Krywko-Cendrowska Agata, di Leone Stefano, Bina Maryame, Yorulmaz-Avsar Saziye, Palivan Cornelia G, Meier Wolfgang
Department of Chemistry, University of Basel, Mattenstrasse 24a, BPR 1096, 4058 Basel, Switzerland.
Polymers (Basel). 2020 Apr 26;12(5):1003. doi: 10.3390/polym12051003.
Biological membranes, in addition to being a cell boundary, can host a variety of proteins that are involved in different biological functions, including selective nutrient transport, signal transduction, inter- and intra-cellular communication, and cell-cell recognition. Due to their extreme complexity, there has been an increasing interest in developing model membrane systems of controlled properties based on combinations of polymers and different biomacromolecules, i.e., polymer-based hybrid films. In this review, we have highlighted recent advances in the development and applications of hybrid biomimetic planar systems based on different polymeric species. We have focused in particular on hybrid films based on (i) polyelectrolytes, (ii) polymer brushes, as well as (iii) tethers and cushions formed from synthetic polymers, and (iv) block copolymers and their combinations with biomacromolecules, such as lipids, proteins, enzymes, biopolymers, and chosen nanoparticles. In this respect, multiple approaches to the synthesis, characterization, and processing of such hybrid films have been presented. The review has further exemplified their bioengineering, biomedical, and environmental applications, in dependence on the composition and properties of the respective hybrids. We believed that this comprehensive review would be of interest to both the specialists in the field of biomimicry as well as persons entering the field.
生物膜除了作为细胞边界外,还能容纳多种参与不同生物学功能的蛋白质,包括选择性营养物质运输、信号转导、细胞间和细胞内通讯以及细胞间识别。由于其极端复杂性,人们对基于聚合物和不同生物大分子组合开发具有可控性质的模型膜系统,即基于聚合物的混合膜,越来越感兴趣。在这篇综述中,我们重点介绍了基于不同聚合物种类的混合仿生平面系统在开发和应用方面的最新进展。我们特别关注基于以下几种的混合膜:(i)聚电解质,(ii)聚合物刷,以及(iii)由合成聚合物形成的系链和垫层,(iv)嵌段共聚物及其与生物大分子(如脂质、蛋白质、酶、生物聚合物和选定的纳米颗粒)的组合。在这方面,已经介绍了合成、表征和处理此类混合膜的多种方法。该综述进一步举例说明了它们在生物工程、生物医学和环境方面的应用,具体取决于各自混合体的组成和性质。我们相信,这篇全面的综述将对仿生学领域的专家以及刚进入该领域的人员都有吸引力。