Hetero-antagonism of avibactam and sulbactam with cefiderocol in carbapenem-resistant Acinetobacter spp.
Olivia WongVyanka MezcordChristina LopezGerman Matias TragliaFernando PasteranMarisel R TuttobeneAlejandra CorsoMarcelo E TolmaskyRobert A BonomoMaria Soledad RamirezPublished in: bioRxiv : the preprint server for biology (2024)
The emergence of Gram-negative bacteria resistant to multiple antibiotics, particularly carbapenem-resistant (CR) Acinetobacter strains, poses a significant threat globally. Despite efforts to develop new antimicrobial therapies, limited progress has been made, with only two drugs-cefiderocol and sulbactam-durlobactam-showing promise for CR- Acinetobacter infections. Cefiderocol, a siderophore cephalosporin, demonstrates promising efficacy in the treatment of Gram-negative infections. However, resistance to cefiderocol has been reported in A. baumannii . Combination therapies, such as cefiderocol with avibactam or sulbactam, show reduced MICs against cefiderocol-non-susceptible strains with in vivo efficacy, although the outcomes can be complex and species-specific. In the present work, the molecular characterization of spontaneous cefiderocol-resistant variants, a CRAB strain displaying antagonism with sulbactam and an A. lwoffii strain showing antagonism with avibactam, were studied. The results reveal intriguing insights into the underlying mechanisms, including mutations affecting efflux pumps, transcriptional regulators, and iron homeostasis genes. Moreover, gene expression analysis reveals significant alterations in outer membrane proteins, iron homeostasis, and β-lactamases, suggesting adaptive responses to selective pressure. Understanding these mechanisms is crucial for optimizing treatment strategies and preventing adverse clinical outcomes. This study highlights the importance of preemptively assessing drug synergies to navigate the challenges posed by antimicrobial resistance in CR- Acinetobacter infections.
Keyphrases
- gram negative
- acinetobacter baumannii
- multidrug resistant
- drug resistant
- gene expression
- klebsiella pneumoniae
- antimicrobial resistance
- escherichia coli
- dna methylation
- pseudomonas aeruginosa
- genome wide
- transcription factor
- emergency department
- type diabetes
- machine learning
- weight loss
- big data
- cystic fibrosis
- heat shock
- iron deficiency
- artificial intelligence
- solid state