High prevalence of plasmid-mediated quinolone resistance determinants in commensal members of the Enterobacteriaceae in Ho Chi Minh City, Vietnam

Author:

Minh Vien Le Thi1,Baker Stephen21,Phuong Thao Le Thi1,Phuong Tu Le Thi1,Thu Thuy Cao1,Thu Nga Tran Thi1,Minh Hoang Nguyen Van31,Campbell James Iain21,Minh Yen Lam3,Trong Hieu Nguyen4,Vinh Chau Nguyen Van3,Farrar Jeremy21,Schultsz Constance521

Affiliation:

1. Oxford University Clinical Research Unit, Hospital for Tropical Diseases, Ho Chi Minh City, Vietnam

2. Nuffield Department of Clinical Medicine, John Radcliffe Hospital, University of Oxford, Oxford, UK

3. Hospital for Tropical Diseases, Ho Chi Minh City, Vietnam

4. Hung Vuong Hospital, Ho Chi Minh City, Vietnam

5. Center for Poverty-related Communicable Diseases (CPCD), Academic Medical Center, University of Amsterdam, Amsterdam, The Netherlands

Abstract

Antimicrobial-resistant pathogenic members of theEnterobacteriaceaeare a well-defined global problem. We hypothesized that one of the main reservoirs of dissemination of antimicrobial resistance genes in Vietnam is non-pathogenic intestinal flora, and sought to isolate antimicrobial-resistant organisms from hospitalized patients and non-hospitalized healthy individuals in Ho Chi Minh City. The results identified substantial faecal carriage of gentamicin-, ceftazidime- and nalidixic acid-resistant members of theEnterobacteriaceaein both hospitalized patients and non-hospitalized healthy individuals. A high prevalence of quinolone resistance determinants was identified, particularly theqnrSgene, in both community- and hospital-associated strains. Furthermore, the results demonstrated that a combination of quinolone resistance determinants can confer resistance to nalidixic acid and ciprofloxacin, even in the apparent absence of additional chromosomal resistance mutations in wild-type strains and laboratory strains with transferred plasmids. These data suggest that intestinal commensal organisms are a significant reservoir for the dissemination of plasmid-mediated quinolone resistance in Ho Chi Minh City.

Publisher

Microbiology Society

Subject

Microbiology (medical),General Medicine,Microbiology

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