ArticleScience China. Life sciences2026
Plant-derived CTLA-4-targeting miR152 via lipid nanoparticles potentiates doxorubicin efficacy in breast cancer immunochemotherapy.
Article in Science China. Life sciences, 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
Breast cancer remains a therapeutic challenge due to its high malignancy and the lack of safe and effective treatments. Immune checkpoint inhibitors targeting cytotoxic T-lymphocyte-associated protein 4 (CTLA-4) have demonstrated remarkable efficacy against various malignancies by enhancing antitumor immunity when used in combination with chemotherapy. However, conventional antibody-based therapies are associated with adverse effects. Plant-derived microRNAs capable of regulating gene expression represent a highly promising alternative strategy, with substantial potential in disease treatment. In this study, we identified that miR152, a plant-derived microRNA from Taxus×media Rehder, has antitumor activity. Our results demonstrated that miR152 exerts antitumor immune activity by silencing CTLA-4 expression in regulatory T cells. Furthermore, we observed that miR152 maintains a favorable safety profile in normal cells at therapeutic doses, while eliciting direct cytotoxic effects on specific cancer cell lines at higher concentrations. In a mouse tumor model, the combination of anti-CTLA-4 miRNA with doxorubicin significantly improved the efficacy of both monotherapies. Mechanistically, miR152 augmented the antitumor immune response by reducing the proportion of Treg cells within the T-cell compartment and increasing the proportion of CD8
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