Institute of Organic Chemistry, Johannes Gutenberg-University Mainz, Duesbergweg 10-14, 55128 Mainz, Germany.
Org Biomol Chem. 2019 Jul 17;17(28):6719-6734. doi: 10.1039/c9ob01191a.
The following review gives an overview about synthetic peptide-polymer conjugates as macromolecular building blocks and their self-assembly into a variety of supramolecular architectures, from supramolecular polymer chains, to anisotropic 1D arrays, 2D layers, and more complex 3D networks. A selection of recent literature examples using linear, coiled-coil and cyclic peptide motifs is provided. The reversible nature of the unimer-to-supramolecular polymer transition provides unique opportunities to investigate mechanistic aspects of the supramolecular assembly, with respect to the thermodynamic or kinetic parameters and furthermore provides exciting opportunities for non-equilibrium assembly strategies. Using specific examples we also highlight some of the biological or mechanical function that arises from this versatile class of supramolecular biomaterials.
以下综述介绍了作为大分子构建块的合成肽-聚合物缀合物及其自组装成各种超分子结构,从超分子聚合物链到各向异性的 1D 阵列、2D 层和更复杂的 3D 网络。提供了使用线性、卷曲螺旋和环状肽基序的最新文献示例的选择。单体到超分子聚合物转变的可逆性质为研究超分子组装的机制方面提供了独特的机会,涉及热力学或动力学参数,并且为非平衡组装策略提供了令人兴奋的机会。通过具体示例,我们还强调了这种多功能类超分子生物材料所产生的一些生物学或机械功能。