首页> 美国卫生研究院文献>International Journal of Nanomedicine >Self-assembled micelles of amphiphilic poly(l-phenylalanine)-b-poly(l-serine) polypeptides for tumor-targeted delivery
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Self-assembled micelles of amphiphilic poly(l-phenylalanine)-b-poly(l-serine) polypeptides for tumor-targeted delivery

机译:两亲性聚(1-苯丙氨酸)-b-聚(1-丝氨酸)多肽的自组装胶束用于肿瘤靶向递送

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摘要

The aim of this work was to design, synthesize, and characterize self-assembled micelles based on polypeptides as a potential antitumor drug carrier. Amphiphilic poly(l-phenylalanine)-b-poly(l-serine) (PFS) polypeptides were obtained through the polymerization of N-carboxyanhydride. As a novel hydrophilic segment, poly(l-serine) was utilized to enhance tumor targeting due to a large demand of tumors for serine. PFS could self-assemble into micelles with an average diameter of 110–240 nm and a slightly negative charge. PFS polypeptides adopted random coil in pH 7.4 phosphate-buffered saline and could partly transform to α-helix induced by trifluoroethanol. PFS micelles with a low critical micelle concentration of 4.0 μg mL−1 were stable in pH 5–9 buffers and serum albumin solution. PFS micelles had a loading capacity of 3.8% for coumarin-6 and exhibited a sustained drug release. Coumarin-6 loaded rhodamine B isothiocyanate-labeled PFS micelles were incubated with Huh-7 tumor cells to study the correlation between drugs and carriers during endocytosis. The uptake of drugs was consistent with the micelles, illustrating that the intracellular transport of drugs highly depended on the micelles. PFS micelles diffused in whole cytoplasm while coumarin-6 assumed localized distribution, suggesting that the micelles could release the loaded drugs in particular areas. The internalization mechanism of PFS micelles was involved with clathrin-mediated endocytosis and macropinocytosis. Excess serine inhibited the uptake of PFS micelles, which demonstrated that serine receptors played a positive role in the internalization of PFS. The more interesting thing was that the uptake inhibition impacted on normal cells but not on tumor cells at the physiological concentration of serine. The difference in the uptake of PFS micelles was fourfold as high between the tumor cells and the normal cells, which indicated that PFS micelles had good tumor targeting in vitro. In conclusion, PFS micelles reported in this work were a promising drug delivery system for tumor targeting therapy.
机译:这项工作的目的是设计,合成和表征基于多肽的自组装胶束作为潜在的抗肿瘤药物载体。两性聚(1-苯丙氨酸)-b-聚(1-丝氨酸)(PFS)多肽是通过N-羧酸酐聚合获得的。由于肿瘤对丝氨酸的大量需求,聚(1-丝氨酸)作为一种新型的亲水链段被用于增强肿瘤靶向。 PFS可以自组装成平均直径为110–240 nm且带负电荷的胶束。 PFS多肽在pH 7.4磷酸盐缓冲液中采用无规卷曲,可以部分转化为三氟乙醇诱导的α-螺旋。低临界胶束浓度为4.0μgmL -1 的PFS胶束在pH 5–9缓冲液和血清白蛋白溶液中稳定。 PFS胶束对香豆素6的负载量为3.8%,并显示出持续的药物释放。将装有香豆素6的罗丹明B异硫氰酸酯标记的PFS胶束与Huh-7肿瘤细胞孵育,以研究内吞过程中药物与载体之间的相关性。药物的吸收与胶束一致,说明药物的细胞内转运高度依赖于胶束。 PFS胶束在整个细胞质中扩散,而香豆素6则假定是局部分布,这表明该胶束可以在特定区域释放负载的药物。 PFS胶束的内在化机制与网格蛋白介导的内吞作用和巨胞饮作用有关。过量的丝氨酸抑制了PFS胶束的摄取,这表明丝氨酸受体在PFS的内在化中起着积极的作用。更有趣的是,在丝氨酸的生理浓度下,摄取抑制作用影响正常细胞,但不影响肿瘤细胞。在肿瘤细胞和正常细胞之间,PFS胶束的摄取差异是后者的四倍,这表明PFS胶束在体外具有良好的肿瘤靶向性。总之,这项工作中报道的PFS胶束是用于肿瘤靶向治疗的有希望的药物递送系统。

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