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Updated: Sep 22, 2025

Author Spotlight: Advances in Quantifying Microvascular Density in Aging Murine Lungs
Published on: January 3, 2025
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.
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.
Abstract:
Single cell classification is elucidating homeostasis and pathology in tissues and whole organs. We applied in situ spatial proteomics by multiplex antibody staining to routinely processed mouse lung, healthy and during a fibrosis model. With a limited validated antibody panel (24) we classify the normal constituents (alveolar type I and II, bronchial epithelia, endothelial, muscular, stromal and hematopoietic cells) and by quantitative measurements, we show the progress of lung fibrosis over a 4 weeks course, the changing landscape and the cell-specific quantitative variation of a multidrug transporter. An early decline in AT2 alveolar cells and a progressive increase in stromal cells seems at the core of the fibrotic process.
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