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首页> 外文期刊>Journal of Materials Chemistry, B. materials for biology and medicine >Novel methotrexate prodrug-targeted drug delivery system based on PEG-lipid-PLA hybrid nanoparticles for enhanced anticancer efficacy and reduced toxicity of mitomycin C
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Novel methotrexate prodrug-targeted drug delivery system based on PEG-lipid-PLA hybrid nanoparticles for enhanced anticancer efficacy and reduced toxicity of mitomycin C

机译:基于PEG-脂质-PLA杂化纳米粒子的新型甲氨蝶呤前药靶向药物递送系统,可增强抗癌功​​效并降低丝裂霉素C的毒性

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摘要

In the present study we have investigated novel MTX prodrug-targeted and MMC-loaded PLA-lipid-PEG hybrid NPs. These employ a double emulsion solvent evaporation method for the introduction of an anticancer drugs moiety of the MMC-soybean phosphatidylcholine complex or DSPE-PEG-MTX, in which the MTX prodrug can be exploited as a targeting ligand. The prepared drug delivery systems present a spherical shape, a small particle size (219.6 ± 2.1 nm) with narrow particle size distribution, high MMC encapsulation efficiency (90.5 ± 3.0%) and a sustained and pH-controlled MMC release. The advantage of the new drug delivery systems is that the two-anticancer drug moiety can coordinate the early-phase targeting effect with the later-phase anticancer effect. In vivo pharmacokinetics, following intravenous administration of the drug delivery systems, indicates a prolonged systemic circulation time of MMC. More importantly, the drug delivery systems exhibited a significant accumulation of MMC in the nuclei as the site of MMC action, which was indicative of the enhancement of anticancer activity. Such a design of drug delivery systems may open up a new horizon for targeted delivery and sustained and controlled release of MMC,
机译:在本研究中,我们研究了靶向MTX前药和MMC加载的PLA-脂质-PEG杂合NP。它们采用双乳剂溶剂蒸发法引入MMC-大豆磷脂酰胆碱复合物或DSPE-PEG-MTX的抗癌药物部分,其中MTX前药可被用作靶向配体。制备的药物递送系统呈现球形,小粒径(219.6±2.1 nm),窄粒径分布,高MMC包封效率(90.5±3.0%)以及可控制pH的MMC持续释放。新药物递送系统的优点在于,两种抗癌药物部分可以协调早期靶向作用与晚期抗癌作用。静脉内给药系统之后,体内药代动力学表明MMC的全身循环时间延长。更重要的是,药物递送系统在细胞核中表现出MMC大量积聚,作为MMC作用的部位,这表明抗癌活性增强。这样的药物输送系统设计可能会为定向输送以及MMC的持续释放和控制释放开辟新的视野,

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