Superior real-world outcomes of lisocabtagene maraleucel in chronic lymphocytic leukemia
Abstract
Abstract Introduction: Lisocabtagene maraleucel (liso-cel) was approved in the United States for the treatment of CLL in 3/2024 for patients who have received two prior lines of therapy including a covalent BTK inhibitor and a BCL-2 inhibitor. Data regarding outcomes of liso-cel is limited to reports from the registrational TRANSCEND-CLL 004 clinical trial which had strict inclusion and exclusion criteria. This work investigates the real-world efficacy and safety of liso-cel for patients with CLL and its efficacy in specific sub-populations. Methods: This is a multi-institutional retrospective study (Collaborative Assessment of Real-World Evidence of Lisocabtagene Maraleucel in Patients with Relapsed/Refractory CLL/SLL [CARE CAR-T CLL]) of patients with CLL who received commercial liso-cel in the United States. Patients with Richter transformation were excluded. Response was defined by iwCLL criteria. Patients who did not undergo a marrow biopsy but met other criteria for a complete response (CR) were categorized as unconfirmed CR (CRu). CRS and ICANS were graded per ASTCT criteria. Results: A total of 30 patients were identified with a median age of 67 years (range 44 – 80). Twenty of thirty patients (67%) had either del17p and/or mutated TP53, and 8/30 (27%) had complex karyotype (≥ 3 abnormalities) at time of liso-cel infusion. Patients received a median of 6 prior lines of therapy (range 1 - 12), and 24 (80%) were previously treated with chemotherapy. All patients had previous exposure to a covalent BTK inhibitor and a BCL-2 inhibitor. Twenty-seven (90%) of patients had prior exposure to pirtobrutinib. Twenty-nine patients (96.7%) received bridging treatment that was stopped after leukapheresis with 1 patient in CR and 25 patients in PR at time of liso-cel. Eighteen patients (60%) were treated with pirtobrutinib as the last line of treatment prior to liso-cel. Median length of time on pirtobrutinib prior to liso-cel infusion was 4 months (interquartile range [IQR], 2 – 8 months). Twelve (66.7%) patients stopped pirtobrutinib between leukapheresis and lymphodepletion, and 6 continued after liso-cel. Best CR/CRu rate was 60.0% (CR, n = 17/30; CRu, n = 1/30), and best overall response rate (ORR) was 83.3% (25/30) with median time to best response of 30 days (IQR, 28 – 30 days). Of the 18 patients who received pirtobrutinib as their last line of therapy, 13 (72%) achieved a CR/CRu. Meanwhile, of the 12 patients who did not receive pirtobrutinib as their last line of therapy, only 5 (28%) achieved a CR. Measurable residual disease testing (MRD) by flow cytometry was done in 14/30 patients, and 9 patients (64%) had achieved undetectable MRD (uMRD). MRD by next generation sequencing (NGS) was done in 17 patients, and 7 (41%) patients had uMRD. Twenty-seven of 30 patients (90%) were alive at time of data collection. Median follow-up was 3.3 months (IQR, 1.2 – 8.9 months). Twenty-six patients (87%) experienced any grade cytokine release syndrome (CRS), and 3 patients experienced grade 3 CRS (10%). Twelve patients (40%) experienced any grade immune effector cell-associated neurotoxicity syndrome (ICANS), and 4 patients (13%) experienced grade 3 ICANS. There were no grade 4 or 5 CRS or ICANS. One patient experienced grade 3 immune effector cell-associated hemophagocytic lymphohistiocytosis-like syndrome (IEC-HS). At day 30, patients had a median absolute neutrophil count of 1.7K/μL (IQR, 0.8 – 3.6K/μL), hemoglobin of 11.7 g/dL (IQR, 8.6 – 13.1 g/dL), and platelet count of 72K/μL (IQR, 29 – 119K/μL). Conclusion: Real-world analysis of liso-cel for patients with relapsed/refractory CLL showed CR and ORR of 60.0% and 83.3%, respectively. Despite having a heavily pre-treated and chemotherapy-exposed population and with over half the patients having high-risk features, these response rates are higher than what was described in the TRANSCEND-CLL 004 clinical trial. These results are limited by the short follow-up period and the variability in response assessment typical of a retrospective study. As we increase our sample size, we will also be interested if the use of the non-covalent BTK inhibitor pirtobrutinib prior to liso-cel is associated with a higher CR rate, mimicking the findings of the sub-cohort analysis of TRANSCEND-CLL 004 where the concurrent use of ibrutinib led to higher CR rates. Further updates and patients from additional collaborators will be presented at the meeting.
