Deeplex® Myc-TB

Innovative Diagnostic Solution for Tuberculosis Drug Resistance

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Deeplex Myc-TB

The all-in-one solution for extensive detection of Mycobacterium tuberculosis drug resistance

Deeplex Myc-TB, developed by GenoScreen, is an innovative and integrated culture-free diagnostic kit, providing molecular results on resistance or susceptibility to 15 anti-tuberculosis drugs in less than 48 hours. The assay is based on targeted deep sequencing and automated data analysis via the secure Deeplex Myc-TB web application.

Our product can detect tuberculosis heteroresistance down to 1-3%, and also identifies Mycobacterium tuberculosis complex (sub)lineages and spoligotypes as well as more than 100 species of non-tuberculous mycobacteria (NTM).

By providing rapid and extensive prediction of genetic resistance to anti-tuberculosis drugs, this innovative test represents a powerful  tool for guiding effective therapeutic management of patients suffering from tuberculosis.

15

anti-TB drugs

screened

48h

from clinical samples to results

1-3%

heteroresistance detection sensitivity

>100

mycobacterial 

species identified

Deeplex Myc-TB

includes

  • A Deeplex Master Mix: a single 24-plex PCR mix for culture-free amplification of 18 Mycobacterium tuberculosis drug resistance-associated gene targets combined with targets for mycobacterial species identification and MTBC strain genotyping.
  • An internal control for in-sample quality control.
  • A positive control for test validation.
  • An activation code to access the Deeplex Myc-TB web application.

WHO consolidated guidelines on tuberculosis

Information sheet GenoScreen: Deeplex Myc-TB test

The World Health Organization (WHO) has recently updated its “Consolidated Guidelines on Tuberculosis”, recommending targeted next-generation sequencing (tNGS) as a preferred method for diagnosing drug-resistant tuberculosis (DR-TB). This new guidance underscores the critical role of advanced diagnostics in quickly identifying drug resistance patterns, helping clinicians make informed decisions and improving patient outcomes.

Deeplex Myc-TB is highlighted by the WHO as the only tNGS assay meeting the performance criteria for all 10 drugs evaluated, making it the most effective solution for DR-TB diagnostics. By adopting Deeplex Myc-TB, healthcare providers gain access to the most advanced tNGS-based tool, supporting faster and extensive diagnoses in alignment with WHO recommendations.

Download the technical note

Tuberculosis, a global public health challenge

Tuberculosis (TB) is amongst the most lethal infectious diseases globally, with  10 million new cases annually, causing near 1.5 million deaths each year.

This contagious disease most often develops in the lungs, but can also affect multiple other parts of the body. It is caused by bacteria part of the Mycobacterium tuberculosis complex (MTBC). Treatment of active TB requires the uptake of combination of multiple antibiotics for 6 months or more.

Drug-resistant tuberculosis, a rising threat

The World Health Organization (WHO) estimated that about 450,000 new cases of multi-drug resistant (MDR) or rifampicin-resistant TB occurred in 2021, of which ~6% were extensively drug resistant tuberculosis (XDR-TB, additional resistance to at least one additional Group A drug).

If the MTBC strain that infects the patient is resistant to the drugs part of the treatment regimen, the therapy will be unsuccessful. Drug resistance can also amplify when pre-existing resistance is undetected. Therefore, rapid, accurate and extensive detection of drug susceptibility and drug resistance is crucial for effective patient treatment, and to prevent further development of drug resistance and transmission of tuberculosis.

Deeplex Myc-TB

Our references

2023H. Mansoor et al. The International Journal of Tuberculosis and Lung
Clinical utility of target-based next generation sequencing for drug-resistant TB
2022Sibandze D. B. et al. Genome Medicine
Rapid molecular diagnostics of tuberculosis resistance by targeted stool sequencing
2021Jouet A. et al. European Respiratory Journal
Deep amplicon sequencing for culture-free prediction of susceptibility or resistance to 13 anti-tuberculous drugs
2021Mesfin A. B. et al. The International Journal of Tuberculosis and Lung Disease
First molecular-based anti-TB drug resistance survey in Eritrea
2021Bonnet I. et al. Frontiers in Cellular and Infection Microbiology
A comprehensive evaluation of GeneLEAD VIII DNA platform combined to Deeplex Myc-TB® assay to detect in 8 days drug resistance to 13 antituberculous drugs and transmission of Mycobacterium tuberculosis complex directly from clinical samples
2021Kambli P. et al. Tuberculosis
Targeted next generation sequencing directly from sputum for comprehensive genetic information on drug resistant Mycobacterium tuberculosis
2021Feuerriegel S. et al. European Respiratory Journal
Rapid genomic first- and second-line drug resistance prediction from clinical Mycobacterium tuberculosis specimens using Deeplex® Myc-TB
2020El Achkar S. et al. European Respiratory Journal
Zoonotic tuberculosis in humans assessed by next-generation sequencing: an 18-month nationwide study in Lebanon
2020Ngabonziza J. C. S. et al. Nature Communication
A sister lineage of the Mycobacterium tuberculosis complex discovered in the African Great Lakes region
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