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Changing prevalence and resistance patterns in children with drug-resistant tuberculosis in Mumbai
1a Pediatric TB Clinic , B.J. Wadia Hospital For Children , Mumbai , India.
Insights
Drug-resistant tuberculosis (DR TB) in children is rising, with significant increases in resistance to fluoroquinolones and ethionamide. Increased adult surveillance is crucial, as childhood DR TB often stems from adult transmission.
Area of Science:
- Pediatric infectious diseases
- Mycobacterial resistance patterns
- Public health surveillance
Background:
- Rising prevalence of drug-resistant (DR) tuberculosis (TB) in children globally.
- Increasing rates of pre-extensively drug-resistant (XDR) and extensively drug-resistant (XDR) TB in Indian children.
- Need to understand evolving resistance trends in pediatric TB cases.
Purpose of the Study:
- To assess changes in the prevalence of DR TB among children in Mumbai.
- To investigate the evolving patterns of drug resistance in pediatric TB cases.
- To identify trends in resistance to specific anti-TB drugs.
Main Methods:
- Retrospective analysis of 1311 pediatric TB patients from April 2007 to March 2013.
- Drug susceptibility testing (DST) performed on Mycobacterium tuberculosis isolates from various sample types (body fluids, respiratory secretions) and contacts.
- Evaluation of DR TB prevalence and resistance types yearly and in pre- and post-2010 periods.
Main Results:
- Overall DR TB prevalence was 6.6%, increasing from 5.6% pre-2010 to 7% post-2010.
- Significant increase in fluoroquinolone resistance (39.1% to 93.7%) and ethionamide resistance (26.1% to 49.2%).
- First-line drug resistance (isoniazid, rifampicin) remained high, while resistance to pyrazinamide, ethambutol, and streptomycin showed minimal change.
Conclusions:
- Growing resistance to second-line anti-TB drugs, especially fluoroquinolones and ethionamide, is a major concern.
- Urgent need to prevent inappropriate use of anti-TB drugs for non-TB infections.
- Enhanced surveillance for DR TB in adults is critical, as pediatric DR TB is often linked to adult transmission.
Background:
The prevalence of drug-resistant (DR) tuberculosis (TB) in children is increasing. Although, in India, multi-drug-resistant (MDR) TB rates have been relatively stable, the number of children with pre-extensively drug-resistant and extensively drug-resistant (XDR) TB is increasing.
Aim:
To determine whether the prevalence of DR TB in children in Mumbai is changing and to study the evolving patterns of resistance.
Methods:
A retrospective study was undertaken in 1311 paediatric patients referred between April 2007 and March 2013 to the Paediatric TB clinic at B. J. Wadia Hospital for Children, Mumbai. Children were defined as having DR TB on the basis of drug susceptibility testing (DST) of Mycobacterium tuberculosis grown on culture of body fluids (in the case of extra pulmonary TB) or from gastric lavage/bronchi-alveolar lavage/sputum in patients with pulmonary TB or from DST of the contacts. The prevalence of DR TB was calculated and the type of DR was evaluated yearly and in the pre-2010 and post-2010 eras.
Results:
The overall prevalence of DR TB was 86 (6.6%) with an increase from 23 (5.6%) patients pre-2010 to 63 (7%) post-2010 (P = 0.40). Nine (10.4%) patients were diagnosed on the basis of contact with a parent with DR TB. Overall fluoroquinolone resistance increased from 9 (39.1%) pre-2010 to 59 (93.7%) post-2010 (P = 0.0001): moxifloxacin resistance increased from 2 (8.7%) to 29 (46%) (P = 0.0018) and ofloxacin resistance increased from 7 (30.4%) to 30 (47.6%) (P = 0.14). Ethionamide resistance also increased from 6 (26.1%) to 31 (49.2%) (P = 0.04), aminoglycoside resistance was one (4.3%) pre-2010 and 12 (19%) post-2010 (P = 0.17) and resistance remained virtually the same for both amikacin [0 pre-2010 and 6 (9.5%) after 2010] and kanamycin [one (4.3%) pre- and 6 (9.5%) post-2010]. Of the first-line drugs, resistance remained the same for isoniazid [23 (100%) to 61 (96.8%)], rifampicin [22 (95.7%) to 51 (80.9%),P = 0.17], pyrazinamide [15 (65.2%) to 35 (55.6%), P = 0.47], ethambutol [14 (60.9%) to 38 (60.3%), P = 1.00] and streptomycin [19 (82.6%) to 50 (79.4%), P = 1.00]. Resistance to PAS remained unchanged [2 (8.7%) to 5 (7.9%), P = 1.00].
Conclusion:
There is increasing resistance to second-line anti-tuberculosis (ATT) drugs, particularly flouroquinolones and ethionamide. Hence, there is an urgent need to avoid the use of ATT drugs for non-tuberculous infection and to increase surveillance for DR TB in adults as MDR TB in children is usually through contact with an adult with infectious MDR TB.
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