The normal and fibrotic mouse lung classified by spatial proteomic analysis

Roberta Ciccimarra1, Maddalena M Bolognesi2, Matteo Zoboli1

  • 1Department of Veterinary Science, Università di Parma, Parma, Italy.

Scientific Reports
|May 24, 2022
PubMed

Insights

Spatial proteomics reveals lung fibrosis progression. Key findings show a decline in alveolar type 2 cells and an increase in stromal cells during fibrosis, offering insights into tissue pathology.

Area of Science:

  • * Cellular and Molecular Biology
  • * Proteomics and Bioinformatics
  • * Pathology and Disease Mechanisms

Background:

  • * Single-cell classification is crucial for understanding tissue homeostasis and disease.
  • * Lung fibrosis is a complex condition involving dynamic cellular changes.
  • * Spatial proteomics offers a method to study cell populations within their native tissue context.

Purpose of the Study:

  • * To apply in situ spatial proteomics to classify cells in healthy and fibrotic mouse lungs.
  • * To quantitatively assess the progression of lung fibrosis over four weeks.
  • * To investigate cell-specific variations in a multidrug transporter during fibrosis.

Main Methods:

  • * Multiplex antibody staining was performed on routinely processed mouse lung tissue.
  • * A validated panel of 24 antibodies was used for cell classification.
  • * Quantitative measurements were employed to track cellular changes and transporter levels.

Main Results:

  • * Normal lung constituents (alveolar type I and II, bronchial epithelia, endothelial, muscular, stromal, hematopoietic cells) were classified.
  • * Lung fibrosis progression was monitored over a four-week period.
  • * Alveolar type 2 cells showed an early decline, while stromal cells progressively increased.
  • * Cell-specific quantitative variations of a multidrug transporter were observed.

Conclusions:

  • * In situ spatial proteomics effectively classifies diverse cell types in the mouse lung.
  • * The study quantitatively demonstrates the progression of lung fibrosis.
  • * Early decline in alveolar type 2 cells and increased stromal cells are central to the fibrotic process.

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