Related Experiment Video
Updated: Aug 19, 2025

System for Efficacy and Cytotoxicity Screening of Inhibitors Targeting Intracellular Mycobacterium tuberculosis
Published on: April 5, 2017
Pattern of drug resistance among patients of pulmonary tuberculosis
Gagandeep Kaur Chawla1, Kranti Garg1, Komaldeep Kaur1
1Department of Pulmonary Medicine, Govt. Medical College, Patiala, India.
Background:
Drug resistant tuberculosis (DR-TB), particularly multidrug resistance (MDR-TB) and extensive drug resistance (XDR-TB) pose a serious threat to public health. This study aimed to identify drug resistance in pulmonary tuberculosis patients and to see their association with diabetes, human immunodeficiency virus (HIV), previous history of tuberculosis (TB) and family history of TB.
Method:
Sputum specimens obtained from 11,874 pulmonary tuberculosis patients were subjected to smear microscopy, cartridge based nucleic acid amplification test (CBNAAT) and liquid culture (LC). Smear positive isolates were subjected to first line Line probe assay (FL-LPA) for isoniazid and rifampicin resistance. FL- LPA positive isolates were subjected to second line Line probe assay (SL-LPA) for fluoroquinolones and second line injectable drug resistance.
Result:
Out of 11,874 microbiologically confirmed cases of pulmonary tuberculosis, 976 (8.2%) had a drug resistant tuberculosis. Five patterns of drug resistance were identified monoisoniazid; 394 (3.32%), rifampicin; 461 (3.88%) (monorifampicin; 383 (3.22%)), multidrug; 73 (0.61), extensivedrug; 11 (0.09) and others; 37 (0.31). Previous history of tuberculosis was significantly associated with rifampicin resistance and MDR-TB. Family history of tuberculosis contact was strongly associated with rifampicin resistance, MDR-TB and XDR-TB.
Conclusion:
There has been an increasing trend in drug resistance in the recent years, particularly in retreatment cases. This study highlights the pattern of drug resistance and need to detect resistance among all tuberculosis cases, in order to interrupt transmission and control this emerging epidemic.
Related Concept Videos
Pulmonary Tuberculosis V
Latent tuberculosis infection occurs when TB bacteria are present in a person's body, but are not causing illness or symptoms. It is not contagious, and preventive treatment is crucial to avoid the...
Pulmonary Tuberculosis III
The first classification is based on the development of the disease, and it includes the following categories:
Pulmonary Tuberculosis IV
Several diagnostic approaches are used to detect TB. The conventional method is the Tuberculin Skin Test (TST), also known as the Mantoux test. However, this method has...
Pulmonary Tuberculosis I
Causative Organism
The primary infectious agent causing tuberculosis is Mycobacterium tuberculosis, a slow-growing, acid-fast, aerobic rod that exhibits sensitivity to heat and ultraviolet light. Instances of Mycobacterium bovis and Mycobacterium avium contributing to the development of TB infection are rare.
Mode of...
Pulmonary Tuberculosis II
Here is a detailed explanation of its pathophysiology:
Transmission: The process begins when a person inhales droplet nuclei containing M. tuberculosis. These are typically released into the air when an individual with pulmonary or...
Development of Antibiotic Resistance

