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首页> 外文期刊>Biomaterials >Co-delivery of PDTC and doxorubicin by multifunctional micellar nanoparticles to achieve active targeted drug delivery and overcome multidrug resistance.
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Co-delivery of PDTC and doxorubicin by multifunctional micellar nanoparticles to achieve active targeted drug delivery and overcome multidrug resistance.

机译:PDTC和阿霉素通过多功能胶束纳米颗粒共同递送,从而实现主动靶向药物递送并克服了多重耐药性。

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Micellar nanoparticles self-assembled from copolymer folate-chitosan (FA-CS) were employed as carriers to co-deliver Pyrrolidinedithiocarbamate (PDTC) and doxorubicin (DOX) to achieve targeted DOX delivery, with a pH responsive drug release, and to overcome DOX multidrug resistance (MDR). The successful synthesis of FA-CS was determined by NMR. Average particle size was small enough to achieve longevity during systemic circulation. Lower CACs in neutral and alkalescent conditions rather than an acid pH may lead to maintenance of good stability of the micellar nanoparticles in the blood stream. DOX and PDTC encapsulating efficiencies of the micellar nanoparticles were 77.64 and 86.54 wt% while loading content was 12.34 and 15.32 wt%, respectively. The release of DOX at neutral or alkalescent pH was slow and sustained, however, in the weak acidic environment, was much faster with close to 75-95% of its total drug content being released within the first 2 h. A lower IC(50) of DOX-loaded micellar nanoparticles suggested that FA-CS micelles greatly enhanced the cellular uptake efficiency. Fluorescence microscopy micrographs further verified that DOX released from CS-FA micelles could be pH sensitive and achieved intracellular targeting. It was confirmed by flow cytometry analysis that co-delivery of PDTC and DOX may further overcome the MDR of DOX besides the folate receptor mediated endocytosis process. This co-delivery system may have important clinical implications against liver cancers.
机译:由共聚物叶酸-壳聚糖(FA-CS)自组装的胶束纳米颗粒用作载体,共同递送吡咯烷二硫代氨基甲酸酯(PDTC)和阿霉素(DOX)以实现靶向DOX的递送,并具有pH响应性药物释放,并克服了DOX多药的问题抵抗力(MDR)。通过NMR确定FA-CS的成功合成。平均粒径小得足以在全身循环中达到长寿。在中性和碱性条件下,较低的CAC(而不是酸性pH)可能导致维持胶束纳米颗粒在血流中的良好稳定性。胶束纳米颗粒的DOX和PDTC包封效率分别为77.64和86.54 wt%,而负载量分别为12.34和15.32 wt%。在中性或碱性pH下,DOX的释放缓慢且持续,但是在弱酸性环境中,DOX的释放要快得多,在最初的2小时内释放了近75-95%的总药物含量。较低的IC(50)的DOX加载胶束纳米颗粒表明FA-CS胶束大大提高了细胞的吸收效率。荧光显微镜显微照片进一步证实,从CS-FA胶束释放的DOX可能对pH敏感,并且可以实现细胞内靶向。通过流式细胞术分析证实,除了叶酸受体介导的内吞作用之外,PDTC和DOX的共同递送可以进一步克服DOX的MDR。这种共同给药系统可能对肝癌具有重要的临床意义。

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