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◆ Biomaterials2026-07-27

Macrophage polarization-inducible cholesterol lipid-assisted nanoparticles prime systemic antitumor immunity.

Bofu Ma, Miao Su, Boya Yu, Chaoran Chen, Zhihao Wang, Bianxia Liu, Xianzhu Yang, Xiaojiao Du, Jun Wang

原始摘要(英文原文)· Original abstract
Nanomaterials with intrinsic biological activity can directly participate in disease treatment, emerging as a pivotal focus in the development of next-generation therapeutics. In this study, we synthesized a library of cholesterol lipids bearing diverse tertiary amine head groups via a straightforward amidation reaction, then co-assembled them with amphiphilic polyethylene glycol-poly (lactic-co-glycolic acid) (PEG-b-PLGA) to formulate hybrid nanomaterials. Notably, the cholesterol derivative A3-Chol-formulated nanomaterials (A3-Chol@NP) polarized macrophages toward the pro-inflammatory M1 phenotype and enhanced phagocytosis of tumor cells. At the mechanistic level, A3-Chol@NP has been observed to preferentially interact with mitochondria in macrophages to produce mitochondrial reactive oxygen species (mtROS). This, in turn, activates ROS-NF-κB-iNOS and ROS-IRF5-IL-23 pathways, which have been identified as key factors in the macrophage polarization to M1-type. In the B16-F10 mouse melanoma model, A3-Chol@NP efficiently suppressed tumor growth via macrophage-mediated immunotherapy and completely blocked tumor progression when combined with anti-PD-L1 antibody.
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Macrophage polarization-inducible cholesterol lipid-assisted nanoparticles prime systemic antitumor immunity. — 科研速览 Science Skim