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嵌段共聚物结构对人乳腺癌细胞摄取聚合物胶束的影响。

The effect of block copolymer structure on the internalization of polymeric micelles by human breast cancer cells.

作者信息

Mahmud Abdullah, Lavasanifar Afsaneh

机构信息

Faculty of Pharmacy and Pharmaceutical Sciences, University of Alberta, 4119 DPC Edmonton, Alta. T6G 2N8 Canada.

出版信息

Colloids Surf B Biointerfaces. 2005 Oct 10;45(2):82-9. doi: 10.1016/j.colsurfb.2005.07.008.

Abstract

The objective of this study was to assess the effect of hydrophilic/hydrophobic block chain lengths on the internalization of poly(ethylene oxide)-block-poly(epsilon-caprolactone) (PEO-b-PCL) micelles by cancer cells. PEO-b-PCL block copolymers with varied PEO and PCL chain lengths were synthesized, assembled to polymeric micelles and loaded with a hydrophobic fluorescent probe (DiI) through a co-solvent evaporation method of physical encapsulation. The slow release of the fluorescent probe from the micellar structure was evidenced following DiI transfer to lipid vesicles. The extent of micellar uptake by cancer cells was investigated through their incubation with MCF-7 cells followed by measurement of the fluorescent emission intensity of DiI (lambda=550 nm) in separated lysed cells. Cellular internalization of polymeric micelles was confirmed by laser scanning microscopy. The mechanism of micellar uptake was investigated by pretreatment of MCF-7 cells with chlorpromazine and cytochalasin B. Encapsulation of DiI in PEO-b-PCL micelles lowered the extent and rate of hydrophobic probe internalization by cancer cells. For polymeric micelles with 5000 gmol(-1) of PCL and varied PEO molecular weights of 2000, 5000 and 13,000 gmol(-1), maximum uptake was observed at a PEO molecular weight of 5000 gmol(-1). For polymeric micelles with 5000 gmol(-1) of PEO and varied PCL molecular weights of 5000, 13,000 and 24,000 gmol(-1), maximum uptake was observed at 13,000 gmol(-1) of PCL. Chlorpromazine reduced the cellular uptake of PEO-b-PCL micelles independent from the block copolymer structure, pointing to the involvement of clathrin mediated endocytosis mechanisms in the uptake of polymeric micelles by cancer cells. Inhibition of cellular uptake of PEO-b-PCL micelles by cytochalasin B, on the other hand, was found to be dependent on the chemical structure of the core/shell forming blocks.

摘要

本研究的目的是评估亲水性/疏水性嵌段链长度对癌细胞摄取聚(环氧乙烷)-嵌段-聚(ε-己内酯)(PEO-b-PCL)胶束的影响。合成了具有不同PEO和PCL链长度的PEO-b-PCL嵌段共聚物,将其组装成聚合物胶束,并通过物理包封的共溶剂蒸发法负载疏水性荧光探针(DiI)。在DiI转移至脂质囊泡后,证明了荧光探针从胶束结构中的缓慢释放。通过将胶束与MCF-7细胞孵育,然后测量分离的裂解细胞中DiI(λ=550nm)的荧光发射强度,研究了癌细胞对胶束的摄取程度。通过激光扫描显微镜确认了聚合物胶束的细胞内化。用氯丙嗪和细胞松弛素B预处理MCF-7细胞,研究了胶束摄取的机制。DiI包封在PEO-b-PCL胶束中降低了癌细胞对疏水性探针的摄取程度和速率。对于具有5000 gmol(-1) PCL且PEO分子量分别为2000、5000和13000 gmol(-1)的聚合物胶束,在PEO分子量为5000 gmol(-1)时观察到最大摄取量。对于具有5000 gmol(-1) PEO且PCL分子量分别为5000、13000和24000 gmol(-1)的聚合物胶束,在PCL为13000 gmol(-1)时观察到最大摄取量。氯丙嗪降低了PEO-b-PCL胶束的细胞摄取,且与嵌段共聚物结构无关,这表明网格蛋白介导的内吞作用机制参与了癌细胞对聚合物胶束的摄取。另一方面,发现细胞松弛素B对PEO-b-PCL胶束细胞摄取的抑制作用取决于形成核/壳的嵌段的化学结构。

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