脂质体
内化
纳米载体
生物物理学
药物输送
共焦显微镜
体内分布
化学
纳米技术
流式细胞术
细胞
材料科学
细胞生物学
生物化学
生物
分子生物学
体外
作者
Ennio Tasciotti,Roberto Molinaro,Francesca Taraballi,Naama E. Toledano Furman,Michael B. Sherman,Alessandro Parodi,Francesco Salvatore,Claudia Corbo
摘要
A thorough understanding of interactions occurring at the interface between nanocarriers and biological systems is crucial to predict and interpret their biodistribution, targeting, and efficacy, and thus design more effective drug delivery systems. Upon intravenous injection, nanoparticles are coated by a protein corona (PC). This confers a new biological identity on the particles that largely determines their biological fate. Liposomes have great pharmaceutical versatility, so, as proof of concept, their PC has recently been implicated in the mechanism and efficiency of their internalization into the cell. In an attempt to better understand the interactions between nanocarriers and biological systems, we analyzed the plasma proteins adsorbed on the surface of multicomponent liposomes. Specifically, we analyzed the physical properties and ultrastructure of liposome/PC complexes and the aggregation process that occurs when liposomes are dispersed in plasma. The results of combined confocal microscopy and flow cytometry experiments demonstrated that the PC favors liposome internalization by both macrophages and tumor cells. This work provides insights into the effects of the PC on liposomes' physical properties and, consequently, liposome-liposome and liposome-cell interactions.
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