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◆ Advanced Science2026-03-03· Cancer research

AML‐Targeted Metal‐Polyphenol Nanoplatform Induces Ferroptosis‐ICD Cascade for Antitumor Immunity Boosting

Shangqin Yang, Jingxuan Wang, Kerong Tu, Xiaobing Huang, Lin Lv, Mingjie Peng, Qiqi Xu, Hailong Liu, Qiang Sun, lulu Cai

原始摘要(英文原文)· Original abstract
ABSTRACT Acute myeloid leukemia (AML) remains a therapeutic challenge due to its low immunogenicity and immunosuppressive tumor microenvironment (iTME). We developed a ferritin‐based nanoplatform (Fe‐SH@Fn) co‐delivering shikonin (SH) and Fe 3+ to synergistically induce ferroptosis and activate immunogenic cell death (ICD). Ferritin, a ligand for CD71, which is overexpressed on AML cells, enables tumor targeting and encapsulates Fe‐SH formed by coordination between SH and Fe 3+ . In AML cells, high intracellular glutathione triggers Fe‐SH@Fn disassembly: Fe 3+ reduces to Fe 2+ to drive Fenton reaction‐mediated ferroptosis, while SH induces ICD. This dual effect boosts the release of damage‐associated molecular patterns, remodeling the microenvironment by promoting dendritic cell maturation, enhancing CD8 + T cell infiltration, and reducing regulatory T cells. In vivo, Fe‐SH@Fn achieved 81.25% tumor growth inhibition in subcutaneous AML model and extended median survival by 2.8‐fold in orthotopic AML model without systemic toxicity. This work presents a translatable strategy that overcomes AML immunosuppression through targeted drug delivery and synergistic ferroptosis‐ICD activation.
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AML‐Targeted Metal‐Polyphenol Nanoplatform Induces Ferroptosis‐ICD Cascade for Antitumor Immunity Boosting — 科研速览 Science Skim