RPB0121

Pathogen Description

Target Pathogen Pathogen Name NCBI Taxonomy ID Order Family Genus Species Pathogen type
Mycobacterium tuberculosis Mycobacterium tuberculosis, Bacterium tuberculosis, Bacillus tuberculosis, Mycobacterium tuberculosis variant tuberculosis 1773 Corynebacteriales Mycobacteriaceae Mycobacterium Mycobacterium tuberculosis Bacterium

Primer Description

Primer Name Sequence(5'-3') Length(bp) Primer Final Concentration(μM) GC Content(%) Predicted Melting Temperature(℃) Molecular Weight(g/moles) Positions in GenBank accession number
RPA IS6110 Forward TCCAGCGCCGCTTCGGACCACCAGCACCTAAC 32 0.48 65.6 74.41 9660.32 \
RPA IS6110 Reverse CGACGTAGGCGTCGGTGACAAAGGCCACGTAG 32 0.48 62.5 70.91 9924.48 \

Gene Description

Target Gene GenBank ID
IS6110 \

Assay Description

Application Assay Primer Designing Software Reaction Time(min) Assay Temperature(℃) Readout System(s) Limit of Detection(LoD) Sensitivity(%) Specificity(%)
detection of drug-resistant Mycobacterium tuberculosis RPA \ 30 37 SYTO-9 green fluorescent 102² colony-forming unit per millilitre \ \

Publication Description

Year of Publication Title Author(s) Journal PMID DOI
2018 Automated real-time detection of drug-resistant Mycobacterium tuberculosis on a lab-on-a-disc by Recombinase Polymerase Amplification I L G Law,J F C Loo,H C Kwok,H Y Yeung,C C H Leung,M Hui,S Y Wu,H S Chan,Y W Kwan,H P Ho,S K Kong Analytical biochemistry 29305096 10.1016/j.ab.2017.12.031

Automated real-time detection of drug-resistant Mycobacterium tuberculosis on a lab-on-a-disc by Recombinase Polymerase Amplification

Author(s):

I L G Law,J F C Loo,H C Kwok,H Y Yeung,C C H Leung,M Hui,S Y Wu,H S Chan,Y W Kwan,H P Ho,S K Kong

Journal:

Analytical biochemistry

Year:

2018

Abstract:

With the emergence of multi- and extensive-drug (MDR/XDR) resistant Mycobacterium tuberculosis (M. tb), tuberculosis (TB) persists as one of the world's leading causes of death. Recently, isothermal DNA amplification methods received much attention due to their ease of translation onto portable point-of-care (POC) devices for TB diagnosis. In this study, we aimed to devise a simple yet robust detection method for M. tb. Amongst the numerous up-and-coming isothermal techniques, Recombinase Polymerase Amplification (RPA) was chosen for a real-time detection of TB with or without MDR. In our platform, real-time RPA (RT-RPA) was integrated on a lab-on-a-disc (LOAD) with on-board power to maintain temperature for DNA amplification. Sputa collected from healthy volunteers were spiked with respective target M. tb samples for testing. A limit of detection of 102 colony-forming unit per millilitre in 15 min was achieved, making early detection and differentiation of M. tb strains highly feasible in extreme POC settings. Our RT-RPA LOAD platform has also been successfully applied in the differentiation of MDR-TB from H37Ra, an attenuated TB strain. In summary, a quantitative RT-RPA on LOAD assay with a high level of sensitivity was developed as a foundation for further developments in medical bedside and POC diagnostics.