Trilaciclib (G1T28), a CDK 4/6 Inhibitor, in Combination With Etoposide and Carboplatin in Extensive Stage Small Cell Lung Cancer (SCLC)
Summary
This is a study to investigate the potential clinical benefit of trilaciclib (G1T28) in preserving the bone marrow and the immune system, and enhancing chemotherapy antitumor efficacy when administered prior to carboplatin and etoposide in first line treatment for patients with newly diagnosed extensive-stage SCLC. The study consists of 2 parts: a limited open-label, dose-finding portion (Part 1), and a randomized double-blind portion (Part 2). Both parts include 3 study phases: Screening Phase, Treatment Phase, and Survival Follow-up Phase. The Treatment Phase begins on the day of first dose with study treatment and completes at the Post-Treatment Visit. Approximately, 90 patients will be enrolled in the study; 20 patients in the Part 1 and 70 patients in the Part 2 portion.
Timeline
- Start
- 2015-06-26
- Primary completion
- 2017-07-03
- Completion
- 2019-02-22
Publications
- Hussein M, Maglakelidze M, Richards DA, Sabatini M, Gersten TA, Lerro K, Sinielnikov I, Spira A, Pritchett Y, Antal JM, Malik R, Beck JT. Myeloprotective Effects of Trilaciclib Among Patients with Small Cell Lung Cancer at Increased Risk of Chemotherapy-Induced Myelosuppression: Pooled Results from Three Phase 2, Randomized, Double-Blind, Placebo-Controlled Studies. Cancer Manag Res. 2021 Aug 9;13:6207-6218. doi: 10.2147/CMAR.S313045. eCollection 2021.
- Ferrarotto R, Anderson I, Medgyasszay B, Garcia-Campelo MR, Edenfield W, Feinstein TM, Johnson JM, Kalmadi S, Lammers PE, Sanchez-Hernandez A, Pritchett Y, Morris SR, Malik RK, Csoszi T. Trilaciclib prior to chemotherapy reduces the usage of supportive care interventions for chemotherapy-induced myelosuppression in patients with small cell lung cancer: Pooled analysis of three randomized phase 2 trials. Cancer Med. 2021 Sep;10(17):5748-5756. doi: 10.1002/cam4.4089. Epub 2021 Aug 18.
- Li C, Hart L, Owonikoko TK, Aljumaily R, Rocha Lima CM, Conkling PR, Webb RT, Jotte RM, Schuster S, Edenfield WJ, Smith DA, Sale M, Roberts PJ, Malik RK, Sorrentino JA. Trilaciclib dose selection: an integrated pharmacokinetic and pharmacodynamic analysis of preclinical data and Phase Ib/IIa studies in patients with extensive-stage small cell lung cancer. Cancer Chemother Pharmacol. 2021 May;87(5):689-700. doi: 10.1007/s00280-021-04239-9. Epub 2021 Feb 17.
- Lai AY, Sorrentino JA, Dragnev KH, Weiss JM, Owonikoko TK, Rytlewski JA, Hood J, Yang Z, Malik RK, Strum JC, Roberts PJ. CDK4/6 inhibition enhances antitumor efficacy of chemotherapy and immune checkpoint inhibitor combinations in preclinical models and enhances T-cell activation in patients with SCLC receiving chemotherapy. J Immunother Cancer. 2020 Oct;8(2):e000847. doi: 10.1136/jitc-2020-000847.
- Weiss JM, Csoszi T, Maglakelidze M, Hoyer RJ, Beck JT, Domine Gomez M, Lowczak A, Aljumaily R, Rocha Lima CM, Boccia RV, Hanna W, Nikolinakos P, Chiu VK, Owonikoko TK, Schuster SR, Hussein MA, Richards DA, Sawrycki P, Bulat I, Hamm JT, Hart LL, Adler S, Antal JM, Lai AY, Sorrentino JA, Yang Z, Malik RK, Morris SR, Roberts PJ, Dragnev KH; G1T28-02 Study Group. Myelopreservation with the CDK4/6 inhibitor trilaciclib in patients with small-cell lung cancer receiving first-line chemotherapy: a phase Ib/randomized phase II trial. Ann Oncol. 2019 Oct 1;30(10):1613-1621. doi: 10.1093/annonc/mdz278.
Drugs
| Evaluation | Drug | Modality | Dose | Route |
|---|---|---|---|---|
| Subject | Trilaciclib | Unknown | 200 mg/m2 | Intravenous |
| Subject | Trilaciclib | Unknown | 240 mg/m2 | Intravenous |
| Subject | Trilaciclib | Unknown | 280 mg/m2 | Intravenous |
| Background | Carboplatin | Small molecule | — | — |
| Background | Etoposide | Small molecule | — | — |