The Role of Uniform Meropenem Usage in Clone Replacement
Overview
Authors
Affiliations
The dominant carbapenem resistant harboring carbapenemase was replaced by carriers in a Hungarian tertiary-care center with high meropenem but relatively low imipenem use. We hypothesized that alterations in antibiotic consumption may have contributed to this switch. Our workgroup previous study examined the relation between resistance spiral and the antibiotic consumption, and the results suggest that the antibiotic usage provoked the increasing resistance in case of We aimed at measuring the activity of imipenem and meropenem to compare the selection pressure exerted by the different carbapenems in time-kill assays. Strain replacement was confirmed by whole genome sequencing, core-genome multilocus sequence typing (cgMLST), and resistome analysis. Based on results of the time-kill assays, we found a significant difference between two different sequence-types (STs) in case of meropenem, but not in case of imipenem susceptibility. The newly emerged ST636 and ST492 had increased resistance level against meropenem compared to the previously dominant ST2 and ST49. On the other hand, the imipenem and colistin resistance profiles were similar. These results suggest, that the uniform meropenem usage may have contributed to strain replacement in our setting.
Genomic Investigation and Comparative Analysis of European High-Risk Clone of ST2.
Hummel D, Juhasz J, Kamotsay K, Kristof K, Xavier B, Koster S Microorganisms. 2025; 12(12.
PMID: 39770677 PMC: 11728346. DOI: 10.3390/microorganisms12122474.
Balazs B, Toth Z, Nagy J, Majoros L, Toth A, Kardos G Pathogens. 2022; 11(9).
PMID: 36145435 PMC: 9506371. DOI: 10.3390/pathogens11091003.
Evolution of the Gram-Negative Antibiotic Resistance Spiral over Time: A Time-Series Analysis.
Toth H, Buchholcz G, Fesus A, Balazs B, Nagy J, Majoros L Antibiotics (Basel). 2021; 10(6).
PMID: 34204497 PMC: 8234935. DOI: 10.3390/antibiotics10060734.