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首页> 外文期刊>Colloids and Surfaces, B. Biointerfaces >Novel theranostic zinc phthalocyanine-phospholipid complex self-assembled nanoparticles for imaging-guided targeted photodynamic treatment with controllable ROS production and shape-assisted enhanced cellular uptake
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Novel theranostic zinc phthalocyanine-phospholipid complex self-assembled nanoparticles for imaging-guided targeted photodynamic treatment with controllable ROS production and shape-assisted enhanced cellular uptake

机译:新型治疗锌酞菁 - 磷脂复合物复合自组装纳米颗粒,用于成像引导的靶向光动力处理,具有可控的ROS生产和形状辅助增强的蜂窝摄取

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The novel drug delivery system based on self-assembly of zinc phthalocyanine-soybean phosphatidylcholine (ZnPc-SPC) complex was developed by a co-solvent method followed by a nanoprecipitaion technique. DSPE-PEG-methotrexate (DSPE-PEG-MTX) was introduced on the surface of ZnPc-SPC self assembled nanoparticles (ZS) to endow them with folate receptor-targeting property. NMR, XRD, FTIR, and UV-vis-NIR analysis demonstrated the weak molecular interaction between ZnPc and SPC. The ZS functionalized with DSPE-PEG-MTX (ZSPM) was successfully constructed with an average particle size of similar to 170 nm, a narrow size distribution, and could remain physiologically stable for at least 7 days. In vitro cellular uptake and cytotoxicity studies demonstrated that ZSPM exhibited stronger cellular uptake efficacy and photodynamic cytotoxicity against HeLa and MCF-7 cells than ZS functionalized with DSPE-mPEG (ZSP) and free ZnPc. More importantly, ZSPM showed the enhanced accumulation effect at the tumor region compared with ZSP by the active-plus-passive targeting via enhanced permeability and retention (EPR) effect and folate receptor-mediated endocytosis. Furthermore, in vivo antitumor effect and histological analysis demonstrated the superior tumor growth inhibition effect of ZSPM. In addition, the needle-shape ZSP (ZSPN) exhibited better in vitro cellular uptake and in vivo tumor accumulation compared with ZSP due to the shape-assisted effect. Moreover, the interesting off-on switch effect of reactive oxygen species (ROS) production of ZnPc-SPC complex-based nanoparticles was discovered to achieve photodynamic treatment in a controllable way. These findings suggested that the ZnPc-SPC complex based self-assembled nanoparticles could serve as a promising and effective formulation to achieve tumor-targeting fluorescence imaging and enhanced photodynamic treatment. (C) 2017 Published by Elsevier B.V.
机译:基于锌酞菁 - 大氧磷酰磷酰胆碱(ZnPC-SPC)复合物自组装的新型药物递送系统通过共溶剂方法,然后进行纳米沉淀技术。在ZnPC-SPC自组装纳米颗粒(ZS)的表面上引入DSPE-PEG-甲氨蝶呤(DSPE-PEG-MTX),以赋予它们叶酸受体靶向性质。 NMR,XRD,FTIR和UV-Vis-NIR分析证明了ZnPC和SPC之间的弱分子相互作用。用DSPE-PEG-MTX(ZSPM)官能化的ZS成功构建,平均粒度类似于170nm,窄尺寸分布,并且可以在生理上稳定至少7天。体外细胞摄取和细胞毒性研究表明,ZSPM对Hela和MCF-7细胞的较强的细胞摄取功效和光动力学细胞毒性而不是用DSPE-MPEG(ZSP)和游离ZnPC官能化的Zs。更重要的是,通过增强的渗透率和保留(EPR)效应和叶酸受体介导的内吞作用,ZSPM与ZSP相比,ZSPM与ZSP相比,在肿瘤区的增强累积效果。此外,在体内抗肿瘤效应和组织学分析中表现出ZSPM的优异肿瘤生长抑制作用。另外,由于形状辅助效应,针形ZSP(ZSPN)表现出更好的体外细胞摄取和体内肿瘤积累。此外,发现ZnPC-SPC复合物纳米粒子的反应性氧物质(ROS)产生的有趣的关闭交换效果,以以可控方式实现光动力学处理。这些发现表明,基于ZnPC-SPC复合物的自组装纳米颗粒可以作为有前途和有效的制剂,以实现肿瘤靶向荧光成像和增强的光动力处理。 (c)2017年由Elsevier B.V发布。

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