In-host evolution of Staphylococcus epidermidis in a pacemaker-associated endocarditis resulting in increased antibiotic tolerance

Treatment failure in biofilm-associated bacterial infections is an important healthcare issue. In vitro studies and mouse models suggest that bacteria enter a slow-growing/non-growing state that results in transient tolerance to antibiotics in the absence of a specific resistance mechanism. However,...

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Veröffentlicht in:Nature communications 2019-03, Vol.10 (1), p.1149-14, Article 1149
Hauptverfasser: Dengler Haunreiter, Vanina, Boumasmoud, Mathilde, Häffner, Nicola, Wipfli, Dennis, Leimer, Nadja, Rachmühl, Carole, Kühnert, Denise, Achermann, Yvonne, Zbinden, Reinhard, Benussi, Stefano, Vulin, Clement, Zinkernagel, Annelies S.
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Sprache:eng
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Zusammenfassung:Treatment failure in biofilm-associated bacterial infections is an important healthcare issue. In vitro studies and mouse models suggest that bacteria enter a slow-growing/non-growing state that results in transient tolerance to antibiotics in the absence of a specific resistance mechanism. However, little clinical confirmation of antibiotic tolerant bacteria in patients exists. In this study we investigate a Staphylococcus epidermidis pacemaker-associated endocarditis, in a patient who developed a break-through bacteremia despite taking antibiotics to which the S. epidermidis isolate is fully susceptible in vitro. Characterization of the clinical S. epidermidis isolates reveals in-host evolution over the 16-week infection period, resulting in increased antibiotic tolerance of the entire population due to a prolonged lag time until growth resumption and a reduced growth rate. Furthermore, we observe adaptation towards an increased biofilm formation capacity and genetic diversification of the S. epidermidis isolates within the patient. Staphylococcus epidermidis is a frequent cause of medical implant-associated biofilm infections. Here, studying a patient with pacemaker-associated endocarditis, the authors report in-host evolution of S. epidermidis leading to phenotypes exhibiting increased biofilm formation and antibiotic tolerance.
ISSN:2041-1723
2041-1723
DOI:10.1038/s41467-019-09053-9