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Multifunctional Surface Modification of Gold-Stabilized Nanoparticles by Bioorthogonal Reactions

机译:金稳定的纳米粒子通过生物正交反应的多功能表面改性。

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摘要

Nanocarriers that combine multiple properties in an all-in-one system hold great promise for drug delivery. The absence of technology to assemble highly functionalized devices has, however, hindered progress in nanomedicine. To address this deficiency, we have chemically synthesized poly(ethylene oxide)-/J-poly(£-caprolactone) (PEO-WCL) block polymers modified at the apolar PCL terminus with thioctic add and at the polar PEO terminus with an acylhydrazide, amine, or azide moiety. The resulting block polymers were employed to prepare nanoparticles that have a gold core, an apolar polyester layer for drug loading, a polar PEO corona to provide biocompatibility, and three different types of surface reactive groups for surface functionalization. The acylhydrazide, amine, or azide moieties of the resulting nanoparticles could be reacted with high efficiencies with modules having a ketone, isocyanate, or active ester and alkyne function, respectively. To demonstrate proof of principle of the potential of multisurface functionalization, we prepared nanoparticles that have various combinations of an oligo-arginine peptide to facilitate cellular uptake, a histidine-rich peptide to escape from lysosomes, and an Alexa Fluor 488 tag for imaging purposes. It has been shown that uptake and subcellular localization of the nanoparticles can be controlled by multisurface modification. It is to be expected that the modular synthetic methodology provides unique opportunities to establish optimal configurations of nanocarriers for disease-specific drug delivery.
机译:在一个多合一的系统中结合多种特性的纳米载体对药物输送具有广阔的前景。然而,缺乏组装高度功能化装置的技术阻碍了纳米医学的发展。为了解决这一不足,我们已经化学合成了聚(环氧乙烷)-/ J-聚(ε-己内酯)(PEO-WCL)嵌段聚合物,该聚合物在非极性PCL末端用硫辛酸加成,在极性PEO末端用酰肼改性,胺或叠氮化物部分。所得的嵌段聚合物用于制备具有金芯,用于载药的非极性聚酯层,用于提供生物相容性的极性PEO电晕以及用于表面功能化的三种不同类型的表面反应基团的纳米粒子。所得纳米颗粒的酰肼,胺或叠氮化物部分可以分别与具有酮,异氰酸酯或活性酯和炔烃功能的模块高效反应。为了证明多表面功能化潜力的原理证明,我们制备了具有寡聚精氨酸肽以促进细胞摄取,富含组氨酸的肽从溶酶体中逃逸以及Alexa Fluor 488标签用于成像目的的各种组合的纳米颗粒。已经表明,可以通过多表面修饰来控制纳米颗粒的摄取和亚细胞定位。可以预期的是,模块化合成方法学为建立用于疾病特异性药物递送的纳米载体的最佳构型提供了独特的机会。

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  • 来源
    《Journal of the American Chemical Society》 |2011年第29期|p.11147-11153|共7页
  • 作者单位

    Complex Carbohydrate Research Center, University of Georgia, 315 Riverbend Road, Athens, Georgia 30602, United States;

    Complex Carbohydrate Research Center, University of Georgia, 315 Riverbend Road, Athens, Georgia 30602, United States;

    Complex Carbohydrate Research Center, University of Georgia, 315 Riverbend Road, Athens, Georgia 30602, United States;

    Complex Carbohydrate Research Center, University of Georgia, 315 Riverbend Road, Athens, Georgia 30602, United States;

    Complex Carbohydrate Research Center, University of Georgia, 315 Riverbend Road, Athens, Georgia 30602, United States;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
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