脂质体
化学
胆固醇
肝细胞
细胞生物学
体内
生物物理学
调节器
生物化学
补体系统
毒品携带者
药物输送
血浆蛋白结合
单核细胞
肝细胞癌
肺
生物
细胞膜
细胞
肝细胞学
体外
脂质双层
肽
小泡
右旋糖酐
清除率
脂筏
生物活性
靶向给药
分布(数学)
免疫系统
体内分布
吞噬作用
膜蛋白
受体
作者
Fangqin Fu,Yuting Ge,Xuemei Hu,Yeqi Huang,Wenhua Yang,Hao Fan,Jiayi Ding,Luying Zhou,Zhicheng Wang,Fanny Bonnicel,Ingo Lieberwirth,Volker Mailänder,Daniel Crespy,Katharina Landfester,Shuai Jiang
出处
期刊:ACS Nano
[American Chemical Society]
日期:2026-08-12
标识
DOI:10.1021/acsnano.6c07065
摘要
Abstract Cholesterol is a key determinant of membrane stability and fluidity in both natural and synthetic lipid systems. Although widely used, its content varies greatly among commercial liposomes, and its regulatory effects on biological interactions remain insufficiently understood. Here, we reveal that cholesterol content critically governs the protein corona composition and binding affinity of liposomes, thereby dictating their cellular interactions and in vivo fate. Complement proteins exhibit a biphasic adsorption pattern that modulates monocyte and Kupffer cell uptake and systemic clearance. High cholesterol levels enrich apolipoproteins, particularly ApoE, promoting hepatocyte targeting, liver accumulation, and enhanced uptake by dendritic cells in blood and spleen. In contrast, low-cholesterol liposomes form albumin-dominated coronas that favor uptake by liver sinusoidal and pulmonary endothelial cells, leading to preferential lung accumulation. Notably, cholesterol-rich liposomes significantly suppress hepatocellular carcinoma progression through improved liver targeting and prolonged circulation. These findings identify cholesterol as a pivotal regulator of serum protein interactions and biodistribution, providing valuable insights for the rational design of efficient, organ-specific liposomal drug delivery systems.
科研通智能强力驱动
Strongly Powered by AbleSci AI