The evolution of resistance to synergistic multi‐drug combinations is more complex than evolving resistance to each individual drug component

Author:

Lozano‐Huntelman Natalie Ann1ORCID,Bullivant Austin1,Chacon‐Barahona Jonathan1,Valencia Alondra1,Ida Nick1,Zhou April1,Kalhori Pooneh1,Bello Gladys1,Xue Carolyn1,Boyd Sada1,Kremer Colin1,Yeh Pamela J.12

Affiliation:

1. Department of Ecology and Evolutionary Biology University of California, Los Angeles Los Angeles California USA

2. Santa Fe Institute Santa Fe New Mexico USA

Abstract

AbstractMultidrug antibiotic resistance is an urgent public health concern. Multiple strategies have been suggested to alleviate this problem, including the use of antibiotic combinations and cyclic therapies. We examine how adaptation to (1) combinations of drugs affects resistance to individual drugs, and to (2) individual drugs alters responses to drug combinations. To evaluate this, we evolved multiple strains of drug resistant Staphylococcus epidermidis in the lab. We show that evolving resistance to four highly synergistic combinations does not result in cross‐resistance to all of their components. Likewise, prior resistance to one antibiotic in a combination does not guarantee survival when exposed to the combination. We also identify four 3‐step and four 2‐step treatments that inhibit bacterial growth and confer collateral sensitivity with each step, impeding the development of multidrug resistance. This study highlights the importance of considering higher‐order drug combinations in sequential therapies and how antibiotic interactions can influence the evolutionary trajectory of bacterial populations.

Funder

Hellman Foundation

National Institutes of Health

Publisher

Wiley

Subject

General Agricultural and Biological Sciences,Genetics,Ecology, Evolution, Behavior and Systematics

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