Patient characteristics, toxicity, and response after real world administration of obecabtagene autoleucel and brexucabtagene autoleucel for relapsed acute lymphoblastic leukemia: A rocca analysis
Abstract
Abstract Introduction Obecabtagene autoleucel (obe-cel) and brexucabtagene autoleucel (brexu-cel) are CD19 targeted chimeric antigen receptor T cell (CAR-T) therapies, approved for the treatment of adults with relapsed/refractory (r/r) B-cell acute lymphoblastic leukemia (ALL). Mechanistic differences between obe-cel and brexu-cel including differing costimulatory domains (4-1BB vs. CD28), CD19 binding domains (intermediate vs. high affinity) and split dose (Days 1 and 10) vs. single infusion may impact in-vivo cellular kinetics that translate into variant clinical outcomes. In pivotal trials, obe-cel resulted in lower rates of severe cytokine release syndrome (CRS) and immune effector cell associated neurotoxicity syndrome (ICANS) compared to brexu-cel with comparable efficacy (Roddie et al., NEJM 2025; Shah et al., Lancet 2021). Real-world utilization and outcomes with obe-cel are unknown given the relatively recent approval. Methods The ROCCA database, comprising real world data from patients (pts) with r/r ALL treated at 40 North American institutions was utilized in this analysis. Pts with r/r ALL were eligible if they were apheresed for obe-cel since its approval (11/8/2024) or brexu-cel over a comparable period (since 8/1/24) and had at least 30 days of follow up. Data cut off was 7/15/2025. CRS/ICANS were graded per ASTCT criteria. Measurable residual disease (MRD) was assessed by flow cytometry and/or next generation sequencing per institutional standards. Results 38 pts have undergone apheresis for obe-cel (36 infused, all received both infusions) and 54 (53 infused) for brexu-cel over the study period. Pts in the obe-cel and brexu-cel cohorts had the following baseline characteristics: median age, 47 vs. 39 years; ECOG 2+, 15% vs. 26%; Ph+ disease, 24% vs 13%; KMT2Ar, 0 vs. 4%; TP53m, 11% vs 11%, and hypodiploid karyotype, 5% vs 6%. The following prior treatment patterns were observed: median lines of therapy before CAR-T 3 vs. 3; prior SCT 24% vs. 30%, prior blinatumomab 68% vs. 46%, prior inotuzumab 45% vs. 30%. At apheresis, active disease (>5% bone marrow blasts) was present in 47% vs. 55% of obe-cel and brexu-cel pts, respectively; the remainder were in CR (with 18% vs. 22% in MRD- CR, respectively). Among obe-cel (n= 35 [92% of cohort]) and brexu-cel (21 [38% of cohort] pts with disease re-assessment prior to lymphodepletion (LD), 31% vs. 43% had active BM disease, respectively; few pts (24% vs. 17%) had >20% marrow disease burden prior to LD. CAR-mediated toxicity differed significantly between the cohorts. CRS occurred in 56% of obe-cel pts compared to 94% of brexu-cel pts (p < 0.0001). There were no Gr3+ CRS events among the obe-cel pts; 3 (6%) brexu-cel pts had Gr3+ CRS (p = 0.27). ICANS occurred in 17% of obe-cel pts vs. 51% of brexu-cel pts (p = 0.001). Gr3+ ICANS occurred in 6% of obe-cel vs. 32% of brexu-cel pts (p = 0.0027). Among the obe-cel pts, CRS occurred in 31% after the first infusion and 46% after the second; ICANS occurred in 3% after the first infusion and 15% after the second. Prolonged Gr4 neutropenia (ANC < 500 cells/uL beyond day 30 from infusion) occurred in 24% of obe-cel vs. 28% of brexu-cel pts (p = 0.73). Deaths within the first 28 days of infusion occurred in 0 obe-cel pts and 4 brexu-cel pts (2 of infection, 1 of infection/brain bleed, and 1 of liver failure in the setting of Gr4 CRS and HLH). Response rates were high and did not significantly differ between cohorts (p = 0.85). Among the 31 obe-cel pts with available response data, 25 (81%) achieved an MRD- CR/CRi, 3 (10%) had an MRD+ CR/CRi, 2 (6%) had a CR/CRi with unknown MRD, and 1 (3%) did not respond. Among 41 brexu-cel pts with available response data, 33 (80%) had an MRD- CR/CRi, 4 (10%) an MRD+ CR/CRi, and 4 (10%) CR/CRi with unknown MRD. Conclusion Pts selected for obe-cel apheresis were similar to those for brexu-cel over the study period (noting that not all centers had access to obe-cel during this time). Similar to clinical trial results, obe-cel was associated with lower rates of CRS/ICANS. Rates of MRD-negative CR were high and did not differ between cohorts. A larger sample and longer follow up are required for further analyses; we anticipate a cohort of ~75 obe-cel treated pts by the annual meeting and will provide updated data.
