4.2 Article

Insight into Molecular Epidemiology, Antimicrobial Resistance, and Virulence Genes of Extensively Drug-ResistantAcinetobacter baumanniiin Thailand

期刊

MICROBIAL DRUG RESISTANCE
卷 27, 期 3, 页码 350-359

出版社

MARY ANN LIEBERT, INC
DOI: 10.1089/mdr.2020.0064

关键词

extensively drug-resistantAcinetobacter baumannii; virulence gene; MLST; antibiotic resistance genes; plasmid; epidemiology

资金

  1. Thailand Research Fund [RSA5780015]
  2. Royal Golden Jubilee Ph.D. Program [PHD/0031/2558, PHD/0227/2560]
  3. Medical Research Council grant [MR/L015080/1]
  4. MRC [MR/L015080/1] Funding Source: UKRI

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The study conducted a detailed analysis and identification of XDR-AB isolates from four tertiary hospitals in Thailand, revealing the presence of multiple beta-lactamase and virulence genes, diverse plasmid types, a variety of multilocus sequence types, and the novel ST types showing characteristics of international clone II.
Extensively drug-resistantAcinetobacter baumannii(XDR-AB) is a major threat to public health worldwide. A retrospective study for 27 XDR-AB isolates from four tertiary hospitals in Thailand was conducted. Beta-lactamase and virulence genes were characterized by PCR. Thebla(ADC),bla(OXA-51), andbla(OXA-23)were detected in all isolates, whereasbla(PER-1)andbla(NDM-1)genes were present in 7.4% and 3.7% of isolates. All isolates had virulence genes, including genes in iron acquisition system, biofilm formation and secretion systems. The plasmids in XDR-AB belonged to GR2 (100%), GR6 (40.7%), and GR1 (7.4%). Multilocus sequence typing sequence types (STs) were further investigated. The data demonstrated that XDR-AB isolates had nine STs: ST195 (n = 4), ST208 (n = 4), ST368 (n = 1), ST451 (n = 5), ST457 (n = 2), ST1947 (n = 1), ST1166 (n = 7), including two novel STs namely ST1682 (n = 2) and ST1684 (n = 1). We observed that the majority ST1166 (25.9%) was associated with the prevalence of GR2 and GR6 plasmids andtraUvirulence gene. Genome-based single nucleotide polymorphism phylogenetic analysis of the isolates with two novel ST types indicated that the two isolates belonged to the international clone II (IC2) within the same cluster. In conclusion, our data showed the dissemination of XDR-AB isolates harbored virulence genes and antibiotic resistance genes among four hospitals in Thailand. The results highlighted the difficulty posed for the empirical treatment of the patients with theA. baumanniiinfection.

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