Sep 2026· Frontiers in Immunology· 0 citations· 99 references
TL;DR
Next-generation ADCs may function not only as targeted cytotoxic agents but also as modulators of antitumor immunity in gastric cancer, and integrating tumor-antigen biology with immune-contextual features may enable more rational patient selection and therapeutic combinations.
Abstract
Gastric cancer (GC) remains a major cause of cancer-related mortality, and therapeutic resistance and tumor heterogeneity continue to limit durable responses in advanced disease. Antibody–drug conjugates (ADCs), which combine the target specificity of monoclonal antibodies with highly potent cytotoxic payloads, have emerged as an important component of biomarker-guided therapy. Beyond selective payload delivery, accumulating evidence indicates that ADCs can interact with antitumor immunity through Fc-mediated immune-effector functions, immunogenic tumor-cell death, enhanced antigen presentation, recruitment of effector T cells, and remodeling of the tumor immune microenvironment. In this review, we summarize the structural and pharmacological principles of ADCs and discuss established and emerging targets in GC, including HER2, CLDN18.2, HER3, GCC, TROP2, Nectin-4, EGFR, and MUC1. Particular emphasis is placed on the immunological consequences of ADC treatment and the mechanistic rationale for combining ADCs with immune checkpoint inhibitors. We further discuss tumor heterogeneity, resistance mechanisms, biomarker selection, treatment-related toxicities, and emerging combination strategies. Integrating tumor-antigen biology with immune-contextual features may enable more rational patient selection and therapeutic combinations. Collectively, next-generation ADCs may function not only as targeted cytotoxic agents but also as modulators of antitumor immunity in gastric cancer.
The rationale for targeting established and emerging antigens in non-small cell and small cell lung cancer, including HER2, TROP2, c-MET, HER3, CEACAM5, DLL3, and other promising targets currently under clinical investigation are discussed.
P. Paliogiannis, G. Fara, A. Zinellu et al.· Current Issues in Molecular...· 0 citations
Antibody-drug conjugates (ADCs) have transformed the treatment landscape of breast cancer and redefined the conceptual distinction between targeted therapy and conventional chemotherapy. Originally conceived as “magic bullets” that selectively deliver cytotoxic warheads to antigen-expressing tumor cells, clinical and m...
Chen-Xu Guo, L. Ellisen· Journal of Clinical Investig...· 0 citations
Abstract Antibody–drug conjugates (ADCs) have become a major therapeutic class in breast cancer, but their clinical performance cannot be predicted by antigen expression alone. This review uses therapeutic-window engineering as a unifying framework to connect ADC molecular architecture with tumor heterogeneity, clinica...
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Monoclonal antibodies (mAbs) are a cornerstone of cancer therapy. They offer high target specificity and diverse cytotoxic mechanisms, which render them superior to many conventional cytotoxic treatments. This review examines therapeutic mAbs from two aspects. First, their mechanisms of action are analysed, including d...
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Esophageal cancer remains one of the most lethal malignancies worldwide, with particularly poor outcomes following disease progression after first-line chemoimmunotherapy. Antibody-drug conjugates (ADCs) have emerged as a transformative therapeutic class that combines the targeting precision of monoclonal antibodies wi...
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BACKGROUND
Accumulating evidence demonstrates that antibody-dependent cellular phagocytosis (ADCP), mediated by tumor-associated macrophages via Fcγ receptors (FcγR), represents a key Fc-dependent effector mechanism for selected antitumor monoclonal antibodies, including rituximab in B-cell malignancies, trastuzumab in...
Ming-Yi Ju, Miao Zhang, Shuai Ma et al.· Journal of Advanced Research· 0 citations
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