Article Details
Authors (50)
Yannis Valtis
5Memorial Sloan Kettering Cancer Center, New York City, United States
Karamjeet Sandhu
11Department of Hematology and Hematopoietic Cell Transplantation, Gehr Family Center for Leukemia Research, City of Hope, Duarte, CA
Rawan Faramand
24Moffitt Cancer Center and Research Institute, Tampa, FL
Amy Zhang
Katharine Miller
3Quantitative Sciences Unit, Stanford University School of Medicine, Palo Alto, CA
LaQuisa Hill
9Section of Hematology and Oncology, Department of Medicine, Baylor College of Medicine, Houston, TX
Ibrahim Muhsen
10Baylor College of Medicine, Houston, United States
Tamer Othman
36Hematology, Blood and Marrow Transplantation, and Cellular Therapy Program, University of California San Francisco, San Francisco, CA
Marlise Luskin
15Dana-Farber Cancer Institute, Boston, United States
Evan Chen
Caspian Oliai
Georgia Lill
35UCLA Medical Center, Los Angeles, United States
Ryan Cassaday
1University of Washington, Medicine (Hematology/Oncology), Seattle, United States
Noam Kopmar
17University of Washington, Seattle, United States
Aaron Logan
1University of California, San Francisco, Hematology, Blood and Marrow Transplantation, and Cellular Therapy Program, San Francisco, United States
Matthew Connor
5Division of Hematology and Oncology, Abramson Cancer Center, Hospital of the University of Pennsylvania, Philadelphia, PA
Talal Hilal
13Mayo Clinic, Phoenix, AZ
Jae Park
1Memorial Sloan Kettering Cancer Center, Medicine, New York, United States
Melhem Solh
14Bone marrow Transplant Group of Georgia, Atlanta, United States
Caitlin Guzowski
25Northside Hospital Cancer Institute, Atlanta, GA
Jessica Leonard
1Oregon Health and Science University, Portland, United States
Virginia Tan
27Knight Cancer Institute, Department of Medical Oncology, Oregon Health and Science University, Portland, OR
Nikeshan Jeyakumar
1University of California, Los Angeles, Los Angeles, United States
Hrishikesh Srinagesh
6Stanford University School of Medicine, Palo Alto, United States
Muthu Kumaran
33University of Arkansas for Medical Sciences, Little Rock, United States
Rasmus Hoeg
34University of California, Davis, Davis, United States
Divya Koura
6University of California San Diego Moores Cancer Center, San Diego, CA
Kaitlyn Dykes
37University of California, San Diego, San Diego, United States
Wendy Stock
Vivian Irizarry Gatell
11Department of Medicine, University of Texas Southwestern, Dallas, TX
Clayton Jackson
45UT Southwestern, Dallas, United States
Olalekan Oluwole
1Vanderbilt University Medical Center, Department of Hematology/Oncology, Nashville, United States
Bhagirathbhai Dholaria
Kristen O'Dwyer
22University of Rochester, Wilmot Cancer Institute, Rochester, United States
Jozal Moore
45Division of Hematology and Oncology, Department of Medicine, Wilmot Cancer Institute of University of Rochester, Rochester, NY
Matthew Ulrickson
28Banner MD Anderson Cancer Center, Gilbert, AZ
Ali Al-Darobi
9Banner MD Anderson Cancer Center, Gilbert, United States
Ken Byrd
40University of Kansas Cancer Center, Kansas City, United States
Stephanie Tsai
21Loyola University Medical Center, Maywood, United States
Timothy O'Connor
10Division of Hematology/Oncology, Cardinal Bernardin Cancer Center, Loyola University Medical Center, Maywood, IL
Eunice Wang
13Roswell Park Comprehensive Cancer Center, Buffalo, United States
Ross McCauley
28Division of Hematology and Oncology, Department of Medicine, Roswell Park Comprehensive Cancer Center, Buffalo, NY
Omer Jamy
15Division of Hematology and Oncology, The University of Alabama at Birmingham, Birmingham, AL
Razan Mohty
32Division of Hematology and Oncology, O’Neal Comprehensive Cancer Center, The University of Alabama, Birmingham, AL
Gregory Roloff
1University of Chicago, Chicago, United States
Katherine Sutherland
6Stanford University School of Medicine, Palo Alto, United States
Ibrahim Aldoss
Bijal Shah
16H. Lee Moffitt Cancer Center and Research Institute, Tampa, United States
Lori Muffly
1Division of Blood and Marrow Transplantation & Cellular Therapy, Stanford University, Stanford, CA
Noelle Frey
Department of Medicine, Division of Hematology–Oncology, Hospital of the University of Pennsylvania, Philadelphia