A PAN-USR TB Multi-Center Trial
Summary
Tuberculosis (TB) remains a major public health issue and one of the top ten causes of death from a single infectious disease worldwide. China is among the countries with the highest TB burden, ranking third globally for total TB cases and second for drug-resistant TB cases. PAN-TB is an innovative concept in TB treatment, aiming to develop a universal regimen effective for all forms of active TB, including both drug-susceptible and drug-resistant strains. The primary goal of the PAN-TB regimen is to simplify the treatment process, reduce costs, and improve treatment success rates. The ideal Target Regimen Profile (TRP) for PAN-TB includes superior efficacy compared to standard treatment for non-drug-resistant TB, a reduced treatment duration from the current 4-6 months to 2-3 months, and improved safety and tolerability. This project aims to explore a new ultra-short-course treatment regimen for both drug-sensitive (DS-TB) and drug-resistant TB (MDR/RR-TB), which aligns with the latest trends in TB treatment both domestically and internationally. The regimen also has significant practical implications for enhancing treatment efficacy and reducing patient burden. Furthermore, the study will explore the identification of new biomarkers closely linked to treatment outcomes over the course of full-cycle therapy.
Timeline
- Start
- 2025-06-18
- Primary completion
- 2029-01
- Completion
- 2029-12
Publications
- Results Paton NI, Cousins C, Suresh C, Burhan E, Chew KL, Dalay VB, Lu Q, Kusmiati T, Balanag VM, Lee SL, Ruslami R, Pokharkar Y, Djaharuddin I, Sugiri JJR, Veto RS, Sekaggya-Wiltshire C, Avihingsanon A, Sarin R, Papineni P, Nunn AJ, Crook AM; TRUNCATE-TB Trial Team. Treatment Strategy for Rifampin-Susceptible Tuberculosis. N Engl J Med. 2023 Mar 9;388(10):873-887. doi: 10.1056/NEJMoa2212537. Epub 2023 Feb 20.
- Results Conradie F, Bagdasaryan TR, Borisov S, Howell P, Mikiashvili L, Ngubane N, Samoilova A, Skornykova S, Tudor E, Variava E, Yablonskiy P, Everitt D, Wills GH, Sun E, Olugbosi M, Egizi E, Li M, Holsta A, Timm J, Bateson A, Crook AM, Fabiane SM, Hunt R, McHugh TD, Tweed CD, Foraida S, Mendel CM, Spigelman M; ZeNix Trial Team. Bedaquiline-Pretomanid-Linezolid Regimens for Drug-Resistant Tuberculosis. N Engl J Med. 2022 Sep 1;387(9):810-823. doi: 10.1056/NEJMoa2119430.
- Results Nyang'wa BT, Berry C, Kazounis E, Motta I, Parpieva N, Tigay Z, Solodovnikova V, Liverko I, Moodliar R, Dodd M, Ngubane N, Rassool M, McHugh TD, Spigelman M, Moore DAJ, Ritmeijer K, du Cros P, Fielding K; TB-PRACTECAL Study Collaborators. A 24-Week, All-Oral Regimen for Rifampin-Resistant Tuberculosis. N Engl J Med. 2022 Dec 22;387(25):2331-2343. doi: 10.1056/NEJMoa2117166.
- Results Nyang'wa BT, Berry C, Kazounis E, Motta I, Parpieva N, Tigay Z, Moodliar R, Dodd M, Solodovnikova V, Liverko I, Rajaram S, Rassool M, McHugh T, Spigelman M, Moore DA, Ritmeijer K, du Cros P, Fielding K; TB-PRACTECAL team. Short oral regimens for pulmonary rifampicin-resistant tuberculosis (TB-PRACTECAL): an open-label, randomised, controlled, phase 2B-3, multi-arm, multicentre, non-inferiority trial. Lancet Respir Med. 2024 Feb;12(2):117-128. doi: 10.1016/S2213-2600(23)00389-2. Epub 2023 Nov 16.
- Results Zhang Y, Shi W, Zhang W, Mitchison D. Mechanisms of Pyrazinamide Action and Resistance. Microbiol Spectr. 2014 Aug;2(4):MGM2-0023-2013. doi: 10.1128/microbiolspec.MGM2-0023-2013.
- Results Zhang Y, Chiu Chang K, Leung CC, Wai Yew W, Gicquel B, Fallows D, Kaplan G, Chaisson RE, Zhang W. 'Z(S)-MDR-TB' versus 'Z(R)-MDR-TB': improving treatment of MDR-TB by identifying pyrazinamide susceptibility. Emerg Microbes Infect. 2012 Jul;1(7):e5. doi: 10.1038/emi.2012.18. Epub 2012 Jul 25.
- Results Fu L, Zhang X, Xiong J, Sun F, Weng T, Li Y, Zhang P, Li H, Yang Q, Cai Y, Liang H, Chen Q, Wang Z, Liu L, Chen X, Zhang W, Deng G. Selecting an appropriate all-oral short-course regimen for patients with multidrug-resistant or pre-extensive drug-resistant tuberculosis in China: A multicenter prospective cohort study. Int J Infect Dis. 2023 Oct;135:101-108. doi: 10.1016/j.ijid.2023.08.001. Epub 2023 Aug 10.
Drugs
| Evaluation | Drug | Modality | Dose | Route |
|---|---|---|---|---|
| Subject | Bedaquiline | Small molecule | 200 mg | — |
| Comparator | Ethambutol | Small molecule | 15 mg/kg | — |
| Comparator | Ethambutol | Small molecule | 25 mg/kg | — |
| Comparator | Ethambutol | Small molecule | 750 mg | — |
| Comparator | Isoniazid | Small molecule | 4 mg/kg | — |
| Comparator | Isoniazid | Small molecule | 6 mg/kg | — |
| Comparator | Isoniazid | Small molecule | 300 mg | — |
| Subject | Linezolid | Other / unclassified | 600 mg | — |
| Comparator | Moxifloxacin | Small molecule | 400 mg | — |
| Comparator | Pretomanid | Small molecule | 200 mg | — |
| Subject | Pyrazinamide | Small molecule | 20 mg/kg | — |
| Subject | Pyrazinamide | Small molecule | 30 mg/kg | — |
| Subject | Pyrazinamide | Small molecule | 1000 mg | — |
| Subject | Pyrazinamide | Small molecule | 1500 mg | — |
| Subject | Pyrazinamide | Small molecule | 2000 mg | — |
| Comparator | Rifampin | Small molecule | 8 mg/kg | — |
| Comparator | Rifampin | Small molecule | 12 mg/kg | — |
| Comparator | Rifampin | Small molecule | 450 mg | — |
| Comparator | Rifampin | Small molecule | 600 mg | — |
| Comparator | Rifampin | Small molecule | 750 mg | — |
| Subject | SITAFLOXACIN ANHYDROUS | Small molecule | 200 mg | — |