Literature DB >> 33584574

Multidrug Resistant Klebsiella pneumoniae ST101 Clone Survival Chain From Inpatients to Hospital Effluent After Chlorine Treatment.

Laura Ioana Popa1,2,3, Irina Gheorghe1,2, Ilda Czobor Barbu1,2, Marius Surleac2,4, Simona Paraschiv4, Luminiţa Măruţescu1,2, Marcela Popa2, Graţiela Grădişteanu Pîrcălăbioru2, Daniela Talapan4, Mihai Niţă5, Anca Streinu-Cercel4,6, Adrian Streinu-Cercel4,6, Dan Oţelea4, Mariana Carmen Chifiriuc1,2.   

Abstract

In this paper we describe the transmission of a multi-drug resistant Klebsiella pneumoniae ST101 clone from hospital to wastewater and its persistence after chlorine treatment. Water samples from influents and effluents of the sewage tank of an infectious diseases hospital and clinical strains collected from the intra-hospital infections, during a period of 10 days prior to wastewater sampling were analyzed. Antibiotic resistant K. pneumoniae strains from wastewaters were recovered on selective media. Based on antibiotic susceptibility profiles and PCR analyses of antibiotic resistance (AR) genetic background, as well as whole-genome sequencing (Illumina MiSeq) and subsequent bioinformatic analyses, 11 ST101 K. pneumoniae strains isolated from hospital wastewater influent, wastewater effluent and clinical sector were identified as clonally related. The SNP and core genome analyses pointed out that five strains were found to be closely related (with ≤18 SNPs and identical cgMLST profile). The strains belonging to this clone harbored multiple acquired AR genes [bla CTX-M- 15, bla OXA- 48, bla OXA- 1, bla SHV- 106, bla TEM- 150, aac(3)-IIa, aac(6')-Ib-cr, oqxA10, oqxB17, fosA, catB3, dfrA14, tet(D)] and chromosomal mutations involved in AR (ΔmgrB, ΔompK35, amino acid substitutions in GyrA Ser83Tyr, Asp87Asn, ParC Ser80Tyr). Twenty-nine virulence genes involved in iron acquisition, biofilm and pili formation, adherence, and the type six secretion system - T6SS-III were identified. Our study proves the transmission of MDR K. pneumoniae from hospital to the hospital effluent and its persistence after the chlorine treatment, raising the risk of surface water contamination and further dissemination to different components of the trophic chain, including humans.
Copyright © 2021 Popa, Gheorghe, Barbu, Surleac, Paraschiv, Măruţescu, Popa, Pîrcălăbioru, Talapan, Niţă, Streinu-Cercel, Streinu-Cercel, Oţelea and Chifiriuc.

Entities:  

Keywords:  MDR Klebsiella pneumoniae; hospital sewage; hospital wastewater chlorine treatment; wastewater treatment plant; whole-genome sequencing

Year:  2021        PMID: 33584574      PMCID: PMC7873994          DOI: 10.3389/fmicb.2020.610296

Source DB:  PubMed          Journal:  Front Microbiol        ISSN: 1664-302X            Impact factor:   5.640


  62 in total

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