ArticleClinical cancer research : an official journal of the American Association for Cancer Research2026
Improving Anti-CTLA-4 Therapies through Peptide Masking and Fragment Crystallizable Non-fucosylation: Preclinical Characterization of Three Novel Antibodies.
Article in Clinical cancer research : an official journal of the American Association for Cancer Research, 2026. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Not yet cited in PubMed.
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Abstract
purposeThe anti-cytotoxic T-lymphocyte antigen 4 (CTLA-4) monoclonal antibody, ipilimumab (IPI), has shown clinical benefit across multiple tumor types, both as monotherapy and in combination with nivolumab or chemotherapy. However, not all tumors respond, and peripheral effects can lead to immune-related adverse events. We characterized three novel anti-CTLA-4 antibodies: peptide-masked [PROBODY conditionally activatable therapeutic (PB)], non-fucosylated (NF), and combined NF-PB (BMS-986288). EXPERIMENTAL
designWe evaluated the preclinical characteristics, including pharmacodynamics, tolerability, antitumor activity and efficacy, and peripheral immune responses, of these novel anti-CTLA-4 antibodies using in vitro systems, animal models, and human data. This includes data from preclinical mouse models of colorectal cancer as well as non-small cell lung cancer.
resultsNF demonstrated greater T-cell priming and antitumor activity than both IPI and the unmasked PB antibody in cell-based assays and mouse models. Whereas the intact PB antibody showed minimal CTLA-4 binding and peripheral immune activation, unmasking restored its functional activity to levels comparable with those of IPI. Unmasked anti-CTLA-4 NF-PB retained the effectiveness of anti-CTLA-4 NF, and both molecules demonstrated more profound antitumor activity, increased effector memory T-cell response, and prolonged survival in mouse models compared with IPI. Anti-CTLA-4 NF-PB demonstrated reduced peripheral immune responses compared with anti-CTLA-4 NF or IPI in non-human primates and patients with solid tumors.
conclusionsAnti-CTLA-4 NF-PB has enhanced antitumor activity, efficacy, and reduced peripheral activity in preclinical models, and has the potential to provide therapeutic benefit in solid tumors. See related commentary by Galvez-Cancino et al., p. 3112.
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