The higher prevalence of extended spectrum beta-lactamases among Escherichia coli ST131 in Southeast Asia is driven by expansion of a single, locally prevalent subclone

The ST131 multilocus sequence type (MLST) of Escherichia coli is a globally successful pathogen whose dissemination is increasing rates of antibiotic resistance. Numerous global surveys have demonstrated the pervasiveness of this clone; in some regions ST131 accounts for up to 30% of all E. coli iso...

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Main Authors: Chen, Swaine Lin, Ding, Ying, Apisarnthanarak, Anucha, Kalimuddin, Shirin, Archuleta, Sophia, Sharifah Faridah Syed Omar, De, Partha Pratim, Koh, Tse Hsien, Chew, Kean Lee, Nadia Atiya, Suwantarat, Nuntra, Velayuthan, Rukumani Devi, Wong, Joshua Guo Xian, Lye, David C.
Other Authors: Lee Kong Chian School of Medicine (LKCMedicine)
Format: Article
Language:English
Published: 2020
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Online Access:https://hdl.handle.net/10356/142340
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Institution: Nanyang Technological University
Language: English
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spelling sg-ntu-dr.10356-1423402020-11-01T05:29:31Z The higher prevalence of extended spectrum beta-lactamases among Escherichia coli ST131 in Southeast Asia is driven by expansion of a single, locally prevalent subclone Chen, Swaine Lin Ding, Ying Apisarnthanarak, Anucha Kalimuddin, Shirin Archuleta, Sophia Sharifah Faridah Syed Omar De, Partha Pratim Koh, Tse Hsien Chew, Kean Lee Nadia Atiya Suwantarat, Nuntra Velayuthan, Rukumani Devi Wong, Joshua Guo Xian Lye, David C. Lee Kong Chian School of Medicine (LKCMedicine) Science::Medicine Escherichia Coli ST131 Multilocus Sequence Type (MLST) The ST131 multilocus sequence type (MLST) of Escherichia coli is a globally successful pathogen whose dissemination is increasing rates of antibiotic resistance. Numerous global surveys have demonstrated the pervasiveness of this clone; in some regions ST131 accounts for up to 30% of all E. coli isolates. However, many regions are underrepresented in these published surveys, including Africa, South America, and Asia. We collected consecutive bloodstream E. coli isolates from three countries in Southeast Asia; ST131 was the most common MLST type. As in other studies, the C2/H30Rx clade accounted for the majority of ST131 strains. Clinical risk factors were similar to other reported studies. However, we found that nearly all of the C2 strains in this study were closely related, forming what we denote the SEA-C2 clone. The SEA-C2 clone is enriched for strains from Asia, particularly Southeast Asia and Singapore. The SEA-C2 clone accounts for all of the excess resistance and virulence of ST131 relative to non-ST131 E. coli. The SEA-C2 strains appear to be locally circulating and dominant in Southeast Asia, despite the intuition that high international connectivity and travel would enable frequent opportunities for other strains to establish themselves. ASTAR (Agency for Sci., Tech. and Research, S’pore) NMRC (Natl Medical Research Council, S’pore) Published version 2020-06-19T05:12:22Z 2020-06-19T05:12:22Z 2019 Journal Article Chen, S. L., Ding, Y., Apisarnthanarak, A., Kalimuddin, S., Archuleta, S., Sharifah Faridah Syed Omar, . . . Lye, D. C. (2019). The higher prevalence of extended spectrum beta-lactamases among Escherichia coli ST131 in Southeast Asia is driven by expansion of a single, locally prevalent subclone. Scientific Reports, 9(1), 13245-. doi:10.1038/s41598-019-49467-5 2045-2322 https://hdl.handle.net/10356/142340 10.1038/s41598-019-49467-5 31519972 2-s2.0-85072189461 1 9 en Scientific Reports © 2019 The Author(s). This article is licensed under a Creative Commons Attribution 4.0 International License, which permits use, sharing, adaptation, distribution and reproduction in any medium or format, as long as you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons license, and indicate if changes were made. Te images or other third party material in this article are included in the article’s Creative Commons license, unless indicated otherwise in a credit line to the material. If material is not included in the article’s Creative Commons license and your intended use is not permitted by statutory regulation or exceeds the permitted use, you will need to obtain permission directly from the copyright holder. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/. application/pdf
institution Nanyang Technological University
building NTU Library
continent Asia
country Singapore
Singapore
content_provider NTU Library
collection DR-NTU
language English
topic Science::Medicine
Escherichia Coli
ST131 Multilocus Sequence Type (MLST)
spellingShingle Science::Medicine
Escherichia Coli
ST131 Multilocus Sequence Type (MLST)
Chen, Swaine Lin
Ding, Ying
Apisarnthanarak, Anucha
Kalimuddin, Shirin
Archuleta, Sophia
Sharifah Faridah Syed Omar
De, Partha Pratim
Koh, Tse Hsien
Chew, Kean Lee
Nadia Atiya
Suwantarat, Nuntra
Velayuthan, Rukumani Devi
Wong, Joshua Guo Xian
Lye, David C.
