Go Yoo Kyung, Leal Cecilia
Department of Materials Science and Engineering, University of Illinois at Urbana─Champaign, Urbana, Illinois 61801, United States.
Chem Rev. 2021 Nov 24;121(22):13996-14030. doi: 10.1021/acs.chemrev.1c00755. Epub 2021 Nov 9.
Hierarchic self-assembly underpins much of the form and function seen in synthetic or biological soft materials. Lipids are paramount examples, building themselves in nature or synthetically in a variety of meso/nanostructures. Synthetic block copolymers capture many of lipid's structural and functional properties. Lipids are typically biocompatible and high molecular weight polymers are mechanically robust and chemically versatile. The development of new materials for applications like controlled drug/gene/protein delivery, biosensors, and artificial cells often requires the combination of lipids and polymers. The emergent composite material, a "polymer-lipid hybrid membrane", displays synergistic properties not seen in pure components. Specific examples include the observation that hybrid membranes undergo lateral phase separation that can correlate in registry across multiple layers into a three-dimensional phase-separated system with enhanced permeability of encapsulated drugs. It is timely to underpin these emergent properties in several categories of hybrid systems ranging from colloidal suspensions to supported hybrid films. In this review, we discuss the form and function of a vast number of polymer-lipid hybrid systems published to date. We rationalize the results to raise new fundamental understanding of hybrid self-assembling soft materials as well as to enable the design of new supramolecular systems and applications.
层次自组装是合成或生物软材料中许多形式和功能的基础。脂质就是最重要的例子,它们在自然界中或通过合成方式形成各种介观/纳米结构。合成嵌段共聚物具有许多脂质的结构和功能特性。脂质通常具有生物相容性,而高分子量聚合物则具有机械强度高和化学性质多样的特点。开发用于控制药物/基因/蛋白质递送、生物传感器和人工细胞等应用的新材料通常需要将脂质和聚合物结合起来。新兴的复合材料“聚合物 - 脂质混合膜”展现出纯组分中未见的协同特性。具体例子包括观察到混合膜会发生横向相分离,这种相分离可以跨多层对齐,形成一个三维相分离系统,提高了包封药物的渗透性。现在正是时候,要在从胶体悬浮液到支撑混合膜等几类混合系统中巩固这些新兴特性。在这篇综述中,我们讨论了迄今为止发表的大量聚合物 - 脂质混合系统的形式和功能。我们对结果进行合理化分析,以增进对混合自组装软材料的新的基本理解,并推动新型超分子系统和应用的设计。