Evaluation of SQ109, High-dose Rifampicin, and Moxifloxacin in Adults With Smear-positive Pulmonary TB in a MAMS Design
Summary
This study is a multiple-arm, multiple-stage (MAMS), phase 2, open label, randomized, controlled clinical trial that will compare the efficacy and safety of four experimental four drug regimens with a standard control regimen in patients with smear positive, pulmonary tuberculosis (TB). Patients will be randomly allocated to the control or one of the four experimental regimens in the ratio 2:1:1:1:1. Experimental regimens will be given for 12 weeks. Thereafter, participants in the experimental arms will receive continuation phase treatment for 14 weeks containing standard-dose rifampicin and isoniazid. All participants will receive 25 mg of vitamin B6 (pyridoxine) with every dose of INH to prevent INH-related neuropathy. Interim analyses will be conducted during the trial for efficacy, with the aim of identifying experimental arms that perform below a pre-specified efficacy threshold; these arms will then be stopped from further recruitment. Following the first scheduled interim analysis on March 3rd, the Trial Steering Committee (TSC) followed a recommendation of the independent data monitoring committee (IDMC) and has stopped the enrolment into two of the arms in the MAMS-TB trial: HRZQ and HR20ZQ, based on these arms not meeting the pre-specified gain in efficacy over control. Importantly, there was no safety concern that prompted stopping recruitment to these arms. They recommended that recruitment to arm 2 (HRZQ) and 3 (HR20ZQ) be terminated as there was insufficient evidence that these regimens could shorten treatment. Importantly, there was no evidence that either arm was inferior to standard treatment (the control arm) with regards to efficacy. There was, however, sufficient evidence that the other intervention arms HR35ZE and HR20ZM could shorten treatment to continue enrolling patients.
Timeline
- Start
- 2013-04
- Primary completion
- 2014-09
- Completion
- 2015-03
Publications
- Zhang N, Savic RM, Boeree MJ, Peloquin CA, Weiner M, Heinrich N, Bliven-Sizemore E, Phillips PPJ, Hoelscher M, Whitworth W, Morlock G, Posey J, Stout JE, Mac Kenzie W, Aarnoutse R, Dooley KE; Tuberculosis Trials Consortium (TBTC) and Pan African Consortium for the Evaluation of Antituberculosis Antibiotics (PanACEA) Networks. Optimising pyrazinamide for the treatment of tuberculosis. Eur Respir J. 2021 Jul 20;58(1):2002013. doi: 10.1183/13993003.02013-2020. Print 2021 Jul.
- 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.
Drugs
| Evaluation | Drug | Modality | Dose | Route |
|---|---|---|---|---|
| Subject | Ethambutol | Small molecule | 15 mg/kg | Oral |
| Subject | Ethambutol | Small molecule | 20 mg/kg | Oral |
| Subject | Ethambutol | Small molecule | 275 mg | Oral |
| Comparator | Moxifloxacin | Small molecule | 400 mg | Oral |
| Subject | Rifampin | Small molecule | 10 mg/kg | Oral |
| Subject | Rifampin | Small molecule | 20 mg/kg | Oral |
| Subject | Rifampin | Small molecule | 35 mg/kg | Oral |
| Subject | SQ109 | Small molecule | 300 mg | Oral |
| Background | Isoniazid | Small molecule | 5 mg/kg | Oral |
| Background | Isoniazid | Small molecule | 75 mg | Oral |
| Background | Pyrazinamide | Small molecule | 25 mg/kg | Oral |
| Background | Pyrazinamide | Small molecule | 400 mg | Oral |