2R2: Higher Dose Rifampin for 2 Months vs Standard Dose Rifampin for Latent TB.
Summary
Rationale: Shorter regimens of high dose daily rifampin may be safe, and as effective as the standard rifampin regimen when taken for 4 months to treat latent TB (LTBI). However, there is insufficient evidence on the optimal dose of rifampin that has similar efficacy as the standard 4-month rifampin regimen without jeopardizing safety or affecting completion rates. Objectives: The general purpose of this study is to determine if rifampin at double or triple the standard dose for 2 months is as safe and effective as the standard dose of rifampin when taken for 4 months to treat latent tuberculosis (TB). Treatment: Persons who need treatment for latent TB, will be given rifampin, either at the standard dose (10mg/kg/day) for 4 months (control arm); or at double dose (20mg/kg/day) for 2 months (intervention arm 1); or at triple dose (30mg/kg/day) for 2 months (intervention arm 2). Design: This is 1:1:1 randomized, phase 2b, partially blind, controlled trial. The two higher doses (intervention arms) will be administered double-blind: participants and providers will be aware of the duration of their regimen, but they will both remain blinded to the specific dose (i.e. 20 or 30 mg/kg/day) for those randomized to 2-months regimens. All members of the same household of a patient with newly diagnosed active pulmonary TB will be randomized together (i.e. cluster randomized). Population and setting: Adults and children aged 10 years and above, who have latent TB infection and are recommended by their doctor to take treatment for latent TB can participate in the study. The planned number of persons with latent TB to recruit is about 1359 in total (or about 453 for each of the three arms). The study will take place in 6 sites: four in Canada (Calgary, Edmonton, Montreal and Vancouver), one in Indonesia (Bandung) and one in Viet Nam (1 clinic in Ho Chi Min City and 3 clinics in Ha Noi). Outcomes: Primary outcomes are: 1) Treatment completion and 2) Safety (i.e. grade 3-5 adverse events). Secondary outcomes are: 1) Safety (i.e. grade 1-2 adverse events) and 2) Efficacy (i.e. rates of active TB in the 26 months post-randomization). More information on how outcomes are defined is provided in the detailed description below.
Timeline
- Start
- 2019-09-20
- Primary completion
- 2023-01-31
- Completion
- 2024-12-31
Publications
- Background Aarnoutse RE, Kibiki GS, Reither K, Semvua HH, Haraka F, Mtabho CM, Mpagama SG, van den Boogaard J, Sumari-de Boer IM, Magis-Escurra C, Wattenberg M, Logger JGM, Te Brake LHM, Hoelscher M, Gillespie SH, Colbers A, Phillips PPJ, Plemper van Balen G, Boeree MJ; PanACEA Consortium. Pharmacokinetics, Tolerability, and Bacteriological Response of Rifampin Administered at 600, 900, and 1,200 Milligrams Daily in Patients with Pulmonary Tuberculosis. Antimicrob Agents Chemother. 2017 Oct 24;61(11):e01054-17. doi: 10.1128/AAC.01054-17. Print 2017 Nov.
- Background Boeree MJ, Heinrich N, Aarnoutse R, Diacon AH, Dawson R, Rehal S, Kibiki GS, Churchyard G, Sanne I, Ntinginya NE, Minja LT, Hunt RD, Charalambous S, Hanekom M, Semvua HH, Mpagama SG, Manyama C, Mtafya B, Reither K, Wallis RS, Venter A, Narunsky K, Mekota A, Henne S, Colbers A, van Balen GP, Gillespie SH, Phillips PPJ, Hoelscher M; PanACEA consortium. High-dose rifampicin, moxifloxacin, and SQ109 for treating tuberculosis: a multi-arm, multi-stage randomised controlled trial. Lancet Infect Dis. 2017 Jan;17(1):39-49. doi: 10.1016/S1473-3099(16)30274-2. Epub 2016 Oct 26.
- Background Dian S, Yunivita V, Ganiem AR, Pramaesya T, Chaidir L, Wahyudi K, Achmad TH, Colbers A, Te Brake L, van Crevel R, Ruslami R, Aarnoutse R. Double-Blind, Randomized, Placebo-Controlled Phase II Dose-Finding Study To Evaluate High-Dose Rifampin for Tuberculous Meningitis. Antimicrob Agents Chemother. 2018 Nov 26;62(12):e01014-18. doi: 10.1128/AAC.01014-18. Print 2018 Dec.
