» Articles » PMID: 23065698

Analytical Validation of a Novel High Multiplexing Real-time PCR Array for the Identification of Key Pathogens Causative of Bacterial Ventilator-associated Pneumonia and Their Associated Resistance Genes

Overview
Date 2012 Oct 16
PMID 23065698
Citations 15
Authors
Affiliations
Soon will be listed here.
Abstract

Objectives: Rapid diagnosis and appropriate empirical antimicrobial therapy before the availability of conventional microbiological results is of pivotal importance for the clinical outcome of ventilator-associated pneumonia (VAP). We evaluated the VAPChip, a novel, closed cartridge molecular tool aiming to identify directly from clinical samples and within a working day the principal bacteria causative of VAP as well as clinically relevant β-lactam resistance genes.

Methods: The Real-time Array PCR for Infectious Diseases (RAP-ID) is a novel technology that combines multiplex PCR with real-time microarray detection. The VAPChip is a closed cartridge kit adapted to the RAP-ID instrument that targets 13 key respiratory pathogens causative of VAP and 24 relevant antimicrobial resistance genes that mediate resistance to β-lactam agents, including extended-spectrum cephalosporins and carbapenems. Analytical validation of the VAPChip was carried out blindly on a collection of 292 genotypically characterized bacterial reference and clinical isolates, including 225 isolates selected on the basis of their species identification and antimicrobial resistance profiles and 67 bacterial isolates belonging to the oropharyngeal flora not targeted by the array.

Results: The limit of detection of the assay lies between 10 and 100 genome copies/PCR and the dynamic range is five orders of magnitude permitting at least semi-quantitative reporting of the results. Sensitivity, specificity and negative and positive predictive values ranged from 95.8% to 100% for species identification and detection of resistance genes.

Conclusions: VAPChip is a novel diagnostic tool able to identify resistant bacterial isolates by RAP-ID technology. The results of this analytical validation have to be confirmed on clinical specimens.

Citing Articles

Multiple cross displacement amplification-based lateral flow biosensor for rapid and sensitive detection of .

Chen Y, Zhou J, Wang J, He X, Huang X, Xiao F Front Cell Infect Microbiol. 2024; 14:1396330.

PMID: 39611101 PMC: 11602460. DOI: 10.3389/fcimb.2024.1396330.


Metagenomics for the microbiological diagnosis of hospital-acquired pneumonia and ventilator-associated pneumonia (HAP/VAP) in intensive care unit (ICU): a proof-of-concept study.

Heitz M, Levrat A, Lazarevic V, Barraud O, Bland S, Santiago-Allexant E Respir Res. 2023; 24(1):285.

PMID: 37968636 PMC: 10648381. DOI: 10.1186/s12931-023-02597-x.


Trends in Molecular Diagnosis of Nosocomial Pneumonia Classic PCR vs. Point-of-Care PCR: A Narrative Review.

Balan A, Bodolea C, Tranca S, Hagau N Healthcare (Basel). 2023; 11(9).

PMID: 37174887 PMC: 10177880. DOI: 10.3390/healthcare11091345.


Detection of Multidrug-Resistant -From ESBLs to Carbapenemases.

Noster J, Thelen P, Hamprecht A Antibiotics (Basel). 2021; 10(9).

PMID: 34572722 PMC: 8465816. DOI: 10.3390/antibiotics10091140.


Highly multiplexed rapid DNA detection with single-nucleotide specificity via convective PCR in a portable device.

Khodakov D, Li J, Zhang J, Zhang D Nat Biomed Eng. 2021; 5(7):702-712.

PMID: 34211146 DOI: 10.1038/s41551-021-00755-4.