Article Details
Authors (39)
Jennifer Huang
4Fred Hutchinson Cancer Research Center and University of Washington, Seattle, United States
Jenna Voutsinas
1Fred Hutchinson Cancer Center, Seattle, United States
Niranjan Khaire
1The University of Texas MD Anderson Cancer Center, Houston, United States
Vincenzo Pizzuti
4University of Colorado Cancer Center, Aurora, United States
Leyla Shune
Matthew Lei
2Massachusetts General Hospital, Boston, United States
Rodrigo Fonseca
2Department of Medicine, Mayo Clinic, Phoenix, AZ
Mohammad Ammad Ud Din
8Moffitt Cancer Center, Tampa, United States
Alan Skarbnik
19Novant Health Cancer Institute, Department of Hematology, Charlotte, United States
Agrima Mian
1Cleveland Clinic Foundation, Department of Hematology and Medical Oncology, Cleveland, United States
Sushma Bharadwaj
2Stanford University School of Medicine, Medicine, Division of Blood and Marrow Transplantation & Cellular Therapy, Stanford, United States
Aseel Alsouqi
1The Ohio State University, Internal Medicine, Columbus, United States
Bret Wankel
13University of Rochester Medical Center, Rochester, United States
Graham Wehmeyer
2Icahn School of Medicine at Mount Sinai, New York, United States
Joseph Lukowski
15University of Nebraska, Omaha, United States
Alexey Danilov
20City of Hope, Duarte, CA
Tanya Siddiqi
City of Hope Orange County, Irvine, California, United States
Meghan Thompson
1Memorial Sloan Kettering Cancer Center, New York, United States
Michael Scordo
Cellular Therapy Service, Department of Medicine, Memorial Sloan Kettering Cancer Center, New York
Stephanie Franco
19University of North Carolina, Chapel Hill, United States
Deborah Stephens
1University of North Carolina at Chapel Hill, Hematology, Chapel Hill, United States
Chaitra Ujjani
15Fred Hutchinson Cancer Research Center, Seattle, United States
Ryan Lynch
1Fred Hutchinson Cancer Center, Seattle, United States
Jordan Gauthier
William Wierda
1The University of Texas MD Anderson Cancer Center, Houston, United States
Paul Barr
1University of Rochester Medical Center, Department of Medicine, Wilmot Cancer Institute, Rochester, United States
Adam Kittai
2Mount Sinai, New York City, United States
Jonah Shulman
14Icahn School of Medicine at Mount Sinai, New York, United States
Matthew Lunning
Department of Internal Medicine, Division of Oncology and Hematology, Fred and Pamela Buffett Cancer Center, University of Nebraska Medical Center and Nebraska Medicine, Omaha
Kerry Rogers
1The Ohio State University, Internal Medicine, Columbus, United States
Bita Fakhri
1Division of Hematology, Department of Medicine, Stanford University School of Medicine, Stanford, CA
Brian Hill
1Cleveland Clinic Foundation, Department of Hematology and Medical Oncology, Cleveland, United States
Javier Pinilla-Ibarz
2Moffitt Cancer Center, Tampa, United States
Talal Hilal
13Mayo Clinic, Phoenix, AZ
Jacob Soumerai
12Massachusetts General Hospital Cancer Center and Harvard Medical School, Boston, United States
Manali Kamdar
Qian Wu
Nitin Jain
Mazyar Shadman