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Functional poly(ε-caprolactone) based materials: preparation, self-assembly and application in drug delivery.

机译:功能性聚(ε-己内酯)基材料:制备,自组装以及在药物输送中的应用。

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摘要

Recent advances in synthesis of functional poly-ε-caprolactone (PCL) and its self-assembly behavior, as well as application in drug delivery have been reviewed. Three strategies including end group functionalization, postpolymerization modification and new monomer preparation have been summarized to show possibilities for PCL derivatives. Complex architectures like cyclic and multi-arm PCL have been emphasized. Both chemical composition and topology have coordinately affected the property of PCL-based materials on the molecular level. A large variety of PCLs with sophisticated topology like block, graft, cyclic, and star have displayed versatile morphologies in solutions. These selfassembly aggregates have been applied as nano-scaled drug carries either to physically encapsulate or covalently conjugate drugs for controlled release. In particular, PCL with pendant groups has been extensively studied to illustrate the noncovalent interaction with drugs and the influence on the release profile. In general, functional PCL has shown great potential in construct of complicated supramolecular structures, and thus as ideal drug carriers for sustainable and targeted delivery.
机译:综述了功能性聚ε-己内酯(PCL)的合成及其自组装行为及其在药物递送中的应用方面的最新进展。总结了包括端基官能化,后聚合修饰和新单体制备在内的三种策略,以显示PCL衍生物的可能性。强调了复杂的体系结构,例如循环和多臂PCL。化学组成和拓扑结构都已在分子水平上协调影响了PCL基材料的性能。各种各样具有复杂拓扑的PCL(例如嵌段,接枝,环状和星形)已在解决方案中显示了多种形态。这些自组装聚集体已被应用为纳米级药物携带物,以物理包裹或共价结合药物以进行控释。特别是,对带有侧基的PCL进行了广泛的研究,以说明与药物的非共价相互作用以及对释放曲线的影响。通常,功能性PCL在复杂的超分子结构的构建中显示出巨大的潜力,因此作为可持续和靶向递送的理想药物载体。

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