Radiation induces osteogenesis in human aortic valve interstitial cells

Objective Irradiation of the chest or chest wall has been shown to cause calcific aortic stenosis. However, the mechanisms are unknown. Aortic valve interstitial cells have been implicated in the pathogenesis of aortic stenosis; they have been shown to change from the phenotype of a myofibroblast to...

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Veröffentlicht in:The Journal of thoracic and cardiovascular surgery 2012-12, Vol.144 (6), p.1466-1470
Hauptverfasser: Nadlonek, Nicole A., MD, Weyant, Michael J., MD, Yu, Jessica A., MD, Cleveland, Joseph C., MD, Reece, T. Brett, MD, Meng, Xianzhong, MD, PhD, Fullerton, David A., MD
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Sprache:eng
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Zusammenfassung:Objective Irradiation of the chest or chest wall has been shown to cause calcific aortic stenosis. However, the mechanisms are unknown. Aortic valve interstitial cells have been implicated in the pathogenesis of aortic stenosis; they have been shown to change from the phenotype of a myofibroblast to an osteoblastlike cell. We therefore hypothesized that irradiation of human aortic valve interstitial cells induces an osteogenic phenotype. In isolated human aortic valve interstitial cells, our purpose was to determine the effect of irradiation on the production of osteogenic factors: (1) bone morphogenetic protein 2, (2) osteopontin, (3) alkaline phosphatase, and (4) the transcription factor Runx2. Methods Human aortic valve interstitial cells were isolated from normal aortic valves obtained from explanted hearts of patients undergoing cardiac transplantation (n = 4) and were grown in culture. The cells were grown to confluence, irradiated with 10 Gy using a cesium-137 irradiator, and then lysed 24 hours after irradiation. Cell lysates were analyzed via immunoblot and densitometry for bone morphogenetic protein 2, osteopontin, alkaline phosphatase, and Runx2. Statistical analysis was performed using analysis of variance, with P  
ISSN:0022-5223
1097-685X
DOI:10.1016/j.jtcvs.2012.08.041