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Miktoarm Star Polymers: Branched Architectures in Drug Delivery

机译:Miktoarm Star Polymers:药物交付中的分支架构

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摘要

Delivering active pharmaceutical agents to disease sites using soft polymeric nanoparticles continues to be a topical area of research. It is becoming increasingly evident that the composition of amphiphilic macromolecules plays a significant role in developing efficient nanoformulations. Branched architectures with asymmetric polymeric arms emanating from a central core junction have provided a pivotal venue to tailor their key parameters. The build-up of miktoarm stars offers vast polymer arm tunability, aiding in the development of macromolecules with adjustable properties, and allows facile inclusion of endogenous stimulus-responsive entities. Miktoarm star-based micelles have been demonstrated to exhibit denser coronae, very low critical micelle concentrations, high drug loading contents, and sustained drug release profiles. With significant advances in chemical methodologies, synthetic articulation of miktoarm polymer architecture, and determination of their structure-property relationships, are now becoming streamlined. This is helping advance their implementation into formulating efficient therapeutic interventions. This review brings into focus the important discoveries in the syntheses of miktoarm stars of varied compositions, their aqueous self-assembly, and contributions their formulations are making in advancing the field of drug delivery.
机译:使用软聚合物纳米粒子递送至疾病部位的活性药物继续成为研究的局部。越来越明显地明显,两亲型大分子的组成在显影有效的纳米族种类中起着重要作用。具有来自中央核心结发出的不对称聚合物臂的分支架构提供了枢转场地,以定制其关键参数。 Miktoarm Stars的积累提供了巨大的聚合物臂可调性,助攻在具有可调节性能的大分子的开发中,并允许容纳内源性刺激响应实体的包围。已经证明了Miktoarm基胶束表现出浓度冠状病,临界胶束浓度,高药物装载含量和持续的药物释放曲线。随着化学方法的显着进展,MiktoarM聚合物结构的合成关节以及它们的结构性质关系的确定,现在变得精简。这有助于提高其实施,以制定有效的治疗干预措施。本综述将重点关注MiktoarM恒星的合成中的重要发现,它们的自我组装和其配方正在推进药物递送领域的贡献。

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