Generation of T-cell-redirecting bispecific antibodies with differentiated profiles of cytokine release and biodistribution by CD3 affinity tuning

通过 CD3 亲和力调节生成具有不同细胞因子释放和生物分布特征的 T 细胞重定向双特异性抗体

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作者:Lauric Haber, Kara Olson, Marcus P Kelly, Alison Crawford, David J DiLillo, Richard Tavaré, Erica Ullman, Shu Mao, Lauren Canova, Olga Sineshchekova, Jennifer Finney, Arpita Pawashe, Supriya Patel, Ryan McKay, Sahar Rizvi, Ermelinda Damko, Danica Chiu, Kristin Vazzana, Priyanka Ram, Katja Mohrs, Ama

Abstract

T-cell-redirecting bispecific antibodies have emerged as a new class of therapeutic agents designed to simultaneously bind to T cells via CD3 and to tumor cells via tumor-cell-specific antigens (TSA), inducing T-cell-mediated killing of tumor cells. The promising preclinical and clinical efficacy of TSAxCD3 antibodies is often accompanied by toxicities such as cytokine release syndrome due to T-cell activation. How the efficacy and toxicity profile of the TSAxCD3 bispecific antibodies depends on the binding affinity to CD3 remains unclear. Here, we evaluate bispecific antibodies that were engineered to have a range of CD3 affinities, while retaining the same binding affinity for the selected tumor antigen. These agents were tested for their ability to kill tumor cells in vitro, and their biodistribution, serum half-life, and anti-tumor activity in vivo. Remarkably, by altering the binding affinity for CD3 alone, we can generate bispecific antibodies that maintain potent killing of TSA + tumor cells but display differential patterns of cytokine release, pharmacokinetics, and biodistribution. Therefore, tuning CD3 affinity is a promising method to improve the therapeutic index of T-cell-engaging bispecific antibodies.

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