Distribution of venous remodeling in exercise-induced pulmonary hemorrhage of horses follows reported blood flow distribution in the equine lung

Author:

Williams Kurt J.1,Robinson N. Edward2,DeFeijter-Rupp Heather2,Millerick-May Melissa3,Stack Alice2,Hauptman Joseph4,Derksen Frederik J.2

Affiliation:

1. Department of Pathobiology, Michigan State University, East Lansing, Michigan;

2. Department of Large Animal Clinical Sciences, Michigan State University, East Lansing, Michigan;

3. Department of Medicine, Michigan State University, East Lansing, Michigan

4. Department of Small Animal Clinical Sciences, Michigan State University, East Lansing, Michigan;

Abstract

Exercise-induced pulmonary hemorrhage (EIPH), which has been reported in humans and a variety of domestic animals following strenuous exercise, is most often documented in racehorses. Remodeling of pulmonary veins (VR) in equine EIPH was recently described, suggesting that it contributes to the pathogenesis of the disease. The cause of VR is unknown. We tested the hypothesis that the development of VR follows pulmonary blood flow distribution, preferentially occurring in the caudodorsal lung region. Furthermore, we hypothesized that VR underpins development of the other lesions of EIPH pathology. The lungs of 10 EIPH-affected horses and 8 controls were randomly sampled for histopathology (2,520 samples) and blindly scored for presence and severity of VR, hemosiderin (H), and interstitial fibrosis (IF). Mean sample score (MSS), mean lesion score, and percent samples with lesions were determined in four dorsal and three ventral lung regions, and the frequency, spatial distribution, and severity of lesions were determined. MSS for VR and H were significantly greater dorsally than ventrally ( P < 0.001) and also decreased significantly in the caudocranial direction ( P < 0.001). IF decreased only in the caudocranial direction. The percent samples with lesions followed the same distribution as MSS. VR often was accompanied by H; IF never occurred without VR and H. Similarity of the distribution of EIPH lesions and the reported fractal distribution of pulmonary blood flow suggests that VR develops in regions of high blood flow. Further experiments are necessary to determine whether VR is central to the pathogenesis of EIPH.

Publisher

American Physiological Society

Subject

Physiology (medical),Physiology

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