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PMID: 20071776 已发表 · ppublish 英语

Cardiomyocyte PDGFR-beta signaling is an essential component of the mouse cardiac response to load-induced stress.

The Journal of clinical investigation ·第 120 卷 ·第 2 期 ·2010-03-03

Chintalgattu Vishnu, Ai Di, Langley Robert R, Zhang Jianhu, Bankson James A, Shih Tiffany L, Reddy Anilkumar K, Coombes Kevin R, Daher Iyad N, Pati Shibani, Patel Shalin S, Pocius Jennifer S, Taffet George E, Buja L Maximillian, Entman Mark L, Khakoo Aarif Y

摘要

PDGFR is an important target for novel anticancer therapeutics because it is overexpressed in a wide variety of malignancies. Recently, however, several anticancer drugs that inhibit PDGFR signaling have been associated with clinical heart failure. Understanding this effect of PDGFR inhibitors has been difficult because the role of PDGFR signaling in the heart remains largely unexplored. As described herein, we have found that PDGFR-beta expression and activation increase dramatically in the hearts of mice exposed to load-induced cardiac stress. In mice in which Pdgfrb was knocked out in the heart in development or in adulthood, exposure to load-induced stress resulted in cardiac dysfunction and heart failure. Mechanistically, we showed that cardiomyocyte PDGFR-beta signaling plays a vital role in stress-induced cardiac angiogenesis. Specifically, we demonstrated that cardiomyocyte PDGFR-beta was an essential upstream regulator of the stress-induced paracrine angiogenic capacity (the angiogenic potential) of cardiomyocytes. These results demonstrate that cardiomyocyte PDGFR-beta is a regulator of the compensatory cardiac response to pressure overload-induced stress. Furthermore, our findings may provide insights into the mechanism of cardiotoxicity due to anticancer PDGFR inhibitors.

文献信息
期刊
The Journal of clinical investigation
期刊简称
J Clin Invest
发表日期
2010-03-03
收录日期
2010-02-03
更新日期
2016-11-22
语言
英语
国家/地区
United States
NLM ID
7802877
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