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Author Spotlight: Studying Spatial Protein Expression Using Agarose Embedded Lung Tissue Sections
Published on: October 6, 2023
[Morphometry of pulmonary tissue: From manual to high throughput automation]
C Sallon1, D Soulet2, Y Tremblay3
1Axe reproduction, santé de la mère et de l'enfant, centre de recherche du CHU de Québec, Québec, QC, Canada; Centre de recherche en reproduction, développement et santé intergénérationnelle (CRDSI), faculté de médecine, université Laval, Québec, QC, Canada.
Abstract:
Weibel's research has shown that any alteration of the pulmonary structure has effects on function. This demonstration required a quantitative analysis of lung structures called morphometry. This is possible thanks to stereology, a set of methods based on principles of geometry and statistics. His work has helped to better understand the morphological harmony of the lung, which is essential for its proper functioning. An imbalance leads to pathophysiology such as chronic obstructive pulmonary disease in adults and bronchopulmonary dysplasia in neonates. It is by studying this imbalance that new therapeutic approaches can be developed. These advances are achievable only through morphometric analytical methods, which are increasingly precise and focused, in particular thanks to the high-throughput automation of these methods. This review makes a comparison between an automated method that we developed in the laboratory and semi-manual methods of morphometric analyzes. The automation of morphometric measurements is a fundamental asset in the study of pulmonary pathophysiology because it is an assurance of robustness, reproducibility and speed. This tool will thus contribute significantly to the acceleration of the race for the development of new drugs.

