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Ryanodine Receptor Type 2 Plays a Role in the Development of Cardiac Fibrosis under Mechanical Stretch Through TGFß-1.
Ding, Zhiwen; Yuan, Jie; Liang, Yanyan; Wu, Jian; Gong, Hui; Ye, Yong; Jiang, Guoliang; Yin, Peipei; Li, Yang; Zhang, Guoping; Yang, Chunjie; Guo, Junjie; Chen, Zhidan; Wang, Xingxu; Weng, Liqing; Zou, Yunzeng.
Afiliación
  • Ding Z; Shanghai Institute of Cardiovascular Diseases, Zhongshan Hospital and Institute of Biomedical Sciences, Fudan University.
  • Yuan J; Shanghai Institute of Cardiovascular Diseases, Zhongshan Hospital and Institute of Biomedical Sciences, Fudan University.
  • Liang Y; Department of Cardiology, The First People's Hospital, Shanghai Jiao Tong University School of Medicine.
  • Wu J; Shanghai Institute of Cardiovascular Diseases, Zhongshan Hospital and Institute of Biomedical Sciences, Fudan University.
  • Gong H; Shanghai Institute of Cardiovascular Diseases, Zhongshan Hospital and Institute of Biomedical Sciences, Fudan University.
  • Ye Y; Shanghai Institute of Cardiovascular Diseases, Zhongshan Hospital and Institute of Biomedical Sciences, Fudan University.
  • Jiang G; Shanghai Institute of Cardiovascular Diseases, Zhongshan Hospital and Institute of Biomedical Sciences, Fudan University.
  • Yin P; Shanghai Institute of Cardiovascular Diseases, Zhongshan Hospital and Institute of Biomedical Sciences, Fudan University.
  • Li Y; Shanghai Institute of Cardiovascular Diseases, Zhongshan Hospital and Institute of Biomedical Sciences, Fudan University.
  • Zhang G; Shanghai Institute of Cardiovascular Diseases, Zhongshan Hospital and Institute of Biomedical Sciences, Fudan University.
  • Yang C; Shanghai Institute of Cardiovascular Diseases, Zhongshan Hospital and Institute of Biomedical Sciences, Fudan University.
  • Guo J; Shanghai Institute of Cardiovascular Diseases, Zhongshan Hospital and Institute of Biomedical Sciences, Fudan University.
  • Chen Z; Department of Cardiology, The Affiliated Hospital of Qingdao University.
  • Wang X; Shanghai Institute of Cardiovascular Diseases, Zhongshan Hospital and Institute of Biomedical Sciences, Fudan University.
  • Weng L; Shanghai Institute of Cardiovascular Diseases, Zhongshan Hospital and Institute of Biomedical Sciences, Fudan University.
  • Zou Y; Shanghai Institute of Cardiovascular Diseases, Zhongshan Hospital and Institute of Biomedical Sciences, Fudan University.
Int Heart J ; 58(6): 957-961, 2017 Dec 12.
Article en En | MEDLINE | ID: mdl-29162778
Ryanodine receptor type 2 (RyR-2), the main Ca2+ release channel from sarcoplasmic reticulum in cardiomyocytes, plays a vital role in the regulation ofmyocardial contractile function and cardiac hypertrophy. However, the role of RyR-2 in cardiac fibrosis during the development of cardiac hypertrophy remains unclear.In this study, we examined whether RyR-2 regulates TGFß1, which is secreted from cardiomyocytes and exerts on cardiac fibrosis using cultured cardiomyocytes and cardiac fibroblasts of neonatal rats. The expression of RyR-2 was found only in cardiomyocytesbut not in cardiac fibroblasts. Mechanical stretch induced upregulation of TGFß1 in cardiomyocytes and RyR-2 knockdown significantly suppressed the upregulation of TGFß1 expression. The transcript levels of collagen genes were also decreased in fibroblasts compare with wild type, although the expression of both two kinds was higher than those in stationary cardiomyocytes (non-stretch). With the inhibition of the TGFß1-neutralizing antibody, the expression of collagen genes has no significant difference between the mechanically stretched cardiomyocytes and non-stretchedones. These results indicate that RyR-2 regulated TGFß1 expression in mechanically stretched cardiomyocytes and TGFß1 promoted collagen formation of cardiac fibroblasts by a paracrine mechanism.RyR-2 in mechanical stretch could promote the development of cardiac fibrosis involving TGFß1-dependent paracrine mechanism. Our findings provided more insight into comprehensively understanding the molecular role of RyR-2 in regulating cardiac fibrosis.
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Texto completo: 1 Colección: 01-internacional Banco de datos: MEDLINE Asunto principal: Colágeno / Canal Liberador de Calcio Receptor de Rianodina / Miocitos Cardíacos / Factor de Crecimiento Transformador beta1 / Fibroblastos Tipo de estudio: Etiology_studies Límite: Animals Idioma: En Revista: Int Heart J Asunto de la revista: CARDIOLOGIA Año: 2017 Tipo del documento: Article

Texto completo: 1 Colección: 01-internacional Banco de datos: MEDLINE Asunto principal: Colágeno / Canal Liberador de Calcio Receptor de Rianodina / Miocitos Cardíacos / Factor de Crecimiento Transformador beta1 / Fibroblastos Tipo de estudio: Etiology_studies Límite: Animals Idioma: En Revista: Int Heart J Asunto de la revista: CARDIOLOGIA Año: 2017 Tipo del documento: Article