Game theory in the death galaxy: interaction of cancer and stromal cells in tumour microenvironment

Author:

Wu Amy12,Liao David3,Tlsty Thea D.3,Sturm James C.12,Austin Robert H.14

Affiliation:

1. Princeton Institute for the Science and Technology of Materials (PRISM), Princeton, NJ 08544, USA

2. Department of Electrical Engineering, Princeton University, Princeton, NJ 08544, USA

3. Department of Pathology, University of California at San Francisco, CA 94143, USA

4. Department of Physics, Princeton University, Princeton, NJ 08544, USA

Abstract

Preventing relapse is the major challenge to effective therapy in cancer. Within the tumour, stromal (ST) cells play an important role in cancer progression and the emergence of drug resistance. During cancer treatment, the fitness of cancer cells can be enhanced by ST cells because their molecular signalling interaction delays the drug-induced apoptosis of cancer cells. On the other hand, competition among cancer and ST cells for space or resources should not be ignored. We explore the population dynamics of multiple myeloma (MM) versus bone marrow ST cells by using an experimental microecology that we call the death galaxy, with a stable drug gradient and connected microhabitats. Evolutionary game theory is a quantitative way to capture the frequency-dependent nature of interactive populations. Therefore, we use evolutionary game theory to model the populations in the death galaxy with the gradients of pay-offs and successfully predict the future densities of MM and ST cells. We discuss the possible clinical use of such analysis for predicting cancer progression.

Publisher

The Royal Society

Subject

Biomedical Engineering,Biomaterials,Biochemistry,Bioengineering,Biophysics,Biotechnology

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