Genome Sequencing Identifies Previously Unrecognized Klebsiella pneumoniae Outbreaks in Neonatal Intensive Care Units in the Philippines

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  • C.C. Carlos
  • M.A.L. Masim
  • M.L. Lagrada
  • J.M. Gayeta
  • P.K.V. Macaranas
  • S.B. Sia
  • M.A.M. Facun
  • J.F.C. Palarca
  • A.M. Olorosa
  • G.A.C. Cueno
  • M. Abrudan
  • K. Abudahab
  • S. Argimón
  • M. Kekre
  • J. Stelling
  • D.M. Aanensen
  • H. Harste
  • D. Muddyman
  • B. Taylor
  • N. Wheeler
  • P. Donado-Godoy
  • J.F. Bernal
  • A. Arevalo
  • M.F. Valencia
  • K.L. Ravikumar
  • G. Nagaraj
  • V. Shamanna
  • V. Govindan
  • A. Prabhu
  • D. Sravani
  • M.R. Shincy
  • K.N. Ravishankar
  • I.N. Okeke
  • A.O. Oaikhena
  • A.O. Afolayan
  • J.J. Ajiboye
  • A. Molloy
  • C. Vegvari
Background
Klebsiella pneumoniae is a critically important pathogen in the Philippines. Isolates are commonly resistant to at least 2 classes of antibiotics, yet mechanisms and spread of its resistance are not well studied.

Methods
A retrospective sequencing survey was performed on carbapenem-, extended spectrum beta-lactam-, and cephalosporin-resistant Klebsiella pneumoniae isolated at 20 antimicrobial resistance (AMR) surveillance sentinel sites from 2015 through 2017. We characterized 259 isolates using biochemical methods, antimicrobial susceptibility testing, and whole-genome sequencing (WGS). Known AMR mechanisms were identified. Potential outbreaks were investigated by detecting clusters from epidemiologic, phenotypic, and genome-derived data.

Results
Prevalent AMR mechanisms detected include blaCTX-M-15 (76.8%) and blaNDM-1 (37.5%). An epidemic IncFII(Yp) plasmid carrying blaNDM-1 was also detected in 46 isolates from 6 sentinel sites and 14 different sequence types (STs). This plasmid was also identified as the main vehicle of carbapenem resistance in 2 previously unrecognized local outbreaks of ST348 and ST283 at 2 different sentinel sites. A third local outbreak of ST397 was also identified but without the IncFII(Yp) plasmid. Isolates in each outbreak site showed identical STs and K- and O-loci, and similar resistance profiles and AMR genes. All outbreak isolates were collected from blood of children aged < 1 year.

Conclusion
WGS provided a better understanding of the epidemiology of multidrug resistant Klebsiella in the Philippines, which was not possible with only phenotypic and epidemiologic data. The identification of 3 previously unrecognized Klebsiella outbreaks highlights the utility of WGS in outbreak detection, as well as its importance in public health and in implementing infection control programs.
Original languageEnglish
JournalClinical Infectious Diseases
Volume73
Issue numberS4
Pages (from-to)S316–S324
ISSN1058-4838
DOIs
Publication statusPublished - 2021
Externally publishedYes

ID: 323555286