CTX-M and plasmid-mediate AmpC-producing enterobacteriaceae, Singapore [6]

10.3201/eid1006.030726

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Main Authors: Koh, T.H, Wang, G.C.Y, Sng, L.-H, Yi, Z, Koh, T.Y
Other Authors: DUKE-NUS MEDICAL SCHOOL
Format: Letter
Published: Centers for Disease Control and Prevention (CDC) 2020
Subjects:
Online Access:https://scholarbank.nus.edu.sg/handle/10635/181116
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Institution: National University of Singapore
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spelling sg-nus-scholar.10635-1811162024-11-14T08:47:03Z CTX-M and plasmid-mediate AmpC-producing enterobacteriaceae, Singapore [6] Koh, T.H Wang, G.C.Y Sng, L.-H Yi, Z Koh, T.Y DUKE-NUS MEDICAL SCHOOL amoxicillin plus clavulanic acid beta lactamase beta lactamase AmpC cefotaxime ceftazidime ceftriaxone cephalosporin derivative CTX M beta lactamase unclassified drug agar gel diffusion amino acid sequence antibiotic resistance antibiotic sensitivity bacterial gene bacterium isolate drug hydrolysis Enterobacteriaceae enzyme synthesis Gram negative bacterium human isoelectric point letter minimum inhibitory concentration nonhuman nucleotide sequence plasmid polymerase chain reaction Singapore 10.3201/eid1006.030726 Emerging Infectious Diseases 10 6 1172-1174 2020-10-27T09:53:27Z 2020-10-27T09:53:27Z 2004 Letter Koh, T.H, Wang, G.C.Y, Sng, L.-H, Yi, Z, Koh, T.Y (2004). CTX-M and plasmid-mediate AmpC-producing enterobacteriaceae, Singapore [6]. Emerging Infectious Diseases 10 (6) : 1172-1174. ScholarBank@NUS Repository. https://doi.org/10.3201/eid1006.030726 10806040 https://scholarbank.nus.edu.sg/handle/10635/181116 Attribution 4.0 International http://creativecommons.org/licenses/by/4.0/ Centers for Disease Control and Prevention (CDC) Unpaywall 20201031
institution National University of Singapore
building NUS Library
continent Asia
country Singapore
Singapore
content_provider NUS Library
collection ScholarBank@NUS
topic amoxicillin plus clavulanic acid
beta lactamase
beta lactamase AmpC
cefotaxime
ceftazidime
ceftriaxone
cephalosporin derivative
CTX M beta lactamase
unclassified drug
agar gel diffusion
amino acid sequence
antibiotic resistance
antibiotic sensitivity
bacterial gene
bacterium isolate
drug hydrolysis
Enterobacteriaceae
enzyme synthesis
Gram negative bacterium
human
isoelectric point
letter
minimum inhibitory concentration
nonhuman
nucleotide sequence
plasmid
polymerase chain reaction
Singapore
spellingShingle amoxicillin plus clavulanic acid
beta lactamase
beta lactamase AmpC
cefotaxime
ceftazidime
ceftriaxone
cephalosporin derivative
CTX M beta lactamase
unclassified drug
agar gel diffusion
amino acid sequence
antibiotic resistance
antibiotic sensitivity
bacterial gene
bacterium isolate
drug hydrolysis
Enterobacteriaceae
enzyme synthesis
Gram negative bacterium
human
isoelectric point
letter
minimum inhibitory concentration
nonhuman
nucleotide sequence
plasmid
polymerase chain reaction
Singapore
Koh, T.H
Wang, G.C.Y
Sng, L.-H
Yi, Z
Koh, T.Y
CTX-M and plasmid-mediate AmpC-producing enterobacteriaceae, Singapore [6]
description 10.3201/eid1006.030726
author2 DUKE-NUS MEDICAL SCHOOL
author_facet DUKE-NUS MEDICAL SCHOOL
Koh, T.H
Wang, G.C.Y
Sng, L.-H
Yi, Z
Koh, T.Y
format Letter
author Koh, T.H
Wang, G.C.Y
Sng, L.-H
Yi, Z
Koh, T.Y
author_sort Koh, T.H
title CTX-M and plasmid-mediate AmpC-producing enterobacteriaceae, Singapore [6]
title_short CTX-M and plasmid-mediate AmpC-producing enterobacteriaceae, Singapore [6]
title_full CTX-M and plasmid-mediate AmpC-producing enterobacteriaceae, Singapore [6]
title_fullStr CTX-M and plasmid-mediate AmpC-producing enterobacteriaceae, Singapore [6]
title_full_unstemmed CTX-M and plasmid-mediate AmpC-producing enterobacteriaceae, Singapore [6]
title_sort ctx-m and plasmid-mediate ampc-producing enterobacteriaceae, singapore [6]
publisher Centers for Disease Control and Prevention (CDC)
publishDate 2020
url https://scholarbank.nus.edu.sg/handle/10635/181116
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