Department of Biological Engineering, Inha University, Incheon 22212, Korea.
Biohybrid Systems Research Center, Inha University, Incheon 22212, Korea.
Int J Mol Sci. 2019 Mar 21;20(6):1437. doi: 10.3390/ijms20061437.
In biological cells, membrane proteins are the most crucial component for the maintenance of cell physiology and processes, including ion transportation, cell signaling, cell adhesion, and recognition of signal molecules. Therefore, researchers have proposed a number of membrane platforms to mimic the biological cell environment for transmembrane protein incorporation. The performance and selectivity of these transmembrane proteins based biomimetic platforms are far superior to those of traditional material platforms, but their lack of stability and scalability rule out their commercial presence. This review highlights the development of transmembrane protein-based biomimetic platforms for four major applications, which are biosensors, molecular interaction studies, energy harvesting, and water purification. We summarize the fundamental principles and recent progress in transmembrane protein biomimetic platforms for each application, discuss their limitations, and present future outlooks for industrial implementation.
在生物细胞中,膜蛋白是维持细胞生理和过程的最关键组成部分,包括离子运输、细胞信号转导、细胞黏附和信号分子的识别。因此,研究人员提出了许多膜平台来模拟生物细胞环境以进行跨膜蛋白的掺入。基于这些跨膜蛋白的仿生平台的性能和选择性远远优于传统材料平台,但它们缺乏稳定性和可扩展性,排除了它们的商业存在。本综述重点介绍了用于四大应用的基于跨膜蛋白的仿生平台的发展,这四大应用分别是生物传感器、分子相互作用研究、能量收集和水净化。我们总结了每种应用的基于跨膜蛋白的仿生平台的基本原理和最新进展,讨论了它们的局限性,并对工业实施的未来前景进行了展望。