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首页> 外文期刊>RSC Advances >Towards potent but less toxic nanopharmaceuticals - lipoic acid bioconjugates of ultrasmall gold nanoparticles with an anticancer drug and addressing unit
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Towards potent but less toxic nanopharmaceuticals - lipoic acid bioconjugates of ultrasmall gold nanoparticles with an anticancer drug and addressing unit

机译:朝着有效但较低的纳米药物 - 具有抗癌药物和寻址单元的超超级金纳米粒子的硫辛酸生物缀合物

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摘要

Modification of ultrasmall gold nanoparticles (AuNPs) with the lipoic acid derivative of folic acid was found to enhance their accumulation in the cancer cell, as compared to AuNPs without addressing units. The application of lipoic acid enabled the control of the gold nanoparticle functionalities leading to enhanced solubility and allowing for attachment of both the folic acid and the cytotoxic drug, doxorubicin. More robust attachment of doxorubicin to the nanoparticle through the amide bond resulted in toxicity comparable with that of the drug alone, opening a new perspective for designing more potent, but less toxic nanopharmaceuticals. The increased uptake was accompanied by pronounced nuclear accumulation and observable cytotoxicity. Doxorubicin binding via covalent amide bonds enhanced stability of the whole drug vehicle and provided much better control over doxorubicin release in the cell environment, as compared to physical adsorption or pH sensitive bonding commonly used for anthracycline carriers. Confocal microscopy revealed that the bond was stable in the cytoplasm for 22 h. The ability to slow down the rate of drug release may be crucial for the application in sustained anticancer drug delivery. Biological analyses performed using MTT assay and confocal microscopy confirmed that the ultrasmall AuNPs with the lipoic acid derivative of folic acid exhibit relatively low cytotoxicity, however when loaded with a chemotherapeutic, they cause a significant reduction in the cell viability.
机译:发现与叶酸的硫辛酸衍生物的改变改性叶酸的硫酸衍生物,与没有寻址单元的肛门肟相比,增强它们在癌细胞中的积累。硫辛酸的施用使得控制金纳米粒子官能团,导致增强溶解度并允许附着叶酸和细胞毒性药物,多柔比星。通过酰胺键更稳健地将多柔比星与纳米颗粒的附着导致毒性与单独的药物相当,开启了设计更有效,但含有较小的纳米药物的新视角。增加的摄取伴随着明显的核积累和可观察的细胞毒性。通过共价酰胺键的多柔比星结合,增强了整个药物载体的稳定性,并且与常用于蒽环载体的物理吸附或pH敏感键相比,在细胞环境中提供了更好地对多柔比星释放的控制。共聚焦显微镜显示,键在细胞质中稳定22小时。减缓药物释放速率的能力可能对持续抗癌药物递送的应用至关重要。使用MTT测定和共聚焦显微镜进行的生物学分析证实,具有叶酸的硫辛酸衍生物的超大肛门肟表现出相对低的细胞毒性,然而,当加上化学治疗时,它们导致细胞活力显着降低。

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  • 来源
    《RSC Advances 》 |2018年第27期| 共11页
  • 作者单位

    Univ Warsaw Fac Chem Pasteura 1 PL-02093 Warsaw Poland;

    Univ Warsaw Fac Chem Pasteura 1 PL-02093 Warsaw Poland;

    Univ Warsaw Fac Chem Pasteura 1 PL-02093 Warsaw Poland;

    Univ Warsaw Fac Chem Biol &

    Chem Res Ctr Czochralski Lab Adv Crystal Engn Zwirki &

    Wigury 101 PL-02089 Warsaw Poland;

    Inst Nucl Chem &

    Technol Ctr Radiobiol &

    Biol Dosimetry Dorodna 16 PL-03195 Warsaw Poland;

    Inst Nucl Chem &

    Technol Ctr Radiobiol &

    Biol Dosimetry Dorodna 16 PL-03195 Warsaw Poland;

    Inst Nucl Chem &

    Technol Ctr Radiobiol &

    Biol Dosimetry Dorodna 16 PL-03195 Warsaw Poland;

    Univ Warsaw Fac Chem Pasteura 1 PL-02093 Warsaw Poland;

    Univ Warsaw Fac Chem Pasteura 1 PL-02093 Warsaw Poland;

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

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