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首页> 外文期刊>International Journal of Pharmaceutics >Glutathione-sensitive PEGylated curcumin prodrug nanomicelles: Preparation, characterization, cellular uptake and bioavailability evaluation
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Glutathione-sensitive PEGylated curcumin prodrug nanomicelles: Preparation, characterization, cellular uptake and bioavailability evaluation

机译:谷胱甘肽敏感的聚乙二醇化姜黄素前药纳米乳蛋白:制备,表征,细胞摄取和生物利用度评价

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摘要

The anti-tumor efficacy of curcumin can be markedly improved by nano-drug self-delivery systems with high drug loading capacity and smart stimulus-triggered drug release in tumor cells. Herein, a type of novel, glutathione (GSH)-responsive, PEGylated prodrug nano-micelles (PPNMs) was prepared by self-assembly of curcumin-s-s-vitamin E/mPEG2k-DSPE mixture. The PPNMs (entrapment efficiency: 96.7%) was acceptably stable in water with a mean particle size of 29.84 nm. Compared with curcumin-loaded mPEG2k-DSPE nano-micelles (CUR-NMs), PPNMs showed a higher drug loading (1.68% vs 27.3%) and remarkably improved the chemical stability of curcumin in phosphate buffer saline (PBS) (pH = 7.4), 10% FBS culture medium, and rat plasma. In vitro release study showed that PPNMs could redox responsively control the release of curcumin from the prodrug. Moreover, PPNMs showed a cytotoxicity in HepG2 cells similar to that of the free curcumin; however, when the HepG2 cells were pretreated with 1 mM GSH, PPNMs displayed a markedly enhanced cytotoxicity and cellular uptake than the free curcumin. After intravenous injection, PPNMs showed an increased half-life in blood circulation (10.6-fold) and bioavailability (107-fold) compared with the free curcumin injection. Altogether, the prodrug nano-micelles represent a promising preparation for sustained and controlled delivery of curcumin with enhanced antitumor activity.
机译:姜黄素的抗肿瘤功效可以通过在肿瘤细胞中高药物负载能力和智能刺激触发药物释放的纳米药物自我递送系统显着地改善。在本文中,一种类型的新颖的,谷胱甘肽(GSH)响应性,PEG化的前药纳米胶束(PPNMs)通过自组装姜黄素S-S-维生素E / mPEG2k-DSPE混合物的制备。所述PPNMs(包封率:96.7%)在水中可接受的稳定具有29.84 nm的平均粒度。姜黄素加载mPEG2k-DSPE纳米胶束(CUR-NMS)相比,PPNMs表现出较高的载药量(1.68%对27.3%),并显着地在磷酸盐缓冲盐水提高姜黄素的化学稳定性(PBS)(pH值= 7.4) ,10%FBS培养基中,和大鼠血浆。体外释放实验表明,PPNMs可能氧化还原响应控制姜黄素从前药的释放。此外,PPNMs表现出类似于游离姜黄素的HepG2细胞细胞毒性;然而,当将HepG2细胞用1mM GSH预处理,PPNMs显示得比游离姜黄素具有显着增强的细胞毒性和细胞摄取。静脉内注射后,在PPNMs血液循环(10.6倍)和生物利用度显示出增加的半衰期(107倍)与游离姜黄素注射相比较。总而言之,前药纳米胶束代表用于具有增强的抗肿瘤活性的姜黄素持续和受控递送有希望的制剂。

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