| Literature DB >> 33610603 |
Zhen Cai1, Yang Zhang1, Zheyuan Zhang1, Ki-Hee Song1, Lisa Beckmann1, Ali Djalilian2, Cheng Sun3, Hao F Zhang4.
Abstract
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.Entities:
Keywords: Corneal endothelium; Single-molecule localization microscopy; Super-resolution optical microscopy
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Year: 2021 PMID: 33610603 PMCID: PMC8043998 DOI: 10.1016/j.exer.2021.108499
Source DB: PubMed Journal: Exp Eye Res ISSN: 0014-4835 Impact factor: 3.467