Comparative Transcriptomic Profiling and Gene Expression for Myxomatous Mitral Valve Disease in the Dog and Human
Author:
Funder
Biotechnology and Biological Sciences Research Council
Publisher
MDPI AG
Subject
General Veterinary
Link
http://www.mdpi.com/2306-7381/4/3/34/pdf
Reference79 articles.
1. Differentiating the aging of the mitral valve from human and canine myxomatous degeneration
2. Mitral valve prolapse is associated with altered extracellular matrix gene expression patterns
3. Prevalence and Clinical Outcome of Mitral-Valve Prolapse
4. Valvular heart disease: the next cardiac epidemic
5. Mitral valve prolapse in the dog: a model of mitral valve prolapse in man
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1. TGF-β phospho antibody array identifies altered SMAD2, PI3K/AKT/SMAD, and RAC signaling contribute to the pathogenesis of myxomatous mitral valve disease;Frontiers in Veterinary Science;2023-10-16
2. TGF‐β‐induced PI3K/AKT/mTOR pathway controls myofibroblast differentiation and secretory phenotype of valvular interstitial cells through the modulation of cellular senescence in a naturally occurring in vitro canine model of myxomatous mitral valve disease;Cell Proliferation;2023-03-04
3. Use of the Functional Evaluation of Cardiac Health questionnaire to assess health-related quality of life before and after mitral valve repair in dogs with myxomatous mitral valve disease;Journal of the American Veterinary Medical Association;2022-05-20
4. The Role of Transforming Growth Factor-β Signaling in Myxomatous Mitral Valve Degeneration;Frontiers in Cardiovascular Medicine;2022-05-17
5. Metabolic Reprogramming, Gut Dysbiosis, and Nutrition Intervention in Canine Heart Disease;Frontiers in Veterinary Science;2022-02-15
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