Literature DB >> 27912842

The rapid spread of carbapenem-resistant Enterobacteriaceae.

Robert F Potter1, Alaric W D'Souza1, Gautam Dantas2.   

Abstract

Carbapenems, our one-time silver bullet for multidrug resistant bacterial infections, are now threatened by widespread dissemination of carbapenem-resistant Enterobacteriaceae (CRE). Successful expansion of Enterobacteriaceae clonal groups and frequent horizontal gene transfer of carbapenemase expressing plasmids are causing increasing carbapenem resistance. Recent advances in genetic and phenotypic detection facilitate global surveillance of CRE diversity and prevalence. In particular, whole genome sequencing enabled efficient tracking, annotation, and study of genetic elements colocalized with carbapenemase genes on chromosomes and on plasmids. Improved characterization helps detail the co-occurrence of other antibiotic resistance genes in CRE isolates and helps identify pan-drug resistance mechanisms. The novel β-lactamase inhibitor, avibactam, combined with ceftazidime or aztreonam, is a promising CRE treatment compared to current colistin or tigecycline regimens. To halt increasing CRE-associated morbidity and mortality, we must continue quality, cooperative monitoring and urgently investigate novel treatments. Copyright Â
© 2016 Elsevier Ltd. All rights reserved.

Entities:  

Keywords:  Antibiotic resistance; Carbapenem Resistant Enterobacteriaceae; Horizontal gene transfer

Mesh:

Substances:

Year:  2016        PMID: 27912842      PMCID: PMC5140036          DOI: 10.1016/j.drup.2016.09.002

Source DB:  PubMed          Journal:  Drug Resist Updat        ISSN: 1368-7646            Impact factor:   18.500


  205 in total

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3.  Development of a novel real-time PCR assay with high-resolution melt analysis to detect and differentiate OXA-48-Like β-lactamases in carbapenem-resistant Enterobacteriaceae.

Authors:  Peera Hemarajata; Shangxin Yang; Janet A Hindler; Romney M Humphries
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5.  Enhanced killing of antibiotic-resistant bacteria enabled by massively parallel combinatorial genetics.

Authors:  Allen A Cheng; Huiming Ding; Timothy K Lu
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6.  GES-2, a class A beta-lactamase from Pseudomonas aeruginosa with increased hydrolysis of imipenem.

Authors:  L Poirel; G F Weldhagen; T Naas; C De Champs; M G Dove; P Nordmann
Journal:  Antimicrob Agents Chemother       Date:  2001-09       Impact factor: 5.191

Review 7.  OXA-48-like carbapenemases: the phantom menace.

Authors:  Laurent Poirel; Anaïs Potron; Patrice Nordmann
Journal:  J Antimicrob Chemother       Date:  2012-04-11       Impact factor: 5.790

8.  High prevalence of plasmid-mediated 16S rRNA methylase gene rmtB among Escherichia coli clinical isolates from a Chinese teaching hospital.

Authors:  Fang-you Yu; Dan Yao; Jing-ye Pan; Chong Chen; Zhi-qiang Qin; Chris Parsons; Le-he Yang; Qiao-qiao Li; Xue-qing Zhang; Di Qu; Liang-xing Wang
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9.  Genomic Analysis of the Emergence and Rapid Global Dissemination of the Clonal Group 258 Klebsiella pneumoniae Pandemic.

Authors:  Jolene R Bowers; Brandon Kitchel; Elizabeth M Driebe; Duncan R MacCannell; Chandler Roe; Darrin Lemmer; Tom de Man; J Kamile Rasheed; David M Engelthaler; Paul Keim; Brandi M Limbago
Journal:  PLoS One       Date:  2015-07-21       Impact factor: 3.240

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Authors:  Mitchell W Pesesky; Tahir Hussain; Meghan Wallace; Bin Wang; Saadia Andleeb; Carey-Ann D Burnham; Gautam Dantas
Journal:  Emerg Infect Dis       Date:  2015-06       Impact factor: 6.883

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  89 in total

Review 1.  Carbapenemase-producing Enterobacteriaceae in animals and methodologies for their detection.

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Authors:  R F Potter; M A Wallace; A R McMullen; J Prusa; C L Stallings; C A D Burnham; G Dantas
Journal:  Clin Microbiol Infect       Date:  2018-03-01       Impact factor: 8.067

3.  4-Amino-2-Sulfanylbenzoic Acid as a Potent Subclass B3 Metallo-β-Lactamase-Specific Inhibitor Applicable for Distinguishing Metallo-β-Lactamase Subclasses.

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Review 4.  The Continuing Challenge of Metallo-β-Lactamase Inhibition: Mechanism Matters.

Authors:  Lin-Cheng Ju; Zishuo Cheng; Walter Fast; Robert A Bonomo; Michael W Crowder
Journal:  Trends Pharmacol Sci       Date:  2018-04-18       Impact factor: 14.819

5.  In Vivo Pharmacodynamic Characterization of a Novel Odilorhabdin Antibiotic, NOSO-502, against Escherichia coli and Klebsiella pneumoniae in a Murine Thigh Infection Model.

Authors:  Miao Zhao; Alexander J Lepak; Karen Marchillo; Jamie VanHecker; David R Andes
Journal:  Antimicrob Agents Chemother       Date:  2018-08-27       Impact factor: 5.191

6.  Spread of Plasmid-Encoded NDM-1 and GES-5 Carbapenemases among Extensively Drug-Resistant and Pandrug-Resistant Clinical Enterobacteriaceae in Durban, South Africa.

Authors:  Torunn Pedersen; John Osei Sekyere; Usha Govinden; Krishnee Moodley; Audun Sivertsen; Ørjan Samuelsen; Sabiha Yusuf Essack; Arnfinn Sundsfjord
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7.  Synthesis and biological evaluation of zinc chelating compounds as metallo-β-lactamase inhibitors.

Authors:  Geir Kildahl-Andersen; Christian Schnaars; Anthony Prandina; Sylvie Radix; Marc Le Borgne; Lars Petter Jordheim; Tor Gjøen; Adriana Magalhães Santos Andresen; Silje Lauksund; Christopher Fröhlich; Ørjan Samuelsen; Pål Rongved; Ove Alexander Høgmoen Åstrand
Journal:  Medchemcomm       Date:  2019-03-08       Impact factor: 3.597

Review 8.  Diversity and Proliferation of Metallo-β-Lactamases: a Clarion Call for Clinically Effective Metallo-β-Lactamase Inhibitors.

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9.  Simultaneous Infection with Enterobacteriaceae and Pseudomonas aeruginosa Harboring Multiple Carbapenemases in a Returning Traveler Colonized with Candida auris.

Authors:  Ayesha Khan; William C Shropshire; Blake Hanson; An Q Dinh; Audrey Wanger; Luis Ostrosky-Zeichner; Cesar A Arias; William R Miller
Journal:  Antimicrob Agents Chemother       Date:  2020-01-27       Impact factor: 5.191

Review 10.  Sequencing-based methods and resources to study antimicrobial resistance.

Authors:  Manish Boolchandani; Alaric W D'Souza; Gautam Dantas
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