两亲大分子纳米组装中刺激-反应性的结构决定因素

IF 26 1区 化学 Q1 POLYMER SCIENCE Progress in Polymer Science Pub Date : 2024-01-01 DOI:10.1016/j.progpolymsci.2023.101765
Hongxu Liu , Hung-Hsun Lu , Yasin Alp , Ruiling Wu , S. Thayumanavan
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引用次数: 0

摘要

由两亲性大分子组成的刺激响应纳米组装体在刺激下可发生可控的结构转变,并产生各种宏观现象。由于具有可控的响应性,它们已被广泛应用于材料和生物医学领域,如生物制剂输送、传感、成像和催化。了解组装-分解过程的机制以及响应特性背后的结构决定因素,对于设计具有可编程响应性的下一代纳米组装体至关重要。在这篇综述中,我们将重点讨论两亲性大分子组装体的结构决定因素及其在刺激下的大分子水平变化,例如组装体中亲水-亲油平衡(HLB)的破坏、解聚、解交联和分子堆积的变化,最终导致一系列实用的宏观现象。此外,还根据刺激响应纳米组装体的结构特征,总结了它们在递送、传感和成像方面的应用。我们希望这篇综述能让读者对纳米组装体的设计和应用中的结构因素有一个大致的了解,并激励人们对刺激响应软物质进行更多的探索。
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Structural determinants of stimuli-responsiveness in amphiphilic macromolecular nano-assemblies

Stimuli-responsive nano-assemblies from amphiphilic macromolecules could undergo controlled structural transformations and generate diverse macroscopic phenomenon under stimuli. Due to the controllable responsiveness, they have been applied for broad material and biomedical applications, such as biologics delivery, sensing, imaging, and catalysis. Understanding the mechanisms of the assembly-disassembly processes and structural determinants behind the responsive properties is fundamentally important for designing the next generation of nano-assemblies with programmable responsiveness. In this review, we focus on structural determinants of assemblies from amphiphilic macromolecules and their macromolecular level alterations under stimuli, such as the disruption of hydrophilic-lipophilic balance (HLB), depolymerization, decrosslinking, and changes of molecular packing in assemblies, which eventually lead to a series of macroscopic phenomenon for practical purposes. Applications of stimuli-responsive nano-assemblies in delivery, sensing and imaging were also summarized based on their structural features. We expect this review could provide readers an overview of the structural considerations in the design and applications of nano-assemblies and incentivize more explorations in stimuli-responsive soft matters.

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来源期刊
Progress in Polymer Science
Progress in Polymer Science 化学-高分子科学
CiteScore
48.70
自引率
1.10%
发文量
54
审稿时长
38 days
期刊介绍: Progress in Polymer Science is a journal that publishes state-of-the-art overview articles in the field of polymer science and engineering. These articles are written by internationally recognized authorities in the discipline, making it a valuable resource for staying up-to-date with the latest developments in this rapidly growing field. The journal serves as a link between original articles, innovations published in patents, and the most current knowledge of technology. It covers a wide range of topics within the traditional fields of polymer science, including chemistry, physics, and engineering involving polymers. Additionally, it explores interdisciplinary developing fields such as functional and specialty polymers, biomaterials, polymers in drug delivery, polymers in electronic applications, composites, conducting polymers, liquid crystalline materials, and the interphases between polymers and ceramics. The journal also highlights new fabrication techniques that are making significant contributions to the field. The subject areas covered by Progress in Polymer Science include biomaterials, materials chemistry, organic chemistry, polymers and plastics, surfaces, coatings and films, and nanotechnology. The journal is indexed and abstracted in various databases, including Materials Science Citation Index, Chemical Abstracts, Engineering Index, Current Contents, FIZ Karlsruhe, Scopus, and INSPEC.
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