One of predominant contributors to global mortality is tuberculosis (TB), an infection caused by Mycobacterium tuberculosis (MTB). Inappropriate and ineffectual treatment can lead to the development of drug-resistant TB. One of the most common forms of drug-resistant TB is multidrug-resistant tuberculosis (MDR-TB), caused by mutations in the rpoB and katG genes that lead to resistance to anti-TB drugs, rifampicin (RIF) and isoniazid (INH), respectively. Although culturing remains the gold standard, it is not rapid thereby delaying potential treatment and potentially increasing the incidence of MDR-TB. In contrast, molecular techniques provide a highly sensitive and specific alternative. This review discusses the classification of biomarkers used to detect MDR-TB, some of the commonly used anti-TB drugs, and DNA mutations in MTB that lead to anti-TB resistance. The objective of this review is to increase awareness of the need for rapid and precise detection of MDR-TB cases to decrease morbidity and mortality of this infectious disease worldwide.
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http://dx.doi.org/10.1016/j.cca.2024.119701 | DOI Listing |
ACS Infect Dis
January 2025
Department of Microbiology and Cell Biology, Indian Institute of Science, C.V. Raman Avenue, Bangalore 560012, India.
Tuberculosis (TB) continues to be a major cause of death worldwide despite having an effective combinatorial therapeutic regimen and vaccine. Being one of the most successful human pathogens, retains the ability to adapt to diverse intracellular and extracellular environments encountered by it during infection, persistence, and transmission. Designing and developing new therapeutic strategies to counter the emergence of multidrug-resistant and extensively drug-resistant TB remains a major task.
View Article and Find Full Text PDFBMC Microbiol
January 2025
Mycobacteriology Research Center, Institute of Health, Jimma University, Jimma, Oromia, Ethiopia.
Background: Early and accurate diagnosis of drug resistance, including resistance to second-line anti-tuberculosis (TB) drugs, is crucial for the effective control and management of pre-extensively drug-resistant TB (pre-XDR-TB) and extensively drug-resistant TB (XDR-TB). The Xpert MTB/XDR assay is the WHO recommended method for detecting resistance to isoniazid and second-line anti-TB drugs when rifampicin resistance is detected. Currently, the Xpert MTB/XDR assay is not yet implemented in Ethiopia, thus the MTBDRsl assay continues to be used.
View Article and Find Full Text PDFJ Public Health Afr
December 2024
School of Nursing, Faculty of Community and Health Sciences, University of the Western Cape, Cape Town, South Africa.
Background: Significant strides have been made globally and in South Africa (SA) in the policy and biomedical management of multidrug-resistant tuberculosis (MDR-TB). However, MDR-TB remains a significant public health threat.
Aim: This policy content analysis aims to explore the key milestones in MDR-TB management in SA and globally over the last decade, 2013-2023, to identify gaps and opportunities for improvement.
Indian J Med Ethics
January 2025
Consultant Gastroenterologist, Kalinga Gastroenterology Foundation, Bajrakabati Road, Cuttack, Odisha, 753007, INDIA.
In 2023, as per the World Health Organization (WHO), India emerged as the country with the highest number of tuberculosis (TB) cases, reporting 2.8 million cases and contributing to 27% of the global TB burden [1]. Worldwide, there were 7.
View Article and Find Full Text PDFFront Antibiot
January 2024
Department of Biotechnology, Faculty of Science and Technology, University of Central Punjab, Lahore, Pakistan.
Multidrug-resistant organisms are bacteria that are no longer controlled or killed by specific drugs. One of two methods causes bacteria multidrug resistance (MDR); first, these bacteria may disguise multiple cell genes coding for drug resistance to a single treatment on resistance (R) plasmids. Second, increased expression of genes coding for multidrug efflux pumps, which extrude many drugs, can cause MDR.
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