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首页> 外文期刊>Biomacromolecules >Shell-Sheddable, pH-Sensitive Supramolecular Nanoparticles Based on Ortho Ester-Modified Cyclodextrin and Adamantyl PEG
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Shell-Sheddable, pH-Sensitive Supramolecular Nanoparticles Based on Ortho Ester-Modified Cyclodextrin and Adamantyl PEG

机译:基于Ortho酯改性的环糊精和金刚烷栓的壳脱落,pH敏感的超分子纳米粒子

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摘要

We report a new type of pH-sensitive supra-molecular aggregates which possess a programmable character of sequential dePEGylation and degradation. As a platform of designing and building multifunctional supramolecular nanoparticles, a family of 6-OH ortho ester-modified β-cyclodextrin (β-CD) derivatives have been synthesized via the facile reaction between β-CD and cyclic ketene acetals with different alkyl lengths. These asymmetric acid-labile β-CD derivatives formed amphiphilic supramolecules with adamantane-modified PEG through host-guest interaction in polar solvents such as ethanol. The supramolecules can self-assemble in water to form acid-labile supramolecular aggregates. The results of TEM and light scattering measurements demonstrate that the size and morphology of the aggregates are influenced by the alkyl or PEG length and the host-guest feed ratio. By carefully balancing the alkyl and PEG lengths and adjusting the host-guest ratio, well-dispersed vesicles (50-100 nm) or sphere-like nanoparticles (200-500 nm) were obtained. Zeta potential measurements reveal that these supramolecular aggregates are capable of being surface-functionalized via dynamic host-guest interaction. The supramolecular aggregates were stable at pH 8.4 for at least 12 h as proven by the ~1H NMR and LLS measurements. However, rapid dePEGylation occurred at pH 7.4 due to the hydrolysis of the ortho ester linkages locating at the interface, which resulted in aggregation of the dePEGylated hydrophobic inner cores. Upon further decreasing the pH to 6.4, the hydrophobic cores were further degraded due to the acid-accelerated hydrolysis of the ortho esters. The incubation stability of the acid-labile supramolecular aggregates in neutral buffer could be improved by incorporating hydrophobic poly(ε-caprolactone) into the core of the aggregates.
机译:我们报告了一种新型的pH敏感的Supra分子聚集体,其具有顺序代表和降解的可编程性质。作为设计和建造多功能超分子纳米颗粒的平台,通过β-CD与环状酮缩醛与不同烷基长度之间的体内反应合成了一个6-OH酯改性的β-环糊精(β-CD)衍生物。这些不对称的酸不稳定的β-CD衍生物通过宿主 - 访客在极性溶剂如乙醇中的宿主 - 访客的相互作用使两亲子超分子形成两亲子。超分子可以在水中自组装以形成酸不稳定的超分子聚集体。 TEM和光散射测量的结果表明,聚集体的尺寸和形态受烷基或PEG长度和宿主 - 访客进料比的影响。通过小心地平衡烷基和PEG长度并调节宿主客房比,获得井分散的囊泡(50-100nm)或球状纳米颗粒(200-500nm)。 Zeta电位测量表明,这些超分子聚集体能够通过动态宿主 - 访客交互进行表面官能化。通过〜1H NMR和LLS测量证明,超分子聚集体在pH 8.4稳定至少12小时。然而,由于在界面处定位的邻酯键的水解,在pH7.4中发生快速的Depynation,这导致疏水性内芯的聚集。在进一步减少pH至6.4时,由于邻酯的酸性水解而进一步降解疏水核。通过将疏水性聚(ε-己内酯)纳入聚集体的核心,可以提高中性缓冲液中酸不稳定的超分子聚集体的孵育稳定性。

著录项

  • 来源
    《Biomacromolecules 》 |2014年第10期| 共9页
  • 作者

    Ran Ji; Jing Cheng; Ting Yang;

  • 作者单位

    Beijing National Laboratory for Molecular Sciences Key Laboratory of Polymer Chemistry and Physics of Ministry of Education College of Chemistry and Molecular Engineering Peking University Beijing 100871 China;

    Beijing National Laboratory for Molecular Sciences Key Laboratory of Polymer Chemistry and Physics of Ministry of Education College of Chemistry and Molecular Engineering Peking University Beijing 100871 China;

    Beijing National Laboratory for Molecular Sciences Key Laboratory of Polymer Chemistry and Physics of Ministry of Education College of Chemistry and Molecular Engineering Peking University Beijing 100871 China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 分子生物学 ;
  • 关键词

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