Prakash Niranjana Jaya, Mane Prathamesh Parshuram, George Suchi Mercy, Kandasubramanian Balasubramanian
Nano Texturing Laboratory, Department of Metallurgical and Materials Engineering, Defence Institute of Advanced Technology (DU), Ministry of Defence, Girinagar, Pune-411025, Maharashtra, India.
Department of Fibers and Textiles Processing Technology, Institute of Chemical Technology, Mumbai-400019, India.
ACS Biomater Sci Eng. 2021 Jun 14;7(6):2015-2042. doi: 10.1021/acsbiomaterials.1c00080. Epub 2021 Apr 16.
The development of flexible, biocompatible, and environment-friendly sensors has attracted a significant amount of scientific interest for the past few decades. Among all the natural materials, silk fibroin (SF), due to its tunable biodegradability, biocompatibility, ease of processing, presence of functional groups, and controllable dimensions, has opened up opportunities for immobilizing multitudinous biomolecules and conformability to the skin, among other attractive opportunities. The silk fibroins also offer good physical properties, such as superior toughness and tensile strength. The sensors made of SF as an immobilization matrix have demonstrated excellent analytical performance, sensing even at low concentrations. The significant advantage of silk fibroins is the presence of functional groups along with a controllable conformation transition that enables immobilization of receptor molecules using silk fibroins as an immobilization matrix enables us to entrap the receptor molecules without using any chemical reagents. This review encompasses a detailed discussion on sensors, the advantages of using silk fibroins as an immobilization matrix for various receptors, their applications, and the future research scope in this state-of-the-art technology based upon the explorable applications for silk fibroin-based sensors.
在过去几十年里,柔性、生物相容性和环境友好型传感器的发展引起了大量科学关注。在所有天然材料中,丝素蛋白(SF)因其可调节的生物降解性、生物相容性、易于加工、存在官能团以及尺寸可控等特性,为固定多种生物分子以及与皮肤的贴合性等带来了诸多机遇。丝素蛋白还具有良好的物理性能,如卓越的韧性和拉伸强度。以SF作为固定基质制成的传感器展现出优异的分析性能,即使在低浓度下也能进行传感。丝素蛋白的显著优势在于其存在官能团以及可控的构象转变,这使得以丝素蛋白作为固定基质固定受体分子时,无需使用任何化学试剂就能包埋受体分子。本综述围绕传感器展开详细讨论,内容包括将丝素蛋白用作各种受体的固定基质的优势、其应用,以及基于丝素蛋白基传感器的可探索应用,对这一前沿技术未来的研究范围进行了探讨。