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首页> 外文期刊>Journal of drug delivery science and technology >Didodecyldimethylammonium bromide (DMAB) stabilized poly(lactic-co-glycolic acid) (PLGA) nanoparticles: Uptake and cytotoxic potential in Caco2 cells
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Didodecyldimethylammonium bromide (DMAB) stabilized poly(lactic-co-glycolic acid) (PLGA) nanoparticles: Uptake and cytotoxic potential in Caco2 cells

机译:脱发二癸二甲基溴化铵(DMAB)稳定化聚(乳酸 - 共乙醇酸)(PLGA)纳米颗粒:CaCO 2细胞摄取和细胞毒性潜力

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摘要

Surface cationization of nanoparticulate drug delivery systems represents one important strategy in the field of novel drug development to enable enhanced cellular uptake in vitro and consequently an improved bioavailability in vivo. The aim of this study is the characterization of a new cationic nanoparticle system, which provides an improved cellular uptake in epithelial cells of the gastrointestinal tract as well as low cytotoxicity. We have successfully prepared fluorescent-labeled didodecyldimethylammonium bromide (DMAB)-stabilized poly(lactic-co-glycolic acid) (PLGA)-based nanoparticles, which were additionally modified using two hydrophilic polymers: polyvinyl alcohol (PVA) and polyethylene glycol (PEG). The nanoparticles were examined with regard to stability of fluorescence labeling, DMAB content, cellular uptake, and cytotoxicity. Consequently, we could show, that the surface modifications lead to a decreased cytotoxic activity in contrast to unmodified nanoparticles against human epithelial colorectal adenocarcinoma cells (Caco-2) as well as a promising increase in cellular uptake in comparison to negatively charged PLGA nanoparticles combining the advantages of a superior uptake of a positively charged nanoparticle system with the biological safety of negatively charged systems.
机译:纳米颗粒药物递送系统的表面阳离子化代表了一种新型药物开发领域的一个重要策略,使得能够增强细胞吸收体外,并因此改善了体内的生物利用度。该研究的目的是一种新的阳离子纳米粒子系统的表征,其在胃肠道的上皮细胞以及低细胞毒性方面提供了改善的细胞摄取。我们已经成功地制备了荧光标记的DIDodeCyldimethylium溴化溴铵(DMAB) - 基于纳米颗粒的纳米颗粒,其基础纳米颗粒,其使用两种亲水性聚合物(PVA)和聚乙二醇(PEG)另外改性。 。考虑纳米颗粒关于荧光标记,DMAB含量,细胞摄取和细胞毒性的稳定性。因此,我们可以表明,与针对人上皮结肠癌细胞(Caco-2)的未改性的纳米颗粒相比,表面修饰导致细胞毒性活性降低,以及相对于带负电荷的PLGA纳米颗粒组合的蜂窝摄取的有希望的植物吸收增加具有带带负电系统的生物安全性的带正电荷的纳米粒子系统的优点。

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