Bispecific Targeting of PD-1 and PD-L1 Enhances T-cell Activation and Antitumor Immunity

Helen Kotanides(Eli Lilly (United States)), Yiwen Li(Eli Lilly (United States)), Maria Malabunga(Eli Lilly (United States)), Carmine Carpenito(Eli Lilly (United States)), Scott W. Eastman(Eli Lilly (United States)), Yang Shen(Eli Lilly (United States)), George Wang(Eli Lilly (United States)), Ivan Inigo(Eli Lilly (United States)), David Surguladze(Eli Lilly (United States)), Anthony L. Pennello(Eli Lilly (United States)), Krishnadatt Persaud(Eli Lilly (United States)), Sagit Hindi(Eli Lilly (United States)), Michael Topper(Eli Lilly (United States)), Xinlei Chen(Eli Lilly (United States)), Yiwei Zhang(Eli Lilly (United States)), Danielle K. Bulaon(Eli Lilly (United States)), Tim Bailey(Eli Lilly (United States)), Yanbin Lao(Eli Lilly (United States)), Bing Han(Eli Lilly (United States)), Stacy Torgerson(Eli Lilly (United States)), Darin Chin(Eli Lilly (United States)), Andreas Sonyi(Eli Lilly (United States)), Jaafar N. Haidar(Eli Lilly (United States)), Ruslan D. Novosiadly(Eli Lilly (United States)), Christopher M. Moxham(Eli Lilly (United States)), Gregory D. Plowman(Eli Lilly (United States)), Dale L. Ludwig(Eli Lilly (United States)), Michael Kalos(Eli Lilly (United States))
Cancer Immunology Research
September 1, 2020
Cited by 68

Abstract

Abstract The programmed cell death protein 1 receptor (PD-1) and programmed death ligand 1 (PD-L1) coinhibitory pathway suppresses T-cell–mediated immunity. We hypothesized that cotargeting of PD-1 and PD-L1 with a bispecific antibody molecule could provide an alternative therapeutic approach, with enhanced antitumor activity, compared with monospecific PD-1 and PD-L1 antibodies. Here, we describe LY3434172, a bispecific IgG1 mAb with ablated Fc immune effector function that targets both human PD-1 and PD-L1. LY3434172 fully inhibited the major inhibitory receptor–ligand interactions in the PD-1 pathway. LY3434172 enhanced functional activation of T cells in vitro compared with the parent anti–PD-1 and anti–PD-L1 antibody combination or respective monotherapies. In mouse tumor models reconstituted with human immune cells, LY3434172 therapy induced dramatic and potent antitumor activity compared with each parent antibody or their combination. Collectively, these results demonstrated the enhanced immunomodulatory (immune blockade) properties of LY3434172, which improved antitumor immune response in preclinical studies, thus supporting its evaluation as a novel bispecific cancer immunotherapy.


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