Mosunetuzumab plus polatuzumab vedotin for relapsed/refractory MCL after BTK inhibitor therapy: a phase 2 study
Abstract
Abstract Patients with relapsed/refractory (R/R) mantle cell lymphoma (MCL), especially those progressing after Bruton tyrosine kinase (BTK) inhibitor and/or chimeric antigen receptor (CAR) T-cell therapy and those with high-risk features, have poor outcomes. The bispecific antibody, mosunetuzumab, combined with the antibody-drug conjugate (ADC), polatuzumab vedotin (Mosun-Pola), targets CD20 and CD79b via independent cell-killing mechanisms. In this multicenter phase 2 study, patients with MCL who had received ≥2 previous lines of therapy, including a BTK inhibitor, were enrolled. Patients received outpatient fixed-duration mosunetuzumab subcutaneously (17 cycles), with cycle 1 step-up dosing to mitigate cytokine release syndrome (CRS), and polatuzumab vedotin (1.8 mg/kg IV) for 6 cycles. The primary end point was centrally assessed best objective response rate. A total of 42 patients with a median of 3 previous therapies were enrolled; 26% had previous CAR T-cell therapy. A number of patients had MCL with high-risk features (Ki-67 of ≥50%, 67%; blastoid/pleomorphic morphology, 38%; TP53 aberration, 48%). Objective response occurred in 88.1% of evaluable patients (95% confidence interval [CI], 74.4-96.0) and complete response in 78.6% (95% CI, 63.2-89.7). With a median follow-up of 15.9 months, median progression-free survival was 18.6 months (95% CI, 13.9 to not estimable). Consistent efficacy was observed in high-risk subgroups. CRS occurred in 42.9% of patients and was limited to grade 1/2 events. Mosun-Pola achieved high complete remission rates while maintaining a manageable safety profile in patients with R/R MCL exhibiting high-risk features. This is, to our knowledge, the first bispecific-ADC combination therapy study in MCL. This trial was registered at www.clinicaltrials.gov as #NCT03671018.
Article Details
Authors (23)
Lihua E. Budde
1City of Hope National Medical Center, Duarte, CA
Manali Kamdar
Sarit E. Assouline
3Jewish General Hospital, McGill University, Montreal, QC, Canada
Julio C. Chavez
4Moffitt Cancer Center, Tampa, FL
Nilanjan Ghosh
5Levine Cancer Institute/Advocate Health, Wake Forest University School of Medicine, Charlotte, NC
Thomas A. Ollila
6Division of Hematology and Oncology, Department of Medicine, Brown University, Providence, RI
Daniel J. Hodson
7Department of Hematology, Cambridge Stem Cell Institute, University of Cambridge, Cambridge, United Kingdom
Dipenkumar Modi
8Department of Oncology, Barbara Ann Karmanos Cancer Institute, Wayne State University, Detroit, MI
Mariana Bastos-Oreiro
9Department of Hematology, Gregorio Marañón Research Institute, Madrid, Spain
Seema G. Naik
10Department of Medicine, Penn State University College of Medicine, Hershey, PA
Shazia K. Nakhoda
11Fox Chase Cancer Center, Philadelphia, PA
Connie Lee Batlevi
12Genentech, Inc, South San Francisco, CA
Jue Wang
Beijing National Laboratory for Molecular Sciences, College of Chemistry and Molecular Engineering
Sneha Makadia
12Genentech, Inc, South San Francisco, CA
Antonia Kwan
12Genentech, Inc, South San Francisco, CA
Elicia Penuel
12Genentech, Inc, South San Francisco, CA
Jing Jing
Hao Wu
Wahib Ead
12Genentech, Inc, South San Francisco, CA
Song Pham
13Hoffmann-La Roche Ltd, Mississauga, ON, Canada
Iris To
12Genentech, Inc, South San Francisco, CA
Michael C. Wei
12Genentech, Inc, South San Francisco, CA
Michael L. Wang
14The University of Texas MD Anderson Cancer Center, Houston, TX