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◆ Journal of Translational Medicine2026-08-28· Blockade

RFdiffusion-designed CLDN18.2 T-cell engager coupled with dendritic-cell supplementation enhances antitumor immunity in gastric cancer

Haoxuan Kan, Guoyang Niu, Zihan Wan, Yifan Zou, Jihuan Wang, Yihan Xu, Haojun Yang, Zekuan Xu, Bowen Li

原始摘要(英文原文)· Original abstract
CLDN18.2 is a validated therapeutic target in gastric cancer, but T-cell redirection in solid tumors can be limited by poor immune infiltration. We designed a CLDN18.2-targeting T-cell engager using an RFdiffusion-assisted workflow and investigated why its activity waned in immune-cold gastric cancer models. Candidate CLDN18.2 binders were screened computationally and incorporated into human and murine CD3-engaging TCE formats. Binding, CLDN18.2 selectivity, T cell-dependent cytotoxicity, and CD8 + T-cell activation were tested in engineered gastric cancer cells, patient-derived tumor cells, and patient-derived organoids. Antitumor activity was then evaluated in syngeneic and hPBMC-reconstituted PDX models. Dendritic-cell supplementation, MHC-II blockade, and IL-12 blockade were used to probe the immune-support signals that shaped TCE response. The selected TCE bound CLDN18.2-positive tumor cells and CD3 + T cells, with limited detectable binding to CLDN18.1-expressing cells in cell-surface assays. It induced CLDN18.2-dependent tumor-cell killing and CD8 + T-cell activation in cell-line, patient-derived tumor-cell, and organoid co-cultures. In vivo, TCE treatment produced early tumor inhibition, but tumor control weakened over time. This loss of durability was accompanied by limited intratumoral T-cell accumulation, increased PD-1 expression, sparse CD11c+ dendritic cells, and weak CXCL9/CXCL10-associated chemokine signals. Adding dendritic cells improved TCE-mediated killing in vitro and tumor control in vivo. MHC-II blockade had modest effects, whereas IL-12 blockade more consistently reduced the DC-associated enhancement, indicating that added DCs acted mainly through cytokine-associated support rather than antigen presentation alone. RFdiffusion-assisted binder design generated a CLDN18.2-targeting TCE with activity across gastric cancer models. Under the tested conditions, tumor-T-cell bridging alone did not achieve durable control in cold tumor models, whereas DC-associated IL-12/CXCL9 signals strengthened TCE activity. These findings support further testing of CLDN18.2-directed TCEs together with strategies that rebuild local DC-T-cell immune circuits.
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RFdiffusion-designed CLDN18.2 T-cell engager coupled with dendritic-cell supplementation enhances antitumor immunity in gastric cancer — 科研速览 Science Skim