Abstract
This study characterized the β-lactamase content of baseline pathogens recovered from patients with complicated urinary tract infections (cUTI), including acute pyelonephritis, who were enrolled in two phase 3 clinical trials of ceftazidime-avibactam (RECAPTURE 1 and 2), and correlated the clinical efficacy of ceftazidime-avibactam and the comparator doripenem according to resistance mechanisms. A total of 26.2% (93/355) ceftazidime-avibactam and 26.8% (101/377) doripenem patients had baseline isolates that met the MIC screening criteria. The majority of Enterobacteriaceae (87.5%; 154/176) carried blaCTX-M. This pattern was mainly observed in Escherichia coli (96.8%; 92/95) and Klebsiella pneumoniae (96.0%; 48/50), whereas most Proteus mirabilis (80.0%; 8/10) carried plasmid AmpC genes. Two K. pneumoniae and 1 Klebsiella oxytoca carried blaOXA-48 and 1 K. pneumoniae carried blaNDM-1. Five (13/35; 37.1%) Pseudomonas aeruginosa isolates were screened, and 2 carbapenemase producers (IMP-18 and VIM-2) were detected. Among patients enrolled in the ceftazidime-avibactam arm who were infected by MIC screen-positive Enterobacteriaceae, clinical cure occurred in 85.7-95.5%, regardless of β-lactamase content; the respective rate in the doripenem arm was 82.1-92.5%. A total of 75.0% in the ceftazidime-avibactam arm and 100.0% in the doripenem arm of patients infected by P. aeruginosa with MIC screen-positive criteria were clinically cured. Ceftazidime-avibactam efficacy was comparable to doripenem efficacy for treating cUTI caused by uropathogens producing extended-spectrum and/or AmpC β-lactamases.
Keywords:
CTX-M-15; Carbapenemase; Clinical efficacy; ESBL.
Copyright © 2018. Published by Elsevier B.V.
Publication types
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Clinical Trial, Phase III
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Multicenter Study
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Randomized Controlled Trial
MeSH terms
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Adolescent
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Adult
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Aged
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Aged, 80 and over
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Anti-Bacterial Agents / therapeutic use*
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Azabicyclo Compounds / therapeutic use*
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Bacterial Proteins / genetics*
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Bacterial Proteins / metabolism
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Carbapenems / therapeutic use*
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Ceftazidime / therapeutic use*
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Doripenem
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Double-Blind Method
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Drug Combinations
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Escherichia coli / drug effects
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Escherichia coli / genetics
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Escherichia coli / growth & development
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Escherichia coli / isolation & purification
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Female
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Gene Expression
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Gram-Negative Bacterial Infections / drug therapy*
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Gram-Negative Bacterial Infections / microbiology
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Humans
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Klebsiella oxytoca / drug effects
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Klebsiella oxytoca / genetics
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Klebsiella oxytoca / growth & development
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Klebsiella oxytoca / isolation & purification
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Klebsiella pneumoniae / drug effects
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Klebsiella pneumoniae / genetics
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Klebsiella pneumoniae / growth & development
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Klebsiella pneumoniae / isolation & purification
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Male
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Microbial Sensitivity Tests
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Middle Aged
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Plasmids / chemistry
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Plasmids / metabolism
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Proteus mirabilis / drug effects
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Proteus mirabilis / genetics
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Proteus mirabilis / growth & development
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Proteus mirabilis / isolation & purification
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Pseudomonas aeruginosa / drug effects
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Pseudomonas aeruginosa / genetics
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Pseudomonas aeruginosa / growth & development
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Pseudomonas aeruginosa / isolation & purification
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Pyelonephritis / drug therapy*
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Pyelonephritis / microbiology
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Treatment Outcome
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Urinary Tract Infections / drug therapy*
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Urinary Tract Infections / microbiology
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beta-Lactamases / genetics*
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beta-Lactamases / metabolism
Substances
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Anti-Bacterial Agents
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Azabicyclo Compounds
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Bacterial Proteins
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Carbapenems
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Drug Combinations
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avibactam, ceftazidime drug combination
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Ceftazidime
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Doripenem
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beta-Lactamases
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carbapenemase