- Background Jindani A, Borgulya G, de Patino IW, Gonzales T, de Fernandes RA, Shrestha B, Atwine D, Bonnet M, Burgos M, Dubash F, Patel N, Checkley AM, Harrison TS, Mitchison D; International Consortium for Trials of Chemotherapeutic Agents in Tuberculosis, St George's University of London. A randomised Phase II trial to evaluate the toxicity of high-dose rifampicin to treat pulmonary tuberculosis. Int J Tuberc Lung Dis. 2016 Jun;20(6):832-8. doi: 10.5588/ijtld.15.0577.
- Background Ruslami R, Ganiem AR, Dian S, Apriani L, Achmad TH, van der Ven AJ, Borm G, Aarnoutse RE, van Crevel R. Intensified regimen containing rifampicin and moxifloxacin for tuberculous meningitis: an open-label, randomised controlled phase 2 trial. Lancet Infect Dis. 2013 Jan;13(1):27-35. doi: 10.1016/S1473-3099(12)70264-5. Epub 2012 Oct 25.
- Background Ruslami R, Nijland HM, Alisjahbana B, Parwati I, van Crevel R, Aarnoutse RE. Pharmacokinetics and tolerability of a higher rifampin dose versus the standard dose in pulmonary tuberculosis patients. Antimicrob Agents Chemother. 2007 Jul;51(7):2546-51. doi: 10.1128/AAC.01550-06. Epub 2007 Apr 23.
- Background Swindells S, Ramchandani R, Gupta A, Benson CA, Leon-Cruz J, Mwelase N, Jean Juste MA, Lama JR, Valencia J, Omoz-Oarhe A, Supparatpinyo K, Masheto G, Mohapi L, da Silva Escada RO, Mawlana S, Banda P, Severe P, Hakim J, Kanyama C, Langat D, Moran L, Andersen J, Fletcher CV, Nuermberger E, Chaisson RE; BRIEF TB/A5279 Study Team. One Month of Rifapentine plus Isoniazid to Prevent HIV-Related Tuberculosis. N Engl J Med. 2019 Mar 14;380(11):1001-1011. doi: 10.1056/NEJMoa1806808.
- Background Velasquez GE, Brooks MB, Coit JM, Pertinez H, Vargas Vasquez D, Sanchez Garavito E, Calderon RI, Jimenez J, Tintaya K, Peloquin CA, Osso E, Tierney DB, Seung KJ, Lecca L, Davies GR, Mitnick CD. Efficacy and Safety of High-Dose Rifampin in Pulmonary Tuberculosis. A Randomized Controlled Trial. Am J Respir Crit Care Med. 2018 Sep 1;198(5):657-666. doi: 10.1164/rccm.201712-2524OC.
- Background Yunivita V, Dian S, Ganiem AR, Hayati E, Hanggono Achmad T, Purnama Dewi A, Teulen M, Meijerhof-Jager P, van Crevel R, Aarnoutse R, Ruslami R. Pharmacokinetics and safety/tolerability of higher oral and intravenous doses of rifampicin in adult tuberculous meningitis patients. Int J Antimicrob Agents. 2016 Oct;48(4):415-21. doi: 10.1016/j.ijantimicag.2016.06.016. Epub 2016 Jul 26.
- Ruslami R, Fregonese F, Apriani L, Barss L, Bedingfield N, Chiang V, Cook VJ, Fisher D, Flores E, Fox GJ, Johnston J, Lim RK, Long R, Paulsen C, Nguyen TA, Nhung NV, Gibson D, Valiquette C, Benedetti A, Menzies D. High-dose, short-duration versus standard rifampicin for tuberculosis preventive treatment: a partially blinded, three-arm, non-inferiority, randomised, controlled trial. Lancet Respir Med. 2024 Jun;12(6):433-443. doi: 10.1016/S2213-2600(24)00076-6. Epub 2024 Mar 26.
- Fregonese F, Apriani L, Barss L, Benedetti A, Cook V, Fisher D, Fox GJ, Johnston J, Long R, Nguyen TA, Nguyen VN, Ruslami R, Menzies D. High dose rifampin for 2 months vs standard dose rifampin for 4 months, to treat TB infection: Protocol of a 3-arm randomized trial (2R2). PLoS One. 2023 Feb 2;18(2):e0278087. doi: 10.1371/journal.pone.0278087. eCollection 2023.
Drugs
| Evaluation | Drug | Modality | Dose | Route |
|---|---|---|---|---|
| Subject | Rifampin | Small molecule | 10 mg/kg | Oral |
| Subject | Rifampin | Small molecule | 20 mg/kg | Oral |
| Subject | Rifampin | Small molecule | 30 mg/kg | Oral |