2019
DOI: 10.1200/cci.18.00078
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The Immune Checkpoint Kick Start: Optimization of Neoadjuvant Combination Therapy Using Game Theory

Abstract: Purpose In an upcoming clinical trial at the Moffitt Cancer Center for women with stage 2/3 estrogen receptor–positive breast cancer, treatment with an aromatase inhibitor and a PD-L1 checkpoint inhibitor combination will be investigated to lower a preoperative endocrine prognostic index (PEPI) that correlates with relapse-free survival. PEPI is fundamentally a static index, measured at the end of neoadjuvant therapy before surgery. We have developed a mathematical model of the essential components of the PEPI… Show more

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Cited by 28 publications
(20 citation statements)
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“…This is an evolutionary model that enlightens the growth of various strategies used by different population groups. In [31] various strategies have been used to examine frequencydependent interactions of cancer cells. This model works on the assumption that the population's size is infinite, pairs of strategies are chosen randomly from population and time allocation is infinite.…”
Section: ) Replicator Dynamicsmentioning
confidence: 99%
“…This is an evolutionary model that enlightens the growth of various strategies used by different population groups. In [31] various strategies have been used to examine frequencydependent interactions of cancer cells. This model works on the assumption that the population's size is infinite, pairs of strategies are chosen randomly from population and time allocation is infinite.…”
Section: ) Replicator Dynamicsmentioning
confidence: 99%
“…Using a mathematical modeling approach known as game theory, West et al 13 investigate potential strategies to optimize neoadjuvant combination therapies that include checkpoint inhibitors. They examined a clinical trial design that combines an aromatase inhibitor and a checkpoint inhibitor to treat women with stage 2 or 3 estrogen receptor–positive breast cancer.…”
Section: The Immune System and Immunotherapiesmentioning
confidence: 99%
“…Evolutionary game theory is a modeling technique that is ideal to study complex competitive cellular interactions. Many such games have been used to model the interactions between tumor cells and the cells in their microenvironment [36][37][38][39][40][41] , evolving tumor cell strategies during tumor progression 42,43 and treatment dynamics [44][45][46] . We now introduce and analyze an EGT model based on the replicator system 47 and extend the same payoff table to a spatial model to show the emergence of spatially-dependent mechanisms of immune escape and invasion.…”
Section: Evolution Dynamics Of Immune Responsementioning
confidence: 99%