Peer-reviewed veterinary case report
Different strains of mice present distinct lung tissue mechanics and extracellular matrix composition in a model of chronic allergic asthma.
- Journal:
- Respiratory physiology & neurobiology
- Year:
- 2009
- Authors:
- Antunes, Mariana A et al.
- Affiliation:
- Carlos Chagas Filho Biophysics Institute · Brazil
- Species:
- rodent
Abstract
The impact of genetic factors on asthma is well recognized but poorly understood. We tested the hypothesis that different mouse strains present different lung tissue strip mechanics in a model of chronic allergic asthma and that these mechanical differences may be potentially related to changes of extracellular matrix composition and/or contractile elements in lung parenchyma. Oscillatory mechanics were analysed before and after acetylcholine (ACh) in C57BL/10, BALB/c, and A/J mice, subjected or not to ovalbumin sensitization and challenge. In controls, tissue elastance (E) and resistance (R), collagen and elastic fibres' content, and alpha-actin were higher in A/J compared to BALB/c mice, which, in turn, were more elevated than in C57BL/10. A similar response pattern was observed in ovalbumin-challenged animals irrespective of mouse strain. E and R augmented more in ovalbumin-challenged A/J [E: 22%, R: 18%] than C57BL/10 mice [E: 9.4%, R: 11%] after ACh In conclusion, lung parenchyma remodelled differently yielding distinct in vitro mechanics according to mouse strain.
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Search related cases →Original publication: https://pubmed.ncbi.nlm.nih.gov/19135181/