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Antibiotic collateral sensitivity is contingent on the repeatability of evolution.

Daniel Nichol | Joseph Rutter | Christopher Bryant | Andrea M Hujer | Sai Lek | Mark D Adams | Peter Jeavons | Alexander R A Anderson | Robert A Bonomo | Jacob G Scott
Nature communications | 2019

Antibiotic resistance represents a growing health crisis that necessitates the immediate discovery of novel treatment strategies. One such strategy is the identification of collateral sensitivities, wherein evolution under a first drug induces susceptibility to a second. Here, we report that sequential drug regimens derived from in vitro evolution experiments may have overstated therapeutic benefit, predicting a collaterally sensitive response where cross-resistance ultimately occurs. We quantify the likelihood of this phenomenon by use of a mathematical model parametrised with combinatorially complete fitness landscapes for Escherichia coli. Through experimental evolution we then verify that a second drug can indeed stochastically exhibit either increased susceptibility or increased resistance when following a first. Genetic divergence is confirmed as the driver of this differential response through targeted and whole genome sequencing. Taken together, these results highlight that the success of evolutionarily-informed therapies is predicated on a rigorous probabilistic understanding of the contingencies that arise during the evolution of drug resistance.

Pubmed ID: 30659188

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Associated grants

  • Agency: NIAID NIH HHS, United States
    Id: R01 AI100560
  • Agency: NCI NIH HHS, United States
    Id: K12 CA076917
  • Agency: NCI NIH HHS, United States
    Id: U54 CA193489
  • Agency: NIAID NIH HHS, United States
    Id: R01 AI072219
  • Agency: NIAID NIH HHS, United States
    Id: R01 AI063517
  • Agency: BLRD VA, United States
    Id: I01 BX001974

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