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Hesperetin-black phosphorus nanosheets targeting TAMs induce ferroptosis and reverse protumoral polarization to
Liang Feng1, Huan Wang2, Zuodi Liang3
1Department of Breast Surgery, The First Hospital of China Medical University, Shenyang, 110001, China.
Abstract:
This study focused on developing a novel nanodelivery system, BP-PEG-S2P@H, with hesperetin-loaded black phosphorus nanosheets to target tumor-associated macrophages (TAMs) in triple-negative breast cancer (TNBC). Through RNA sequencing and proteomic analyses, CEBPG upregulation was observed in TAMs, potentially controlling the SLC7A11-mediated ferroptosis pathway. In vitro and in vivo experiments, including FerroOrange and malondialdehyde assays, demonstrated the induction of ferroptosis by BP-PEG-S2P@H. The nanoplatform facilitated the transition of TAMs from the M2 to the M1 subtype, enhancing IL-12 secretion while reducing IL-10 levels. Functional analyses confirmed the reversal of the pro-migratory TAM phenotype and inhibition of tumor cell invasion. In vivo imaging validated efficient tumor targeting, with immunohistochemical staining revealing decreased CEBPG/SLC7A11 expression in tumors, reduced macrophage infiltration, and enhanced CD8+ T cell activation, promoting the efficacy of PD-L1 immunotherapy. Biosafety assessments indicated no apparent toxicity, supporting the potential of the BP-PEG-S2P@H nanoplatform for TAM-targeted nano-immunotherapy in TNBC.
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