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◆ ACS Nano2025-11-25· Reprogramming

Engineered Dendritic Cell-Derived Vesicles for T-Cell-Targeted Magnesium Delivery and Metabolic Reprogramming

Xiaoyu Yu, Shuqi Chen, Rong Sun, Chenlu Yao, Bingbing Wu, Heng Wang, Chenhui Weng, Dongdong Sun, Chao Wang, Fang Xu

原始摘要(英文原文)· Original abstract
The tumor microenvironment (TME) fosters immunosuppression and T-cell exhaustion, which limit the efficacy of immunotherapy. Magnesium ions (Mg 2+ ) have recently been identified as potent immunomodulators that enhance cytotoxic T lymphocyte (CD8 + T) activity. However, conventional carriers for Mg 2+ delivery suffer from poor biocompatibility and inefficient targeting, restricting therapeutic outcomes. In this study, we developed an engineered extracellular vesicle (EV)-based system for targeted Mg 2+ delivery. Dendritic cells were genetically modified to overexpress magnesium-specific channel protein MgtE (SLC41A1), enabling efficient Mg 2+ encapsulation into dendritic cell-derived EVs (E-DEVs). The resulting Mg 2+ -loaded vesicles (E-DEVs@Mg 2+ ) displayed strong tropism toward tumor-draining lymph nodes (TDLNs) and effectively modulated T-cell metabolism. Mechanistic studies revealed that E-DEVs@Mg 2+ enhanced glycolysis and oxidative phosphorylation, restoring the metabolic fitness of exhausted CD8 + T cells. When combined with immune checkpoint blockade therapy, this strategy achieved a synergistic tumor suppression. Our findings highlight engineered DEVs as a biocompatible and effective Mg 2+ delivery platform, providing a promising approach for metabolic reprogramming and improved cancer immunotherapy.
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Engineered Dendritic Cell-Derived Vesicles for T-Cell-Targeted Magnesium Delivery and Metabolic Reprogramming — 科研速览 Science Skim