Department of Biomedical Engineering, Northwestern University, Evanston, IL, 60208, USA.
Department of Ophthalmology, University of Illinois Chicago, Chicago, IL, 60612, USA.
Exp Eye Res. 2021 Apr;205:108499. doi: 10.1016/j.exer.2021.108499. Epub 2021 Feb 18.
Super-resolution microscopy revolutionized biomedical research with significantly improved imaging resolution down to the molecular scale. To date, only limited studies reported multi-color super-resolution imaging of thin tissue slices mainly because of unavailable staining protocols and incompatible imaging techniques. Here, we show the first super-resolution imaging of flat-mounted whole mouse cornea using single-molecule localization microscopy (SMLM). We optimized immunofluorescence staining protocols for β-Tubulin, Vimentin, Peroxisome marker (PMP70), and Histone-H4 in whole mouse corneas. Using the optimized staining protocols, we imaged these four intracellular protein structures in the epithelium and endothelium layers of flat-mounted mouse corneas. We also achieved simultaneous two-color spectroscopic SMLM (sSMLM) imaging of β-Tubulin and Histone-H4 in corneal endothelial cells. The spatial localization precision of sSMLM in these studies was around 20-nm. This work sets the stage for investigating multiple intracellular alterations in corneal diseases at a nanoscopic resolution using whole corneal flat-mount beyond cell cultures.
超分辨率显微镜技术将生物医学研究的成像分辨率显著提高到了分子水平,引发了革命。迄今为止,只有有限的研究报告了用于薄组织切片的多色超分辨率成像,主要是因为缺乏可用的染色方案和不兼容的成像技术。在这里,我们使用单分子定位显微镜 (SMLM) 展示了第一个全鼠角膜的平面安装的超分辨率成像。我们优化了用于全鼠角膜中 β-微管蛋白、波形蛋白、过氧化物酶体标记物 (PMP70) 和组蛋白-H4 的免疫荧光染色方案。使用优化的染色方案,我们在平面安装的鼠角膜的上皮和内皮层中对这四种细胞内蛋白结构进行了成像。我们还实现了角膜内皮细胞中 β-微管蛋白和组蛋白-H4 的同时双色光谱 SMLM(sSMLM)成像。在这些研究中,sSMLM 的空间定位精度约为 20nm。这项工作为使用全角膜平面安装而不是细胞培养来研究角膜疾病中的多种细胞内改变提供了基础,分辨率达到纳米级。