Structural Basis for Multivalent MUC16 Recognition and Robust Anti-Pancreatic Cancer Activity of Humanized Antibody AR9.6

抗体 胰腺癌 人源化抗体 医学 癌症 人性化鼠标 癌症研究 药理学 免疫学 免疫系统 内科学 单克隆抗体
作者
Eric N. Aguilar,Satish Sagar,Brandy R. Murray,Christabelle Rajesh,Eric K. Lei,Sarah Michaud,David R. Goodlett,Thomas C. Caffrey,Paul M. Grandgenett,Benjamin Swanson,Teresa M. Brooks,Adrian R. Black,Henk van Faassen,Greg Hussack,Kevin A. Henry,Michael A. Hollingsworth,Cory L. Brooks,Prakash Radhakrishnan
出处
期刊:Molecular Cancer Therapeutics [American Association for Cancer Research]
卷期号:23 (6): 836-853
标识
DOI:10.1158/1535-7163.mct-23-0868
摘要

Mucin-16 (MUC16) is a target for antibody-mediated immunotherapy in pancreatic ductal adenocarcinoma (PDAC) among other malignancies. The MUC16-specific monoclonal antibody AR9.6 has shown promise for PDAC immunotherapy and imaging. Here, we report the structural and biological characterization of the humanized AR9.6 antibody (huAR9.6). The structure of huAR9.6 was determined in complex with a MUC16 SEA (Sea urchin sperm, Enterokinase, Agrin) domain. Binding of huAR9.6 to recombinant, shed, and cell-surface MUC16 was characterized, and anti-PDAC activity was evaluated in vitro and in vivo. HuAR9.6 bound a discontinuous, SEA domain epitope with an overall affinity of 88 nmol/L. Binding affinity depended on the specific SEA domain(s) present, and glycosylation modestly enhanced affinity driven by favorable entropy and enthalpy and via distinct transition state thermodynamic pathways. Treatment with huAR9.6 reduced the in vitro growth, migration, invasion, and clonogenicity of MUC16-positive PDAC cells and patient-derived organoids (PDO). HuAR9.6 blocked MUC16-mediated ErbB and AKT activation in PDAC cells, PDOs, and patient-derived xenografts and induced antibody-dependent cellular cytotoxicity and complement-dependent cytotoxicity. More importantly, huAR9.6 treatment caused substantial PDAC regression in subcutaneous and orthotopic tumor models. The mechanism of action of huAR9.6 may depend on dense avid binding to homologous SEA domains on MUC16. The results of this study validate the translational therapeutic potential of huAR9.6 against MUC16-positive PDACs.
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