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Two-zone tumor tolerance can arise from a simple immunological feedforward motif that estimates tumor growth rates

Eduardo D. Sontag
doi: https://doi.org/10.1101/095455
Eduardo D. Sontag
Department of Mathematics and Center for Quantitative Biology Rutgers University
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Abstract

Since the early 1990s, many authors have independently suggested that self/nonself recognition by the immune system might be modulated by the rates of change of antigen challenges. This paper introduces an extremely simple and purely conceptual mathematical model that allows dynamic discrimination of immune challenges. The main component of the model is a motif which is ubiquitous in systems biology, the incoherent feedforward loop, which endows the system with the capability to estimate exponential growth exponents, a prediction which is consistent with experimental work showing that exponentially increasing antigen stimulation is a determinant of immune reactivity. Combined with a bistable system and a simple feedback repression mechanism, an interesting phenomenon emerges as a tumor growth rate increases: elimination, tolerance (tumor growth), again elimination, and finally a second zone of tolerance (tumor escape). This prediction from our model is analogous to the “two-zone tumor tolerance” phenomenon experimentally validated since the mid 1970s. Moreover, we provide a plausible biological instantiation of our circuit using combinations of regulatory and effector T cells.

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The copyright holder for this preprint is the author/funder, who has granted bioRxiv a license to display the preprint in perpetuity. All rights reserved. No reuse allowed without permission.
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Posted December 20, 2016.
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Two-zone tumor tolerance can arise from a simple immunological feedforward motif that estimates tumor growth rates
Eduardo D. Sontag
bioRxiv 095455; doi: https://doi.org/10.1101/095455
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Two-zone tumor tolerance can arise from a simple immunological feedforward motif that estimates tumor growth rates
Eduardo D. Sontag
bioRxiv 095455; doi: https://doi.org/10.1101/095455

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