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1.
New Microbes New Infect ; 36: 100722, 2020 Jul.
Article in English | MEDLINE | ID: mdl-32642069

ABSTRACT

Polymyxins are important therapeutic options for treating infections, mainly those caused by carbapenem-resistant Klebsiella pneumoniae. Specific chemical characteristics of polymyxins make it difficult to perform antimicrobial susceptibility testing, especially within the clinical laboratory. Here we aimed to evaluate the performance of three phenotypic methods: Rapid NP Polymyxin Test, ColiSpot test and the SuperPolymyxin medium. To accomplish this, 170 non-duplicate clinical K. pneumoniae isolates were analysed (123 colistin-resistant and 47 susceptible). The sensitivity and specificity obtained for Rapid Polymyxin NP Test, Colispot and SuperPolymyxin medium were, respectively, 90% and 94%, 74% and 100%, and 82% and 85%. Very major errors occurred more frequently in low-level colistin-resistant isolates (MICs 4 and 8 µg/mL). Rapid Polymyxin NP proved to be a method capable of identifying colistin-resistant strains in acceptable categorical agreement. However, major errors and very major errors of this method were considered unacceptable for colistin-resistance screening. Although the Colispot test is promising and easy to perform and interpret, the results did not reproduce well in the isolates tested. The colistin-containing selective medium (SuperPolymyxin) showed limitations, including quantification of mucoid colonies and poor stability. Nevertheless, Colispot and SuperPolymyxin medium methods did not present acceptable sensitivity, specificity and categorical agreement. It is essential to use analytical tools that faithfully reproduce bacterial resistance in vitro, especially in last-line drugs, such as polymyxins, when misinterpretation of a test can result in therapeutic ineffectiveness.

2.
J Appl Microbiol ; 118(6): 1276-86, 2015 Jun.
Article in English | MEDLINE | ID: mdl-25752460

ABSTRACT

AIMS: To investigate Pseudomonas aeruginosa isolates from a hospital wastewater treatment plant (HWTP), focusing on enzyme-based mechanisms of ß-lactams resistance and the genetic relatedness among isolates. METHODS AND RESULTS: Forty-one Ps. aeruginosa strains recovered from a HWTP were identified by amplification of 16S rRNA gene. ß-lactamase production was screened by disc diffusion, CHROMagar extended-spectrum ß-lactamase (ESBL) and ß-lactamase strips. ß-lactamase and ESBL producing isolates were investigated by PCR for the presence of ESBL, metallo-ß-lactamase and Klebsiella pneumoniae carbapenemase encoding genes. Thirty-four isolates (83%) were resistant to at least one antibiotic belonging to three or more classes. Out of these 34 isolates, 28 (82%) were classified as multidrug-resistant (MDR) and 6 (18%) extensively drug-resistant (XDR). Genetic relatedness by Enterobacterial Repetitive Intergenic Consensus sequence-PCR and Multilocus sequence typing analysis showed 20 distinct profiles and 15 sequencing types respectively. Clonal Complex 244 (CC244) shows the pathogenic potential of this clone carrying MDR and XDR strains from clinical, environmental and hospital waste sources. CONCLUSIONS: Our results suggest that treatment facilities for hospital wastewater can stimulate the increase of antimicrobial resistance bacteria and genes. SIGNIFICANCE AND IMPACT OF THE STUDY: The great genetic diversity of Ps. aeruginosa recovered from HWTP constantly released into aquatic systems allow the spread of antimicrobial-resistant organisms and genes.


Subject(s)
Anti-Bacterial Agents/pharmacology , Drug Resistance, Multiple, Bacterial , Pseudomonas aeruginosa/drug effects , Pseudomonas aeruginosa/isolation & purification , Wastewater/microbiology , Brazil , Genotype , Hospitals , Microbial Sensitivity Tests , Multilocus Sequence Typing , Pseudomonas aeruginosa/classification , Pseudomonas aeruginosa/genetics , Water Purification/instrumentation
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