A correlated light and electron microscopy approach to study the subcellular localization of phosphorylated vimentin in human lung tissue

Methods Cell Biol. 2024:187:117-137. doi: 10.1016/bs.mcb.2024.02.034. Epub 2024 Mar 21.

Abstract

Correlative microscopy is an important approach for bridging the resolution gap between fluorescence light and electron microscopy. Here, we describe a fast and simple method for correlative immunofluorescence and immunogold labeling on the same section to elucidate the localization of phosphorylated vimentin (P-Vim), a robust feature of pulmonary vascular remodeling in cells of human lung small arteries. The lung is a complex, soft and difficult tissue to prepare for transmission electron microscopy (TEM). Detailing the molecular composition of small pulmonary arteries (<500μm) would be of great significance for research and diagnostics. Using the classical methods of immunochemistry (either hydrophilic resin or thin cryosections), is difficult to locate small arteries for analysis by TEM. To address this problem and to observe the same structures by both light and electron microscopy, correlative microscopy is a reliable approach. Immunofluorescence enables us to know the distribution of P-Vim in cells but does not provide ultrastructural detail on its localization. Labeled structures selected by fluorescence microscope can be identified and further analyzed by TEM at high resolution. With our method, the morphology of the arteries is well preserved, enabling the localization of P-Vim inside pulmonary endothelial cells. By applying this approach, fluorescent signals can be directly correlated to the corresponding subcellular structures in areas of interest.

Keywords: Confocal microscopy; Correlative microscopy; Electron microscopy; Phosphorylated vimentin; Pulmonary artery.

Publication types

  • Research Support, Non-U.S. Gov't

MeSH terms

  • Endothelial Cells / metabolism
  • Endothelial Cells / ultrastructure
  • Fluorescent Antibody Technique / methods
  • Humans
  • Lung* / metabolism
  • Lung* / ultrastructure
  • Microscopy, Electron / methods
  • Microscopy, Electron, Transmission / methods
  • Microscopy, Fluorescence / methods
  • Phosphorylation
  • Pulmonary Artery / cytology
  • Pulmonary Artery / metabolism
  • Pulmonary Artery / ultrastructure
  • Vimentin* / metabolism

Substances

  • Vimentin