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A novel self-assembled nanoparticle platform based on pectin-eight-arm polyethylene glycol-drug conjugates for co-delivery of anticancer drugs

机译:基于果胶-八臂聚乙二醇-药物共轭物的新型自组装纳米颗粒平台,用于共同递送抗癌药物

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摘要

The application of non-toxic carriers to increase drug loading, multi-drug delivery, and extremely small size of nano-drugs to construct a tremendous transmission system is the goal for all researchers to be pursued. The proposal of natural pectin nano-platform for delivery of multiple drugs is critical for biomedical research, especially a particle size of below 100nm with high yield. Here we design a new core-shell structure pectin-eight-arm polyethylene glycol-ursolic acid/hydrooxycampothecin nanoparticle (Pec-8PUH NPs) through a special self-assembly method for stabilizing and dispersing particles, improving water-solubility, and achieving drug controlled release. The obtained Pec-8PUH NPs possessed appropriate size (~91nm), drug-loaded efficiency and encapsulation efficiency through the regulation of eight-arm polyethylene glycol. In addition, Pec-8PUH NPs could enhance cell cytotoxicity, shorten blood retention time (7.3-fold UA, 7.2-fold HCPT) and more effective cellular uptake than free drugs, which exhibited an obvious synergistic effect of UA and HCPT by the co-delivery. 4T1 tumor-bearing mice also showed a higher survival rate than free UA and free HCPT. The result further shows that this novel drug delivery system has a promising potential for anti-cancer combination therapy.
机译:应用无毒载体增加药物载量,多种药物的输送以及极小尺寸的纳米药物以构建巨大的传输系统是所有研究人员追求的目标。天然果胶纳米平台用于多种药物递送的提议对于生物医学研究至关重要,尤其是粒径低于100nm且具有高产量的颗粒。在这里,我们通过特殊的自组装方法设计了一种新的核-壳结构果胶-八臂聚乙二醇-熊果酸/氢氧喜树碱纳米颗粒(Pec-8PUH NPs),以稳定和分散颗粒,提高水溶性,实现药物控制释放。通过调节八臂聚乙二醇,获得的Pec-8PUH NP具有合适的尺寸(〜91nm),载药效率和包封效率。此外,Pec-8PUH NP比游离药物可增强细胞毒性,缩短血液保留时间(UA的7.3倍,HCPT的7.2倍)和更有效的细胞摄取,这表明UA和HCPT的协同作用具有明显的协同作用。交货。携带4T1肿瘤的小鼠还显示出比游离UA和游离HCPT更高的存活率。结果进一步表明,这种新颖的药物递送系统具有抗癌联合治疗的潜在潜力。

著录项

  • 来源
    《Materials science & engineering》 |2018年第5期|28-41|共14页
  • 作者单位

    Beijing Key Laboratory of Lignocellulosic Chemistry, MOE Engineering Research Center of Forestry Biomass Materials and Bioenergy, Beijing Forestry University;

    Beijing Key Laboratory of Lignocellulosic Chemistry, MOE Engineering Research Center of Forestry Biomass Materials and Bioenergy, Beijing Forestry University;

    Beijing Key Laboratory of Lignocellulosic Chemistry, MOE Engineering Research Center of Forestry Biomass Materials and Bioenergy, Beijing Forestry University;

    Beijing Key Laboratory of Lignocellulosic Chemistry, MOE Engineering Research Center of Forestry Biomass Materials and Bioenergy, Beijing Forestry University;

    Beijing Key Laboratory of Lignocellulosic Chemistry, MOE Engineering Research Center of Forestry Biomass Materials and Bioenergy, Beijing Forestry University;

    Beijing Key Laboratory of Lignocellulosic Chemistry, MOE Engineering Research Center of Forestry Biomass Materials and Bioenergy, Beijing Forestry University;

    Beijing Key Laboratory of Lignocellulosic Chemistry, MOE Engineering Research Center of Forestry Biomass Materials and Bioenergy, Beijing Forestry University;

    Beijing Key Laboratory of Lignocellulosic Chemistry, MOE Engineering Research Center of Forestry Biomass Materials and Bioenergy, Beijing Forestry University;

    Beijing Key Laboratory of Lignocellulosic Chemistry, MOE Engineering Research Center of Forestry Biomass Materials and Bioenergy, Beijing Forestry University;

    Beijing Key Laboratory of Lignocellulosic Chemistry, MOE Engineering Research Center of Forestry Biomass Materials and Bioenergy, Beijing Forestry University;

    Beijing Key Laboratory of Lignocellulosic Chemistry, MOE Engineering Research Center of Forestry Biomass Materials and Bioenergy, Beijing Forestry University;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Nanoparticle; Pectin; Self-assemble; Co-delivery; Conjugate;

    机译:纳米颗粒;果胶;自组装;共递送;共轭;

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