Person: Hurtado, Rocio
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Publication Aggressive Regimens for Multidrug-Resistant Tuberculosis Decrease All-Cause Mortality
(Public Library of Science, 2013) Mitnick, Carole; Franke, Molly; Rich, Michael; Alcantara Viru, Felix A.; Appleton, Sasha C.; Atwood, Sidney S.; Bayona, Jaime; Bonilla, Cesar; Chalco, Katiuska; Fraser, Hamish S. F.; Furin, Jennifer; Guerra, Dalia; Hurtado, Rocio; Joseph, Keith; Llaro, Karim; Mestanza, Lorena; Mukherjee, Joia; Muñoz, Maribel; Palacios, Eda; Sanchez, Epifanio; Seung, Kwonjune; Shin, Sonya; Sloutsky, Alexander; Tolman, Arielle W.; Becerra, MercedesRationale: A better understanding of the composition of optimal treatment regimens for multidrug-resistant tuberculosis (MDR-TB) is essential for expanding universal access to effective treatment and for developing new therapies for MDR-TB. Analysis of observational data may inform the definition of an optimized regimen. Objectives: This study assessed the impact of an aggressive regimen–one containing at least five likely effective drugs, including a fluoroquinolone and injectable–on treatment outcomes in a large MDR-TB patient cohort. Methods: This was a retrospective cohort study of patients treated in a national outpatient program in Peru between 1999 and 2002. We examined the association between receiving an aggressive regimen and the rate of death. Measurements and Main Results: In total, 669 patients were treated with individualized regimens for laboratory-confirmed MDR-TB. Isolates were resistant to a mean of 5.4 (SD 1.7) drugs. Cure or completion was achieved in 66.1% (442) of patients; death occurred in 20.8% (139). Patients who received an aggressive regimen were less likely to die (crude hazard ratio [HR]: 0.62; 95% CI: 0.44,0.89), compared to those who did not receive such a regimen. This association held in analyses adjusted for comorbidities and indicators of severity (adjusted HR: 0.63; 95% CI: 0.43,0.93). Conclusions: The aggressive regimen is a robust predictor of MDR-TB treatment outcome. TB policy makers and program directors should consider this standard as they design and implement regimens for patients with drug-resistant disease. Furthermore, the aggressive regimen should be considered the standard background regimen when designing randomized trials of treatment for drug-resistant TB.
Publication Time to Culture Conversion and Regimen Composition in Multidrug-Resistant Tuberculosis Treatment
(Public Library of Science, 2014) Tierney, Dylan B.; Franke, Molly; Becerra, Mercedes; Alcántara Virú, Félix A.; Bonilla, César A.; Sánchez, Epifanio; Guerra, Dalia; Muñoz, Maribel; Llaro, Karim; Palacios, Eda; Mestanza, Lorena; Hurtado, Rocio; Furin, Jennifer J.; Shin, Sonya; Mitnick, CaroleSputum cultures are an important tool in monitoring the response to tuberculosis treatment, especially in multidrug-resistant tuberculosis. There has, however, been little study of the effect of treatment regimen composition on culture conversion. Well-designed clinical trials of new anti-tuberculosis drugs require this information to establish optimized background regimens for comparison. We conducted a retrospective cohort study to assess whether the use of an aggressive multidrug-resistant tuberculosis regimen was associated with more rapid sputum culture conversion. We conducted Cox proportional-hazards analyses to examine the relationship between receipt of an aggressive regimen for the 14 prior consecutive days and sputum culture conversion. Sputum culture conversion was achieved in 519 (87.7%) of the 592 patients studied. Among patients who had sputum culture conversion, the median time to conversion was 59 days (IQR: 31–92). In 480 patients (92.5% of those with conversion), conversion occurred within the first six months of treatment. Exposure to an aggressive regimen was independently associated with sputum culture conversion during the first six months of treatment (HR: 1.36; 95% CI: 1.10, 1.69). Infection with human immunodeficiency virus (HR 3.36; 95% CI: 1.47, 7.72) and receiving less exposure to tuberculosis treatment prior to the individualized multidrug-resistant tuberculosis regimen (HR: 1.58; 95% CI: 1.28, 1.95) were also independently positively associated with conversion. Tachycardia (HR: 0.77; 95% CI: 0.61, 0.98) and respiratory difficulty (HR: 0.78; 95% CI: 0.62, 0.97) were independently associated with a lower rate of conversion. This study is the first demonstrating that the composition of the multidrug-resistant tuberculosis treatment regimen influences the time to culture conversion. These results support the use of an aggressive regimen as the optimized background regimen in trials of new anti-TB drugs.