Tisagenlecleucel Model‐Based Cellular Kinetic Analysis of Chimeric Antigen Receptor–T Cells

Andrew M. Stein(Novartis (United States)), Stephan A. Grupp(Children's Hospital of Philadelphia), John E. Levine(University of Michigan), Theodore W. Laetsch(Center for Cancer and Blood Disorders), Michael A. Pulsipher(University of Southern California), Michael W. Boyer(University of Utah), Keith J. August(Children's Mercy Hospital), Bruce L. Levine(University of Pennsylvania), Lori Tomassian(Novartis (United States)), Sweta Shah(Novartis (United States)), Mimi Leung(Novartis (United States)), Pai‐Hsi Huang(Novartis (United States)), Rakesh Awasthi(Novartis (United States)), Karen Thudium Mueller(Novartis (United States)), Patricia A. Wood(Novartis (United States)), Carl H. June(University of Pennsylvania)
CPT Pharmacometrics & Systems Pharmacology
March 7, 2019
Cited by 145Open Access
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Abstract

B cells. A model was developed for the kinetics of tisagenlecleucel and the impact of therapies for treating cytokine release syndrome (tocilizumab and corticosteroids) on expansion. Data from two phase II studies in pediatric and young adult relapsed/refractory B cell acute lymphoblastic leukemia were pooled to evaluate this model and evaluate extrinsic and intrinsic factors that may impact the extent of tisagenlecleucel expansion. The doubling time, initial decline half-life, and terminal half-life for tisagenlecleucel were 0.78, 4.3, and 220 days, respectively. No impact of tocilizumab or corticosteroids on the expansion rate was observed. This work represents the first mixed-effect model-based analysis of chimeric antigen receptor-T cell therapy and may be clinically impactful as future studies examine prophylactic interventions in patients at risk of higher grade cytokine release syndrome and the effects of these interventions on chimeric antigen receptor-T cell expansion.


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