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Satola, S. W.

Publications and source records attributed to Satola, S. W..

2 recordsLinked to original sources

Sulbactam-durlobactam susceptibility among cefiderocol heteroresistant Acinetobacter

The ATTACK clinical trial for treatment of carbapenem-resistant Acinetobacter baumannii-calcoaceticus complex (CRAB) isolates determined treatment with sulbactam-durlobactam to be efficacious and safe. However, other newly introduced {beta}-lactam antibiotics, including the novel cephalosporin cefiderocol, have been compromised upon clinical introduction by a type of antibiotic resistance called heteroresistance, in which only a small subpopulation of total cells exhibit phenotypic resistance. Therefore, we sought to test for sulbactam-durlobactam heteroresistance, as well as whether sulbactam-durlobactam was effective against cefiderocol heteroresistant CRAB isolates. We did not observe heteroresistance (or conventional resistance) to sulbactam-durlobactam among the 107 carbapenem-resistant Acinetobacter isolates tested, consistent with the efficacy of this new antibiotic in the ATTACK trial. Further, sulbactam-durlobactam was active against cefiderocol heteroresistant CRAB, highlighting that this antibiotic may be prioritized in relation to cefiderocol in treating CRAB infections.

microbiology↗

Heteroresistance via beta-lactamase gene amplification threatens the beta-lactam pipeline

It is unclear how bacteria rapidly adapt to resist novel drugs upon their introduction. Heteroresistance (HR) is a form of antibiotic resistance where a phenotypically unstable minority resistant subpopulation co-exists with a susceptible population. We observed HR to cefiderocol, a novel beta-lactam developed to resist beta-lactamases including extended-spectrum-beta-lactamases (ESBLs), among clinical isolates collected before its use. The resistant subpopulation in Enterobacter was a continuum; increasing gene copy number of an otherwise ineffective ESBL mediated increased resistance in decreasing numbers of cells. The factors that control the magnitude of amplification are unclear. We observed that ESBL activity controlled the level of amplification, thus increased copy number can compensate for poor enzymatic activity. A Klebsiella isolate from a clinical treatment failure also demonstrated amplification, highlighting the relevance of this phenomenon. These data provide insights into factors controlling dynamics of HR and how bacteria use phenotypic resistance to flexibly confront new antibiotic threats.

microbiology↗