Zhong Jiajia, Liu Yawen, Ren Jing, Tang Yuzhao, Qi Zeming, Zhou Xiaojie, Chen Xin, Shao Zhengzhong, Chen Min, Kaplan David L, Ling Shengjie
National Facility for Protein Science in Shanghai, Shanghai Advanced Research Institute, Chinese Academy of Sciences, Shanghai 201210, China.
School of Physical Science and Technology, ShanghaiTech University, 393 Middle Huaxia Road, Shanghai 201210, China.
ACS Biomater Sci Eng. 2019 Jul 8;5(7):3161-3183. doi: 10.1021/acsbiomaterials.9b00305. Epub 2019 Jun 25.
The secondary structures (also termed conformations) of silk fibroin (SF) in animal silk fibers and regenerated SF materials are critical in determining mechanical performance and function of the materials. In order to understand the structure-mechanics-function relationships of silk materials, a variety of advanced infrared spectroscopic techniques, such as micro-infrared spectroscopies (micro-IR spectroscopies for short), synchrotron micro-IR spectroscopy, and nano-infrared spectroscopies (nano-IR spectroscopies for short), have been used to determine the conformations of SF in silk materials. These IR spectroscopic methods provide a useful toolkit to understand conformations and conformational transitions of SF in various silk materials with spatial resolution from the nano-scale to the micro-scale. In this Review, we first summarize progress in understanding the structure and structure-mechanics relationships of silk materials. We then discuss the state-of-the-art micro- and nano-IR spectroscopic techniques used for silk materials characterization. We also provide a systematic discussion of the strategies to collect high-quality spectra and the methods to analyze these spectra. Finally, we demonstrate the challenges and directions for future exploration of silk-based materials with IR spectroscopies.
动物丝纤维和再生丝素材料中丝素蛋白(SF)的二级结构(也称为构象)对于确定材料的力学性能和功能至关重要。为了理解丝绸材料的结构-力学-功能关系,人们使用了各种先进的红外光谱技术,如微红外光谱(简称微红外光谱)、同步辐射微红外光谱和纳米红外光谱(简称纳米红外光谱)来确定丝绸材料中SF的构象。这些红外光谱方法提供了一个有用的工具包,用于理解各种丝绸材料中SF的构象和构象转变,其空间分辨率从纳米尺度到微米尺度。在这篇综述中,我们首先总结了在理解丝绸材料的结构及其结构-力学关系方面取得的进展。然后,我们讨论了用于丝绸材料表征的最新微红外和纳米红外光谱技术。我们还对收集高质量光谱的策略和分析这些光谱的方法进行了系统讨论。最后,我们展示了利用红外光谱对丝绸基材料进行未来探索面临的挑战和方向。