Department of Chemistry, Columbia University, New York, NY, 10027, USA.
Department of Biological Sciences, Carnegie Mellon University, Pittsburgh, PA, 15143, USA.
Adv Sci (Weinh). 2022 Jul;9(20):e2200315. doi: 10.1002/advs.202200315. Epub 2022 May 6.
Stimulated Raman scattering (SRS) microscopy is an emerging technology that provides high chemical specificity for endogenous biomolecules and can circumvent common constraints of fluorescence microscopy including limited capabilities to probe small biomolecules and difficulty resolving many colors simultaneously. However, the resolution of SRS microscopy remains governed by the diffraction limit. To overcome this, a new technique called molecule anchorable gel-enabled nanoscale Imaging of Fluorescence and stimulated Raman scattering microscopy (MAGNIFIERS) that integrates SRS microscopy with expansion microscopy (ExM) is described. MAGNIFIERS offers chemical-specific nanoscale imaging with sub-50 nm resolution and has scalable multiplexity when combined with multiplex Raman probes and fluorescent labels. MAGNIFIERS is used to visualize nanoscale features in a label-free manner with CH vibration of proteins, lipids, and DNA in a broad range of biological specimens, from mouse brain, liver, and kidney to human lung organoid. In addition, MAGNIFIERS is applied to track nanoscale features of protein synthesis in protein aggregates using metabolic labeling of small metabolites. Finally, MAGNIFIERS is used to demonstrate 8-color nanoscale imaging in an expanded mouse brain section. Overall, MAGNIFIERS is a valuable platform for super-resolution label-free chemical imaging, high-resolution metabolic imaging, and highly multiplexed nanoscale imaging, thus bringing SRS to nanoscopy.
受激拉曼散射(SRS)显微镜是一种新兴技术,可为内源性生物分子提供高的化学特异性,并且可以避免荧光显微镜的常见限制,包括探测小分子的能力有限以及难以同时解析多种颜色的问题。但是,SRS 显微镜的分辨率仍然受限于衍射极限。为了克服这一问题,描述了一种称为分子可锚定凝胶增强的荧光和受激拉曼散射显微镜的纳米级成像(MAGNIFIERS)的新技术,该技术将 SRS 显微镜与扩展显微镜(ExM)结合在一起。MAGNIFIERS 提供具有亚 50nm 分辨率的化学特异性纳米级成像,并且与多路复用拉曼探针和荧光标记结合使用时具有可扩展的多路复用性。MAGNIFIERS 用于以无标记的方式可视化生物标本中的纳米级特征,这些标本包括从小鼠脑、肝和肾到人类肺类器官的广泛范围,包括蛋白质、脂质和 DNA 的 CH 振动。此外,MAGNIFIERS 用于通过代谢标记小分子来跟踪蛋白质聚集体中蛋白质合成的纳米级特征。最后,MAGNIFIERS 用于在扩展的小鼠脑切片中进行 8 色纳米级成像。总体而言,MAGNIFIERS 是一种用于超分辨率无标记化学成像、高分辨率代谢成像和高多重纳米级成像的有价值的平台,从而将 SRS 引入纳米显微镜领域。