Pena-Francesch Abdon, Demirel Melik C
Center for Research on Advanced Fiber Technologies, Materials Research Institute, Pennsylvania State University, University Park, PA, United States.
Department of Engineering Science and Mechanics, Pennsylvania State University, University Park, PA, United States.
Front Chem. 2019 Feb 21;7:69. doi: 10.3389/fchem.2019.00069. eCollection 2019.
Production of repetitive polypeptides that comprise one or more tandem copies of a single unit with distinct amorphous and ordered regions have been an interest for the last couple of decades. Their molecular structure provides a rich architecture that can micro-phase-separate to form periodic nanostructures (e.g., lamellar and cylindrical repeating phases) with enhanced physicochemical properties via directed or natural evolution that often exceed those of conventional synthetic polymers. Here, we review programmable design, structure, and properties of functional fibers and films from squid-inspired tandem repeat proteins, with applications in soft photonics and advanced textiles among others.
在过去几十年里,生产包含一个单一单元的一个或多个串联拷贝且具有不同无定形和有序区域的重复性多肽一直是人们感兴趣的课题。它们的分子结构提供了一种丰富的架构,通过定向或自然进化能够微相分离形成具有增强物理化学性质的周期性纳米结构(例如层状和柱状重复相),其性质往往超过传统合成聚合物。在此,我们综述了受鱿鱼启发的串联重复蛋白制成的功能性纤维和薄膜的可编程设计、结构及性质,及其在软光子学和先进纺织品等领域的应用。