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聚(乙二醇 - 共 - 十六烷基)氰基丙烯酸酯纳米颗粒向大鼠脑内皮细胞的转运:载脂蛋白在受体介导的内吞作用中的作用

Translocation of poly(ethylene glycol-co-hexadecyl)cyanoacrylate nanoparticles into rat brain endothelial cells: role of apolipoproteins in receptor-mediated endocytosis.

作者信息

Kim Hyun R, Andrieux Karine, Gil Sophie, Taverna Myriam, Chacun Héléne, Desmaële Didier, Taran Fréderic, Georgin Dominique, Couvreur Patrick

机构信息

Laboratory of Biopharmacy and Pharmaceutical Technology, UMR 8612, CNRS, University of Paris-Sud, F-92296 Châtenay-Malabry, France.

出版信息

Biomacromolecules. 2007 Mar;8(3):793-9. doi: 10.1021/bm060711a. Epub 2007 Feb 20.

Abstract

Previous in vivo observations in rats have shown that poly(ethylene glycol) polyhexadecylcyanoacrylate (PEG-PHDCA) nanoparticles could translocate into the brain after intravenous injection, which polyhexadecylcyanoacrylate (PHDCA) nanoparticles did not. Through the detailed analysis of the plasma protein adsorption onto the surface of PEG-PHDCA nanoparticles, the present study aimed at clarifying the mechanism by which nanoparticles could penetrate into rat brain endothelial cells (RBEC). Two-dimensional polyacrylamide gel electrophoresis and Western blotting revealed that, after incubation with rat serum, apolipoprotein E (ApoE) adsorbed more onto PEG-PHDCA than on PHDCA nanoparticles. Adsorption of apolipoprotein B-100 (ApoB-100) onto PEG-PHDCA nanoparticles was demonstrated by capillary electrophoresis experiments. Moreover, only when ApoE or ApoB-100 were preadsorbed onto PEG-PHDCA nanoparticles, nanoparticles were found to be more efficient than control nanoparticles for penetrating into RBEC, suggesting the involvement of a low density lipoprotein receptor in this process. Thus, these data clearly demonstrate the involvement of apolipoproteins in the brain transport of PEG-PHDCA nanoparticles, which may open interesting prospects for brain drug delivery.

摘要

先前在大鼠体内的观察表明,聚(乙二醇)聚十六烷基氰基丙烯酸酯(PEG-PHDCA)纳米颗粒静脉注射后可转运至脑内,而聚十六烷基氰基丙烯酸酯(PHDCA)纳米颗粒则不能。通过详细分析血浆蛋白在PEG-PHDCA纳米颗粒表面的吸附情况,本研究旨在阐明纳米颗粒能够穿透大鼠脑内皮细胞(RBEC)的机制。二维聚丙烯酰胺凝胶电泳和蛋白质印迹分析显示,与大鼠血清孵育后,载脂蛋白E(ApoE)在PEG-PHDCA上的吸附量比在PHDCA纳米颗粒上更多。毛细管电泳实验证实了载脂蛋白B-100(ApoB-100)在PEG-PHDCA纳米颗粒上的吸附。此外,只有当ApoE或ApoB-100预先吸附在PEG-PHDCA纳米颗粒上时,才发现纳米颗粒比对照纳米颗粒更有效地穿透RBEC,这表明在此过程中低密度脂蛋白受体发挥了作用。因此,这些数据清楚地证明了载脂蛋白参与了PEG-PHDCA纳米颗粒的脑内转运,这可能为脑内药物递送开辟有趣的前景。

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