阿托伐他汀
泡沫电池
生物相容性
药物输送
细胞
巨噬细胞
下调和上调
化学
靶向给药
流出
免疫系统
他汀类
药理学
胆固醇
药品
材料科学
细胞生长
脂质体
TLR7型
炎症
脂质积聚
细胞存活
细胞培养
组织工程
细胞生物学
癌症研究
载脂蛋白E
作者
xiaoyu liang,Jianghui Zhou,Yun Sil Chang,Xiaoqiong Cui,Qiang Zhang,Meng Ning,Xue Zhang,Xiaomin Hu,Jing Yang,Wenqing Gao
摘要
Atherosclerosis currently lacks effective therapeutic strategies specifically targeting and inhibiting foam cell formation. In this study, we engineered a macrophage nanoparticle composite drug delivery system that utilizes macrophages for competitive lipid uptake, coupled with ROS-responsive statin nanoparticles aimed at inhibiting cholesterol synthesis. This integrated system embodies a "smart immunomodulatory" approach, leveraging the inherent activity and targeted capabilities of immune cells. Experimental results demonstrated that this system significantly reduced lipid accumulation within foam cells by inhibiting cholesterol uptake, promoting cholesterol efflux and inhibition of apoptosis. These effects were mediated through microenvironmental optimization and upregulation of ABCA-1 and SR-BI expression. In an APOE knockout mouse model of atherosclerosis, the system effectively lowered lipid levels, modulated inflammatory responses, and significantly reduced foam cell formation and atherosclerotic plaque development. The system enhanced Treg cell proliferation and TGF-β secretion. Moreover, the system demonstrated high biocompatibility and therapeutic efficacy, training macrophages to revert to a low-lipid and M2 phenotype. This targeted drug delivery system integrates multiple therapeutic mechanisms, including inhibition of cholesterol uptake, enhancement of cholesterol efflux, and immunomodulation, providing a promising new strategy for the treatment of atherosclerosis.
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