| Literature DB >> 32271166 |
Karin Staflin, Christina L Zuch de Zafra, Leah K Schutt, Vanessa Clark, Fiona Zhong, Maria Hristopoulos, Robyn Clark, Ji Li, Mary Mathieu, Xiaocheng Chen, Jennifer Johnston, Justin Low, Ryan Ybarra, Dionysos Slaga, Jihong Yang, Meric Ovacik, Noël O Dybdal, Klara Totpal, Melissa R Junttila, Diego Ellerman, Genee Lee, Mark S Dennis, Rodney Prell, Teemu T Junttila.
Abstract
Systemic cytokine release and on-target/off-tumor toxicity to normal tissues are the main adverse effects limiting the clinical utility of T cell-redirecting therapies. This study was designed to determine how binding affinity for CD3 and tumor target HER2 impact the efficacy and nonclinical safety of anti-HER2/CD3 T cell-dependent antibodies (TDBs). Affinity was found to be a major determinant for the overall tolerability. Higher affinity for CD3 associated with rapidly elevated peripheral cytokine concentrations, weight loss in mice, and poor tolerability in cynomolgus monkeys. A TDB with lower CD3 affinity was better tolerated in cynomolgus monkeys compared with a higher CD3-affinity TDB. In contrast to tolerability, T cell binding affinity had only limited impact on in vitro and in vivo antitumor activity. High affinity for HER2 was critical for the tumor-killing activity of anti-HER2/CD3 TDBs, but higher HER2 affinity also associated with a more severe toxicity profile, including cytokine release and damage to HER2-expressing tissues. The tolerability of the anti-HER2/CD3 was improved by implementing a dose-fractionation strategy. Fine-tuning the affinities for both the tumor target and CD3 is likely a valuable strategy for achieving maximal therapeutic index of CD3 bispecific antibodies.Entities:
Keywords: Oncology; T cells
Mesh:
Substances:
Year: 2020 PMID: 32271166 PMCID: PMC7205277 DOI: 10.1172/jci.insight.133757
Source DB: PubMed Journal: JCI Insight ISSN: 2379-3708