We propose a mathematical model of Antimicrobial Resistance in the host to predict the failure of two antagonists of bacterial growth: the immune response and a single-antibiotic therapy. After characterising the initial bacterial load that cannot be cleared by the immune system alone, we define the success set of initial conditions for which an infection-free equilibrium can be reached by a viable single-antibiotic therapy, and we provide a rigorously defined inner approximation of the set. For initial conditions within the success set, we propose an optimal control framework to design single-drug therapies.
Failure and Success in Single-Drug Control of Antimicrobial Resistance / Anderson, A; Katz, Rami; Campana, Fc; Giordano, G. - In: IEEE CONTROL SYSTEMS LETTERS. - ISSN 2475-1456. - 2025, 9:(2025), pp. 991-996. [10.1109/LCSYS.2025.3576308]
Failure and Success in Single-Drug Control of Antimicrobial Resistance
Anderson, A;Katz, Rami;Campana, FC;Giordano, G
2025-01-01
Abstract
We propose a mathematical model of Antimicrobial Resistance in the host to predict the failure of two antagonists of bacterial growth: the immune response and a single-antibiotic therapy. After characterising the initial bacterial load that cannot be cleared by the immune system alone, we define the success set of initial conditions for which an infection-free equilibrium can be reached by a viable single-antibiotic therapy, and we provide a rigorously defined inner approximation of the set. For initial conditions within the success set, we propose an optimal control framework to design single-drug therapies.| File | Dimensione | Formato | |
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Descrizione: IEEE CONTROL SYSTEMS LETTERS, VOL. 9, 2025
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