The higher prevalence of extended spectrum beta-lactamases among Escherichia coli ST131 in Southeast Asia is driven by expansion of a single, locally prevalent subclone
description The ST131 multilocus sequence type (MLST) of Escherichia coli is a globally successful pathogen whose dissemination is increasing rates of antibiotic resistance. Numerous global surveys have demonstrated the pervasiveness of this clone; in some regions ST131 accounts for up to 30% of all E. coli isolates. However, many regions are underrepresented in these published surveys, including Africa, South America, and Asia. We collected consecutive bloodstream E. coli isolates from three countries in Southeast Asia; ST131 was the most common MLST type. As in other studies, the C2/H30Rx clade accounted for the majority of ST131 strains. Clinical risk factors were similar to other reported studies. However, we found that nearly all of the C2 strains in this study were closely related, forming what we denote the SEA-C2 clone. The SEA-C2 clone is enriched for strains from Asia, particularly Southeast Asia and Singapore. The SEA-C2 clone accounts for all of the excess resistance and virulence of ST131 relative to non-ST131 E. coli. The SEA-C2 strains appear to be locally circulating and dominant in Southeast Asia, despite the intuition that high international connectivity and travel would enable frequent opportunities for other strains to establish themselves.
author2 Lee Kong Chian School of Medicine (LKCMedicine)
author_facet Lee Kong Chian School of Medicine (LKCMedicine)
Chen, Swaine Lin
Ding, Ying
Apisarnthanarak, Anucha
Kalimuddin, Shirin
Archuleta, Sophia
Sharifah Faridah Syed Omar
De, Partha Pratim
Koh, Tse Hsien
Chew, Kean Lee
Nadia Atiya
Suwantarat, Nuntra
Velayuthan, Rukumani Devi
Wong, Joshua Guo Xian
Lye, David C.
format Article
author Chen, Swaine Lin
Ding, Ying
Apisarnthanarak, Anucha
Kalimuddin, Shirin
Archuleta, Sophia
Sharifah Faridah Syed Omar
De, Partha Pratim
Koh, Tse Hsien
Chew, Kean Lee
Nadia Atiya
Suwantarat, Nuntra
Velayuthan, Rukumani Devi
Wong, Joshua Guo Xian
Lye, David C.
author_sort Chen, Swaine Lin
title The higher prevalence of extended spectrum beta-lactamases among Escherichia coli ST131 in Southeast Asia is driven by expansion of a single, locally prevalent subclone
title_short The higher prevalence of extended spectrum beta-lactamases among Escherichia coli ST131 in Southeast Asia is driven by expansion of a single, locally prevalent subclone
title_full The higher prevalence of extended spectrum beta-lactamases among Escherichia coli ST131 in Southeast Asia is driven by expansion of a single, locally prevalent subclone
title_fullStr The higher prevalence of extended spectrum beta-lactamases among Escherichia coli ST131 in Southeast Asia is driven by expansion of a single, locally prevalent subclone
title_full_unstemmed The higher prevalence of extended spectrum beta-lactamases among Escherichia coli ST131 in Southeast Asia is driven by expansion of a single, locally prevalent subclone
title_sort higher prevalence of extended spectrum beta-lactamases among escherichia coli st131 in southeast asia is driven by expansion of a single, locally prevalent subclone
publishDate 2020
url https://hdl.handle.net/10356/142340
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