Weaver, Alissa M.
    Cummings, Peter T.
    Quaranta, Vito
    [J]. CELL, 2006, 127 (05) : 905 - 915
  • [2] Continuous and discrete mathematical models of tumor-induced angiogenesis
    Anderson, ARA
    Chaplain, MAJ
    [J]. BULLETIN OF MATHEMATICAL BIOLOGY, 1998, 60 (05) : 857 - 899
  • [3] A hybrid mathematical model of solid tumour invasion: the importance of cell adhesion
    Anderson, ARA
    [J]. MATHEMATICAL MEDICINE AND BIOLOGY-A JOURNAL OF THE IMA, 2005, 22 (02): : 163 - 186
  • [4] Using evolvable genetic cellular automata to model breast cancer
    Bankhead, Armand, III
    Heckendorn, Robert B.
    [J]. GENETIC PROGRAMMING AND EVOLVABLE MACHINES, 2007, 8 (04) : 381 - 393
  • [5] Modelling and mathematical problems related to tumor evolution and its interaction with the immune system
    Bellomo, N
    Preziosi, L
    [J]. MATHEMATICAL AND COMPUTER MODELLING, 2000, 32 (3-4) : 413 - 452
  • [6] BOYLE JO, 1993, CANCER RES, V53, P4477
  • [7] Dependence of stem cell fate in Arabidopsis an a feedback loop regulated by CLV3 activity
    Brand, U
    Fletcher, JC
    Hobe, M
    Meyerowitz, EM
    Simon, R
    [J]. SCIENCE, 2000, 289 (5479) : 617 - 619
  • [8] Focal adhesions, contractility, and signaling
    Burridge, K
    ChrzanowskaWodnicka, M
    [J]. ANNUAL REVIEW OF CELL AND DEVELOPMENTAL BIOLOGY, 1996, 12 : 463 - 518
  • [9] Dissecting cancer through mathematics: from the cell to the animal model
    Byrne, Helen M.
    [J]. NATURE REVIEWS CANCER, 2010, 10 (03) : 221 - 230
  • [10] A realistic brain tissue phantom for intraparenchymal infusion studies
    Chen, ZJ
    Gillies, GT
    Broaddus, WC
    Prabhu, SS
    Fillmore, H
    Mitchell, RM
    Corwin, FD
    Fatouros, PP
    [J]. JOURNAL OF NEUROSURGERY, 2004, 101 (02) : 314 - 322