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首页> 外文期刊>Progress in Polymer Science >Poly(2-oxazoline)-based stimulus-responsive (Co)polymers: An overview of their design, solution properties, surface-chemistries and applications
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Poly(2-oxazoline)-based stimulus-responsive (Co)polymers: An overview of their design, solution properties, surface-chemistries and applications

机译:基于聚(2-恶唑啉)的刺激响应(CO)聚合物:其设计,溶液性能,表面化学品和应用概述

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摘要

Pseudopeptidic poly(2-oxazoline)s are a special class of bio-inspired polymers with multiple applications, especially in the field of polymer therapeutics. Unsurprisingly, poly(2-oxazoline) has been extensively studied in recent decades, and pioneering studies on these polymers have shown that nonionic, hydrophilic and thermo-responsive poly(2-oxazoline)s are comparable to and sometimes even more advantageous than poly( ethylene glycol) for biomedical applications. Considering their applications in the biomedical field, stimuli-responsive polymer materials open new opportunities for in vivo applications such as on-demand drug delivery, tissue repairing, biosensing and smart coatings, among others. In this context, this article is a comprehensive review of recent advances in stimuli-responsive polymers/interfaces consisting of poly(2-oxazoline)-based "smart" homopolymer and ( co )polymer materials responsive to different single stimulus or to multiple stimuli. In particular, we focus on the synthesis (design strategies), "smart" solution properties (tuning of cloud points), self-assembly (tuning of nanostructures), surface chemistry (surface grafting strategies, antifouling properties, responsive behaviors) and possible biomedical applications of different stimulus-responsive materials based on functionalized poly(2-oxazoline). Accordingly, this review can be used as a benchmark for biopolymer researchers, thereby helping them design innovative functional poly(2-oxazoline)-based "smart" bio-inspired materials for novel applications by highlighting key research gaps and future research avenues in this dynamic and highly relevant field of research. (C) 2020 Elsevier B.V. All rights reserved.
机译:假偶二肽聚(2-恶唑啉)是一种特殊的生物启发聚合物,具有多种应用,特别是在聚合物治疗剂领域。近几十年来广泛地研究了聚(2-恶唑啉),对这些聚合物的开创性研究表明,非离子性,亲水和热响应性聚(2-恶唑啉)S可与多样性相当,有时甚至更有利(用于生物医学应用的乙二醇。考虑到其在生物医学领域的应用,刺激响应性聚合物材料在体内应用开辟了新的机会,例如按需药物递送,组织修复,生物传感和智能涂层等。在这种情况下,本文是对由聚(2-恶唑啉)组成的刺激响应聚合物/界面的近期进展的全面审查,这些促进的“智能”均聚物和(CO)聚合物材料响应于不同单刺激或多种刺激。特别是,我们专注于合成(设计策略),“智能”解决方案属性(云点调整),自组装(纳米结构调整),表面化学(表面接枝策略,防污性能,响应性行为)和可能的生物医学基于官能化聚(2-恶唑啉)的不同刺激响应材料的应用。因此,该综述可以用作生物聚合物研究人员的基准,从而帮助他们设计创新的功能性聚(2-恶唑啉),通过突出这个动态的关键研究差距和未来的研究途径来设计创新的功能性Poly(2-oxazoline)为新的应用程序进行“智能”生物启发材料。和高度相关的研究领域。 (c)2020 Elsevier B.V.保留所有权利。

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