A carbapenem-resistant Acinetobacter baumannii outbreak associated with a polymyxin shortage during the COVID pandemic: an in vitro and biofilm analysis of synergy between meropenem, gentamicin and sulbactam

Author:

Chaiben Viviane1,Yamada Carolina Hikari12ORCID,Telles João Paulo123,de Andrade Ana Paula1,Arend Lavinia Nery Villa Stangler1,Ribeiro Victoria Stadler Tasca1,Dantas Leticia Ramos1,Suss Paula Hansen1,Tuon Felipe Francisco1ORCID

Affiliation:

1. Laboratory of Emerging Infectious Diseases, Pontifícia Universidade Católica do Paraná , Curitiba - PR, Brazil

2. Hospital Universitário Evangélico Mackenzie , Curitiba - PR, Brazil

3. AC Camargo Cancer Center, Department of Infectious Diseases , São Paulo - SP, Brazil

Abstract

Abstract Background During the COVID-19 pandemic, the burden of nosocomial infections caused by MDR pathogens has caused a shortage of polymyxins. Thus, we evaluated the in vitro synergism and antibiofilm activity of antimicrobial combinations and propose a test kit for synergism against carbapenem-resistant Acinetobacter baumannii (CRAB). Methods Fifty-six CRAB isolates were tested for synergy between meropenem, gentamicin and ampicillin/sulbactam. MICs were determined by broth microdilution. Synergism was tested using chequerboard analysis, followed by a time–kill curve. Additionally, minimum biofilm eradication concentration was determined and the antibiofilm activity of the combinations was evaluated by MTT assay and biomass reduction. A test kit was developed for routine laboratory testing to detect synergism. Results All CRAB isolates were resistant to gentamicin and ampicillin/sulbactam. Chequerboard synergism occurred against 75% of the isolates. Meropenem + ampicillin/sulbactam was the most frequent combination with synergism (69%), followed by ampicillin/sulbactam + gentamicin (64%) and meropenem + gentamicin (51%). All combinations presented only bacteriostatic activity and no bactericidal or antibiofilm effects. The routine laboratory test showed 100% accuracy compared with other in vitro assays. Conclusions Our study demonstrates the potential role of antibiotic combinations against planktonic bacteria. In vitro synergism is possible and can be an alternative treatment for patients with CRAB infection during a polymyxin shortage.

Publisher

Oxford University Press (OUP)

Subject

Infectious Diseases,Pharmacology (medical),Pharmacology,Microbiology (medical)

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