Department of Chemistry, Iowa State University, Ames, Iowa 50011; email:
Ames Laboratory, US Department of Energy, Ames, Iowa 50011.
Annu Rev Anal Chem (Palo Alto Calif). 2017 Jun 12;10(1):271-291. doi: 10.1146/annurev-anchem-061516-045317. Epub 2017 Mar 15.
Raman-based optical imaging is a promising analytical tool for noninvasive, label-free chemical imaging of lipid bilayers and cellular membranes. Imaging using spontaneous Raman scattering suffers from a low intensity that hinders its use in some cellular applications. However, developments in coherent Raman imaging, surface-enhanced Raman imaging, and tip-enhanced Raman imaging have enabled video-rate imaging, excellent detection limits, and nanometer spatial resolution, respectively. After a brief introduction to these commonly used Raman imaging techniques for cell membrane studies, this review discusses selected applications of these modalities for chemical imaging of membrane proteins and lipids. Finally, recent developments in chemical tags for Raman imaging and their applications in the analysis of selected cell membrane components are summarized. Ongoing developments toward improving the temporal and spatial resolution of Raman imaging and small-molecule tags with strong Raman scattering cross sections continue to expand the utility of Raman imaging for diverse cell membrane studies.
基于拉曼的光学成像是一种很有前途的分析工具,可用于对脂质双层和细胞膜进行非侵入性、无标记的化学成像。自发拉曼散射的成像强度较低,这限制了它在某些细胞应用中的使用。然而,相干拉曼成像、表面增强拉曼成像和尖端增强拉曼成像的发展分别实现了视频速率成像、优异的检测极限和纳米级空间分辨率。在简要介绍了这些常用于细胞膜研究的拉曼成像技术之后,本综述讨论了这些模式在膜蛋白和脂质的化学成像中的选定应用。最后,总结了用于拉曼成像的化学标记物及其在选定细胞膜成分分析中的应用的最新进展。不断发展的提高拉曼成像的时空分辨率和具有强拉曼散射截面的小分子标记物的方法,继续扩展了拉曼成像在各种细胞膜研究中的应用。