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基于 PCL-PEG-PCL 共聚物胶束的硫代葡萄糖苷前体物萝卜硫素的药代动力学及其在体内外的传递。

Pharmacokinetics and in vitro and in vivo delivery of sulforaphane by PCL-PEG-PCL copolymeric-based micelles.

机构信息

a Zanjan Pharmaceutical Biotechnology Research Center, Zanjan University of Medical Sciences , Zanjan , Iran.

b Zanjan Pharmaceutical Nanotechnology Research Center, Zanjan University of Medical Sciences , Zanjan , Iran.

出版信息

Artif Cells Nanomed Biotechnol. 2017 Dec;45(8):1728-1739. doi: 10.1080/21691401.2017.1282501. Epub 2017 Feb 1.

Abstract

A reliable and efficient drug delivery system using PCL-PEG-PCL copolymers was established for the anti-cancer compound sulforaphane (SF) in this study. Encapsulated SF by PCL-PEG-PCL nanoparticles led to formation of SF-loaded PCL-PEG-PCL micelles. Micelles characterization and stability, the particle size and their morphology were determined by DLS and AFM. The loading efficiency of SF was 19.33 ± 1.28%. The results of AFM showed that the micelles had spherical shapes with the size of 107 nm. In vitro release of SF from SF-entrapped micelles was remarkably sustained. The cytotoxicity of free SF, PCL-PEG-PCL and SF/PCL-PEG-PCL micelles was analysis by MTT colorimetric assay on MCF-7, 4T1 and MCF10A cell lines. Expression levels of BCL-2, PARP, COX-2, Caspase-9 and ACTB genes were quantified by real-time PCR. Flow cytometry analysis was performed using the Annexin V-FITC Apoptosis Detection Kit to evaluate the apoptotic effects of free SF compared with SF/PCL-PEG-PCL micelles. Study of the in vivo pharmacokinetics of the SF-loaded micelles was carried out on SF-loaded PCL-PEG-PCL micelles in comparison with free SF. The results of in vivo experiments indicated that the SF loaded micelles significantly reduced the tumor size. In vivo results showed that the multiple injections of SF-loaded micelles could prolong the circulation period and increase the therapeutic efficacy of SF. Also, in comparison with the free-SF solution, encapsulation of the SF in micelles increased the mean residence time from 0.5 to 4 h and the area under the concentration-time curve up to 50 folds.

摘要

本研究采用 PCL-PEG-PCL 共聚物建立了一种可靠高效的载药系统,用于抗癌化合物萝卜硫素(SF)。PCL-PEG-PCL 纳米粒包载 SF 后形成 SF 载药 PCL-PEG-PCL 胶束。通过 DLS 和 AFM 测定胶束的粒径、形貌及稳定性。SF 的载药率为 19.33±1.28%。AFM 结果表明,胶束呈球形,粒径为 107nm。SF 包封于胶束中的体外释放明显延长。通过 MTT 比色法分析游离 SF、PCL-PEG-PCL 和 SF/PCL-PEG-PCL 胶束对 MCF-7、4T1 和 MCF10A 细胞系的细胞毒性。采用实时荧光定量 PCR 法检测 BCL-2、PARP、COX-2、Caspase-9 和 ACTB 基因的表达水平。采用 Annexin V-FITC 凋亡检测试剂盒通过流式细胞术分析评估游离 SF 与 SF/PCL-PEG-PCL 胶束的凋亡作用。采用 SF 载药胶束的体内药代动力学研究与游离 SF 进行比较。体内实验结果表明,SF 载药胶束显著减小肿瘤体积。体内结果表明,SF 载药胶束多次注射可延长循环周期并提高 SF 的治疗效果。与游离 SF 溶液相比,SF 包封于胶束中可使平均滞留时间从 0.5 小时增加至 4 小时,AUC 增加至 50 倍。

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