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Kassabian, L.

Publications and source records attributed to Kassabian, L..

2 recordsLinked to original sources

Within-host succession from an OXA-48-like to an NDM-type carbapenemase in clonal ST361 Escherichia coli recovered from sequential urinary and bloodstream infection

Carbapenem-resistant Escherichia coli (CREc) recovered sequentially from one patient typically retain the same carbapenemase, with escalating resistance usually attributed to porin loss combined with pre-existing {beta}-lactamase expression. We used whole-genome sequencing to characterize a clonal pair of CREc isolates, CAEC145 and CAEC155, recovered 25 days apart from a hospitalized patient with sequential urinary and bloodstream infection. Both belonged to sequence type 361 (ST361), phylogroup A, serotype O-nontypeable:H30, and were separated by only 28 core-genome SNPs, confirming clonal relatedness. Despite this, the isolates differed sharply in carbapenemase content. CAEC145 carried blaOXA-1207, a recently described OXA-48-family variant, on a conjugative IncFII(pCoo)/ColKP3 plasmid, whereas CAEC155 lacked this determinant and instead harbored blaNDM-4 on a conserved IncX3 plasmid nearly identical to pJEG027, a member of a globally disseminated IncX3 lineage. This genotypic shift tracked a clear phenotypic transition. CAEC145 remained susceptible to imipenem and meropenem while resistant to ertapenem, whereas CAEC155 showed uniform high-level resistance to all three carbapenems and to ceftazidime-avibactam. Both isolates, however, remained susceptible to imipenem-relebactam, meropenem-vaborbactam, and cefiderocol. Comparative genomics linked the blaOXA-1207 element to a {Delta}Tn6361 transposon structure also found in the original German isolates where blaOXA-1207 was first described, and a 137-genome core-genome phylogeny placed both isolates within a globally disseminated ST361 lineage carrying multiple carbapenemase classes. These findings document, to our knowledge, the first within-host succession from an OXA-48-like to an NDM-type carbapenemase during a single sequential E. coli infection, driven by plasmid-level displacement rather than in-place gene evolution, with implications for genomic surveillance and antibiotic selection.

genomics↗

Emergence of a novel hypervirulent extensively drug-resistant ST383 Klebsiella pneumoniae lineage carrying ICEKp5 in Lebanon

Klebsiella pneumoniae ST383 has emerged as a high-risk clone, characterized by carbapenem resistance and increasing detection of hypervirulence determinants. We describe a novel ST383 lineage in Lebanon, defined by the acquisition of ICEKp5, which carries the yersiniabactin locus. Three ST383 K. pneumoniae clinical isolates (LBN_CAKp91, LBN_CTKp3, LBN_CTKp11) recovered from a Lebanese medical center were subjected to whole-genome sequencing. Comparative genomic analysis included regional ST383 strains and previously characterized Lebanese isolates. The study isolates formed a tight, monophyletic cluster (3-9 SNPs) that is phylogenetically distinct from the previously reported Lebanese ST383 clone (>164 SNPs) and grouped most closely to an Egyptian ST383 strain (59-65 SNPs). All three isolates carried ICEKp5 with yersiniabactin lineage ybt14, a feature absent in the earlier Lebanese ST383 clone. The isolates were the only ST383 strains to harbor the full spectrum of hypervirulence determinants to date, including capsule regulators (rmpA, rmpA2), aerobactin (iucABCD, iutA), yersiniabactin, and the hypervirulence biomarker peg-344. All isolates carried dual carbapenemases (blaOXA-48 and blaNDM-5) in addition to blaCTX-M-15 and blaCTX-M-14b. The genetic environments of blaOXA-48 and blaNDM-5 were highly conserved across geographically diverse ST383 isolates, indicating common plasmid origins. This study documents the emergence of a novel hypervirulent extensively drug-resistant (XDR) ST383 K. pneumoniae lineage in Lebanon. The acquisition of ICEKp5, combined with plasmid-borne hypervirulence and resistance determinants, reveals the concerning convergence of hypervirulence and XDR. Enhanced surveillance and infection control measures are urgently needed to monitor this emerging high-risk clone.

genomics↗