Hesperetin-black phosphorus nanosheets targeting TAMs induce ferroptosis and reverse protumoral polarization to remodel the immune microenvironment
Liang Feng, Huan Wang, Zuodi Liang, Ying Tian, Yang Guo, Zhuo Li
Journal:Materials Today Bio
IF:11
DOI:10.1016/j.mtbio.2026.103304
PMID:42293377
Published:2026-05-29
research field:分子生物学肿瘤免疫学靶向治疗免疫治疗纳米医学
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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