In vitro activities of omadacycline, eravacycline, cefiderocol, apramycin, and comparator antibiotics against Acinetobacter baumannii causing bloodstream infections in Greece, 2020–2021: a multicenter study

Author:

Galani IreneORCID,Papoutsaki Vassiliki,Karaiskos IliasORCID,Moustakas Nikolaos,Galani Lamprini,Maraki SofiaORCID,Mavromanolaki Viktoria Eirini,Legga Olga,Fountoulis Kimon,Platsouka Evangelia D.,Giannopoulou Panagiota,Papadogeorgaki Helen,Damala Maria,Chinou Efrosini,Pasxali Aggeliki,Deliolanis Ioannis,Vagiakou Helen,Petinaki Efthymia,Chli Anastasia,Vagdatli Eleni,Kazila Polyzo,Papaioannou Vassiliki,Kontopoulou Konstantina,Ferke Atalia Noemi,Moraitou Eleni,Antoniadou AnastasiaORCID,Giamarellou HelenORCID

Abstract

AbstractResistance of Acinetobacter baumannii to multiple clinically important antimicrobials has increased to very high rates in Greece, rendering most of them obsolete. The aim of this study was to determine the molecular epidemiology and susceptibilities of A. baumannii isolates collected from different hospitals across Greece. Single-patient A. baumannii strains isolated from blood cultures (n = 271), from 19 hospitals, in a 6-month period (November 2020–April 2021) were subjected to minimum inhibitory concentration determination and molecular testing for carbapenemase, 16S rRNA methyltransferase and mcr gene detection and epidemiological evaluation. 98.9% of all isolates produced carbapenemase OXA-23. The vast majority (91.8%) of OXA-23 producers harbored the armA and were assigned mainly (94.3%) to sequence group G1, corresponding to IC II. Apramycin (EBL-1003) was the most active agent inhibiting 100% of the isolates at ≤16 mg/L, followed by cefiderocol which was active against at least 86% of them. Minocycline, colistin and ampicillin-sulbactam exhibited only sparse activity (S <19%), while eravacycline was 8- and 2-fold more active than minocycline and tigecycline respectively, by comparison of their MIC50/90 values. OXA-23-ArmA producing A. baumannii of international clone II appears to be the prevailing epidemiological type of this organism in Greece. Cefiderocol could provide a useful alternative for difficult to treat Gram-negative infections, while apramycin (EBL-1003), the structurally unique aminoglycoside currently in clinical development, may represent a highly promising agent against multi-drug resistant A. baumanni infections, due to its high susceptibility rates and low toxicity.

Funder

University of Athens

Publisher

Springer Science and Business Media LLC

Subject

Infectious Diseases,Microbiology (medical),General Medicine

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