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首页> 外文期刊>Macromolecular Research >Molecular Engineering of Metal-Organic Cycles/Cages for Drug Delivery
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Molecular Engineering of Metal-Organic Cycles/Cages for Drug Delivery

机译:药物 - 有机循环/笼子的分子工程

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The assembly of nanoscale materials with well-defined size and shape is an intriguing approach to aid in drug design and delivery. Of the various nano-structures that have been synthesised, metal-organic cycles and cages (MOCs), featuring great structural versatility, have emerged as promising components in cancer chemotherapeutics. We review the recent progress of exploiting self-assembled MOCs as anticancer drugs as well as drug carriers. Particularly molecular engineering designs allow MOCs to carry drugs with specificity, and interface with biological systems whilst possessing the desired stability, cytotoxicity, and compatibility. A special focus is given to the functionalization method of integrating MOCs with polymers, leading to the synthesis of colloidal nanoparticles-micelles and vesicles-that possess combined properties and extended system tunability.
机译:具有明确定义尺寸和形状的纳米级材料的组装是一种有趣的方法,可以帮助药物设计和递送。 在合成的各种纳米结构中,金属 - 有机循环和笼(MOC)具有巨大结构多种能力,已成为癌症化学治疗剂中有前途的成分。 我们审查了最近利用自组装MOC作为抗癌药物以及药物载体的进展。 特别是分子工程设计允许MOCs携带特异性的药物,并且具有与具有所需稳定性,细胞毒性和相容性的生物系统的界面。 将特殊焦点提供给将MOC与聚合物集成的官能化方法,导致胶体纳米颗粒 - 胶束和囊泡的合成 - 具有组合性能和扩展系统可调性。

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