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◆ Biomaterials2026-09-07

Bivalent Se nanovaccines targeting both tumor cells and cancer-associated fibroblast for potent anti-desmoplastic tumor immunotherapy.

Yunqing Deng, Cuiying Quan, Yun Zhang, Ying Wang, Xiaomin Lin, Simin Lei, An Zhu, Guangxia Dai, Tianfeng Chen, Ligeng Xu

原始摘要(英文原文)· Original abstract
Current cancer vaccines mainly focusing on inducing cancer cells-specific immune responses showed very limited efficacy because of the extremely complicated tumor microenvironments. Herein, we facilely construct Se nanoadjuvant-based bivalent DNA nanovaccines targeting both melanoma and cancer-associated fibroblast (CAF), based on the crucial roles of CAF in desmoplastic tumors and Se element in immune regulations. Intriguingly, the bivalent Se nanovaccines significantly induce robust bi-specific immune responses such as more activated macrophages, higher population of OVA+FAP+CD8+ T lymphocytes with enhanced multi-functionality, more germinal center B cells and short-lived plasma cells to generate bi-specific antibodies of high titers via triggering multiple Toll-like receptors (e.g., TLR3, TLR9) signaling pathways, enhancing antigen cross-presentation and relieving ROS stress. More importantly, bivalent nanovaccines efficiently induce robust immunological memory such as memory B cells, long-lived plasma cells, central and effector memory and tissue-resident memory T lymphocytes in spleen and skin. The bivalent nanovaccines as both prophylactic and therapeutic modalities also significantly inhibit melanoma progressions via specifically damaging both B16-OVA and CAF, and shaping tumor immuno-microenvironments like inducing more anti-tumor immune cells (e.g., NK, NKT, cytotoxic T cells) and reducing myeloid derived suppressor cells and tumor-associated macrophages. This study provides unique Se nanoadjuvant platform for the next-generation vaccines against desmoplastic tumors.
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Bivalent Se nanovaccines targeting both tumor cells and cancer-associated fibroblast for potent anti-desmoplastic tumor immunotherapy. — 科研速览 Science Skim