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分子量对聚乙二醇(PEGs)细胞摄取机制的影响,特别涉及P-糖蛋白。

Impact of molecular weight on the mechanism of cellular uptake of polyethylene glycols (PEGs) with particular reference to P-glycoprotein.

作者信息

Wang Tingting, Guo Yingjie, He Yang, Ren Tianming, Yin Lei, Fawcett John Paul, Gu Jingkai, Sun Huimin

机构信息

Clinical Laboratory, First Hospital, Jilin University, Changchun 130061, China.

Research Center for Drug Metabolism, College of Life Science, Jilin University, Changchun 130012, China.

出版信息

Acta Pharm Sin B. 2020 Oct;10(10):2002-2009. doi: 10.1016/j.apsb.2020.02.001. Epub 2020 Feb 20.

Abstract

Polyethylene glycols (PEGs) in general use are polydisperse molecules with molecular weight (MW) distributed around an average value applied in their designation , PEG 4000. Previous research has shown that PEGs can act as P-glycoprotein (P-gp) inhibitors with the potential to affect the absorption and efflux of concomitantly administered drugs. However, questions related to the mechanism of cellular uptake of PEGs and the exact role played by P-gp has not been addressed. In this study, we examined the mechanism of uptake of PEGs by MDCK-mock cells, in particular, the effect of MW and interaction with P-gp by MDCK-hMDR1 and A549 cells. The results show that: (a) the uptake of PEGs by MDCK-hMDR1 cells is enhanced by P-gp inhibitors; (b) PEGs stimulate P-gp ATPase activity but to a much lesser extent than verapamil; and (c) uptake of PEGs of low MW (<2000 Da) occurs by passive diffusion whereas uptake of PEGs of high MW (>5000 Da) occurs by a combination of passive diffusion and caveolae-mediated endocytosis. These findings suggest that PEGs can engage in P-gp-based drug interactions which we believe should be taken into account when using PEGs as excipients and in PEGylated drugs and drug delivery systems.

摘要

一般使用的聚乙二醇(PEG)是多分散分子,其分子量(MW)围绕其指定的平均值(PEG 4000)分布。先前的研究表明,PEG可作为P-糖蛋白(P-gp)抑制剂,有可能影响同时给药药物的吸收和外排。然而,与PEG的细胞摄取机制以及P-gp所起的确切作用相关的问题尚未得到解决。在本研究中,我们研究了MDCK模拟细胞摄取PEG的机制,特别是分子量的影响以及MDCK-hMDR1和A549细胞与P-gp的相互作用。结果表明:(a)P-gp抑制剂可增强MDCK-hMDR1细胞对PEG的摄取;(b)PEG刺激P-gp ATP酶活性,但程度远低于维拉帕米;(c)低分子量(<2000 Da)PEG的摄取通过被动扩散发生,而高分子量(>5000 Da)PEG的摄取通过被动扩散和小窝介导的内吞作用共同发生。这些发现表明,PEG可参与基于P-gp的药物相互作用,我们认为在将PEG用作辅料以及在聚乙二醇化药物和药物递送系统中时应考虑到这一点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b051/7606107/146367e982c5/fx1.jpg

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