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Prevalence and Genetic Analysis of Isoniazid-Resistant Tuberculosis in Eastern Uttar Pradesh, India
Nandini Singh1, Amresh K Singh2, Sarita Sarita2
1Zoology, Deen Dayal Upadhyaya Gorakhpur University, Gorakhpur, IND.
Abstract:
Background Tuberculosis (TB) is an airborne bacterial infection caused by Mycobacterium tuberculosis. It continues to pose a major threat, India bore the highest TB burden accounting for 27% of global cases in 2022. The emergence of drug resistance, especially primary medications such as isoniazid (INH), hinders treatment and containment efforts. Genetic alterations in the katG and inhA genes are the main contributors to INH resistance, resulting in high and low levels of resistance, respectively. Objectives This study investigates the genetic mutational patterns of INH resistance in TB cases, focusing on their prevalence and association with demographical, geographical, and clinical features. Methods A cross-sectional prospective study was conducted in our tertiary care center located in eastern Uttar Pradesh (UP), India, from June 2022 to May 2024. A total of 6,954 highly suspected TB cases, including pulmonary and extra-pulmonary samples, were evaluated. After fluorescence microscopy, line probe assay (LPA) was used to analyze 1,998 (28.73%) sputum-positive samples for katG and inhA mutations, which confer INH resistance. Results Among 1,998 sputum-positive samples tested with LPA, valid results were obtained for 1,993 cases. Of these, 131 (6.57%) showed INH resistance, with high-level INH resistance detected in 102 (77.86%) cases, predominantly linked to katG MUT1 (S315T1) mutations. Low-level resistance was identified in 29 (22.14%) cases, primarily associated with inhA MUT1 (C-15T) mutations. Among INH resistance cases, females were significantly younger than males (mean age 28.49±14.16 vs. 40.65±16.03; p-value<0.001), but male cases were higher than female (86[65.64%] vs. 45[34.35%]; p-value=0.039). However, age distribution was comparable between high and low-level INH resistance. Geographically, Gorakhpur emerged as a hotspot for high-level resistance 40/102 (39.21%), while Deoria had the highest prevalence of low-level resistance 9/29 (34.48%). Conclusion Our study identified the prevalence of katGmutations in high-level and inhA mutations in low-level INH resistance in eastern UP, India. This highlights the need for region-specific public health strategies, including better joint management of comorbidities and enhanced diagnostic capacity to address the burden of drug-resistant TB in this high-prevalence region.
Insights
Drug-resistant tuberculosis (TB) is a major concern in India. This study found that isoniazid (INH) resistance is linked to specific gene mutations, with katG mutations causing high resistance and inhA mutations causing low resistance.
Area of Science:
- Microbiology and Infectious Diseases
- Genetics and Genomics
- Public Health and Epidemiology
Background:
- Tuberculosis (TB) remains a significant global health threat, with India bearing the highest burden.
- Isoniazid (INH) resistance, driven by mutations in katG and inhA genes, complicates TB treatment and control.
- Understanding these genetic patterns is crucial for effective TB management strategies.
Purpose of the Study:
- To investigate the prevalence and patterns of genetic mutations associated with INH resistance in TB cases.
- To explore the association of these mutations with demographic, geographic, and clinical features.
- To inform targeted public health interventions in high-prevalence regions.
Main Methods:
- A cross-sectional prospective study involving 6,954 suspected TB cases in eastern Uttar Pradesh, India.
- Line probe assay (LPA) used to analyze 1,998 sputum-positive samples for katG and inhA mutations.
- Analysis of demographic and geographic data for INH-resistant cases.
Main Results:
- Out of 1,993 valid LPA results, 131 cases (6.57%) exhibited INH resistance.
- High-level INH resistance was predominantly associated with katG MUT1 (S315T1) mutations (102 cases).
- Low-level INH resistance was primarily linked to inhA MUT1 (C-15T) mutations (29 cases).
- Females with INH resistance were significantly younger than males.
- Gorakhpur and Deoria identified as hotspots for high-level and low-level INH resistance, respectively.
Conclusions:
- The study confirms the association of katG mutations with high-level and inhA mutations with low-level INH resistance in eastern UP.
- Findings underscore the need for region-specific public health strategies to combat drug-resistant TB.
- Enhanced diagnostic capacity and management of comorbidities are essential for controlling TB in this high-burden area.
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