Department of Chemistry, McGill University, 801 Sherbrooke St. West, Montreal, Quebec H3A 0B8, Canada.
Department of Chemical Engineering, Amirkabir University of Technology (Tehran Polytechnic), Tehran 1591634311, Iran.
Mol Pharm. 2022 Jun 6;19(6):1687-1703. doi: 10.1021/acs.molpharmaceut.1c00928. Epub 2022 Feb 14.
Self-assembly of amphiphilic macromolecules has provided an advantageous platform to address significant issues in a variety of areas, including biology. Such soft nanoparticles with a hydrophobic core and hydrophilic corona, referred to as micelles, have been extensively investigated for delivering lipophilic therapeutics by physical encapsulation. Polymeric vesicles or polymersomes with similarities in morphology to liposomes continue to play an essential role in understanding the behavior of cell membranes and, in addition, have offered opportunities in designing smart nanoformulations. With the evolution in synthetic methodologies to macromolecular precursors, the construction of such assemblies can now be modulated to tailor their properties to match desired needs. This review brings into focus the current state-of-the-art in the design of polymersomes using amphiphilic miktoarm star polymers through a detailed analysis of the synthesis of miktoarm star polymers with tuned lengths of varied polymeric arms, their self-assembly, and applications in drug delivery.
两亲性大分子的自组装为解决包括生物学在内的多个领域的重大问题提供了一个有利的平台。通过物理封装,具有疏水性内核和亲水性冠的此类软纳米颗粒(称为胶束)已被广泛用于递送脂溶性治疗剂。形态上与脂质体相似的聚合物囊泡或聚合物胶束在理解细胞膜行为方面继续发挥着重要作用,此外,它们还为设计智能纳米制剂提供了机会。随着对大分子前体的合成方法的发展,现在可以调节此类组装体的构建,以使其性质与所需的需求相匹配。通过详细分析具有不同长度的聚合物臂的两亲性杂臂星型聚合物的合成、自组装以及在药物传递中的应用,本综述重点介绍了使用两亲性杂臂星型聚合物设计聚合物胶束的最新进展。