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聚乙二醇-聚乳酸嵌段共聚物胶束的细胞摄取和细胞内转运。

Cellular uptake and intracellular trafficking of PEG-b-PLA polymeric micelles.

机构信息

National Engineering Research Center for Nanomedicine, College of Life Science and Technology, Huazhong University of Science and Technology, Wuhan, China.

出版信息

Biomaterials. 2012 Oct;33(29):7233-40. doi: 10.1016/j.biomaterials.2012.06.045. Epub 2012 Jul 15.

Abstract

Besides as an inert carrier for hydrophobic anticancer agents, polymeric micelles composed of di-block copolymer poly(ethylene glycol)-poly(lactic acid) (PEG-b-PLA) function as biological response modifiers including reversal of multidrug resistance in cancer. However, the uptake mechanisms and the subsequent intracellular trafficking remain to be elucidated. In this paper, we found that the uptake of PEG-b-PLA polymeric micelles incorporating nile red (M-NR) was significantly inhibited by both dynamin inhibitor dynasore and dynamin-2 dominant negative mutant (dynamin-2 K44A). Exogenously expressed caveolin-1 colocalized with M-NR and upregulated M-NR internalization in HepG2 cells expressing low level of endogenous caveolin-1, while caveolin-1 dominant negative mutant (caveolin-1 Y14F) significantly downregulated M-NR internalization in C6 cells expressing high level of endogenous caveolin-1. Exogenously expressed clathrin light chain A (clathrin LCa) did not mainly colocalize with the internalized M-NR and had no effect on M-NR uptake. These results suggested that dynamin- and caveolin-dependent but clathrin-independent endocytosis was involved in M-NR cellular uptake. We further found that M-NR colocalized with lysosome and microtubulin after internalization.

摘要

除了作为疏水性抗癌药物的惰性载体外,由两亲性嵌段共聚物聚乙二醇-聚乳酸(PEG-b-PLA)组成的聚合物胶束还可以作为生物反应调节剂,包括逆转癌症的多药耐药性。然而,其摄取机制和随后的细胞内转运仍有待阐明。在本文中,我们发现,尼罗红(M-NR)结合的 PEG-b-PLA 聚合物胶束的摄取被动力蛋白抑制剂 dynasore 和动力蛋白-2 显性负突变体(dynamin-2 K44A)显著抑制。在表达低水平内源性 caveolin-1 的 HepG2 细胞中,外源性表达的 caveolin-1 与 M-NR 共定位,并上调 M-NR 的内化,而 caveolin-1 显性负突变体(caveolin-1 Y14F)则显著下调表达高水平内源性 caveolin-1 的 C6 细胞中 M-NR 的内化。外源性表达的网格蛋白轻链 A(clathrin LCa)与内化的 M-NR 主要不共定位,并且对 M-NR 摄取没有影响。这些结果表明,M-NR 的细胞摄取涉及依赖于 dynamin 和 caveolin 但不依赖于网格蛋白的内吞作用。我们进一步发现,内化后 M-NR 与溶酶体和微管蛋白共定位。

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