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Published on: February 27, 2020
Monitoring in vivo changes in lung microstructure with ³He MRI in Sendai virus-infected mice
Wei Wang1, Nguyet M Nguyen, Eugene Agapov
1Department of Physics, Washington Univ. Box 8131, Dept. of Radiology, 510 S. Kingshighway, St. Louis, MO 63110, USA.
Abstract:
Recently, a Sendai virus (SeV) model of chronic obstructive lung disease has demonstrated an innate immune response in mouse airways that exhibits similarities to the chronic airway inflammation in human chronic obstructive pulmonary disease (COPD) and asthma, but the effect on distal lung parenchyma has not been investigated. The aim of our study is to image the time course and regional distribution of mouse lung microstructural changes in vivo after SeV infection. (1)H and (3)He diffusion magnetic resonance imaging (MRI) were successfully performed on five groups of C57BL/6J mice. (1)H MR images provided precise anatomical localization and lung volume measurements. (3)He lung morphometry was implemented to image and quantify mouse lung geometric microstructural parameters at different time points after SeV infection. (1)H MR images detected the SeV-induced pulmonary inflammation in vivo; spatially resolved maps of acinar airway radius R, alveolar depth h, and mean linear intercept Lm were generated from (3)He diffusion images. The morphometric parameters R and Lm in the infected group were indistinguishable from PBS-treated mice at day 21, increased slightly at day 49, and were increased with statistical significance at day 77 (p = 0.02). Increases in R and Lm of infected mice imply that there is a modest increase in alveolar duct radius distal to airway inflammation, particularly in the lung periphery, indicating airspace enlargement after virus infection. Our results indicate that (3)He lung morphometry has good sensitivity in quantifying small microstructural changes in the mouse lung and that the Sendai mouse model has the potential to be a valid murine model of COPD.
Insights
Sendai virus infection in mice causes lung microstructural changes, including airspace enlargement, detectable by (3)He lung morphometry. This suggests the Sendai virus model
Area of Science:
- Pulmonary Medicine
- Medical Imaging
- Animal Models
Background:
- Sendai virus (SeV) infection in mice mimics airway inflammation seen in human chronic obstructive pulmonary disease (COPD) and asthma.
- The impact of SeV infection on the distal lung parenchyma remains understudied.
Purpose of the Study:
- To investigate the time course and spatial distribution of lung microstructural changes in vivo following SeV infection.
- To evaluate the utility of (3)He lung morphometry in quantifying these changes.
Main Methods:
- Utilized (1)H and (3)He diffusion magnetic resonance imaging (MRI) in C57BL/6J mice.
- (1)H MRI provided anatomical localization and lung volume measurements.
- (3)He lung morphometry quantified geometric microstructural parameters like acinar airway radius (R) and mean linear intercept (Lm).
Main Results:
- SeV infection led to statistically significant increases in R and Lm by day 77 post-infection (p = 0.02).
- These increases indicate modest alveolar duct enlargement, particularly in the lung periphery.
- (3)He lung morphometry demonstrated sensitivity in detecting microstructural alterations.
Conclusions:
- The Sendai virus mouse model shows potential as a valid model for studying COPD.
- (3)He lung morphometry is effective for quantifying subtle lung microstructural changes in vivo.

