bioRxiv · 10.1101/740878
Modeling vaccine-induced immunotherapy: treatment scheduling and robustness with virtual mice cohorts
Abstract
Therapeutic vaccines are used to boost patients immune system activity by imposing signals that increase T cell proliferation or infiltration. A large population of cytotoxic T cells may then be able to reduce tumor growth. We developed here a mathematical model of vaccine-induced immunotherapy and used it to test the vaccine frequency and doses that can reduce tumor burden. Since tumors are heterogeneous, we examined if the proposed treatments are robust; i.e, are successful for a wide range of tumors. This was assessed by constructing virtual mice cohorts. Together, the optimal and most robust treatment protocol was determined through mathematical modeling.
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Bhatt, P., Kambara, M., Pilon-Thomas, S., Rejniak, K. A., Chamseddine, I. M.. 2019-08-21. Modeling vaccine-induced immunotherapy: treatment scheduling and robustness with virtual mice cohorts. https://doi.org/10.1101/740878
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