TRPM7 is involved in angiotensin II induced cardiac fibrosis development by mediating calcium and magnesium influx

作者:Yu Yang; Chen Shaorui; Xiao Chuyao; Jia Yanyan; Guo Jinlei; Jiang Jianmin*; Liu Peiqing
来源:Cell Calcium, 2014, 55(5): 252-260.
DOI:10.1016/j.ceca.2014.02.019

摘要

Cardiac fibrosis is involved in a lot of cardiovascular pathological processes. Cardiac fibrosis can block conduction, cause hypoxia, strengthen myocardial stiffness, create electrical heterogeneity, and hamper systolic ejection, which is associated with the development of arrhythmia, heart failure and sudden cardiac death. Besides the initial stimulating factors, the cardiac fibroblasts (CFs) are the principal responsible cells in the fibrogenesis cascade of events. TRPM7, a member of the TRPM (Melastatin) subfamily, is a non-selective cation channel, which permeates both Ca2+ and Mg2+. Here we demonstrated TRPM7 expression in CFs, and 2-APB (TRPM7 inhibitor), inhibited Ang II-induced CTGF, alpha-SMA expression and CFs proliferation. Besides, knocking down TRPM7 by shRNA, we proved that TRPM7 mediated both calcium and magnesium changes in cardiac fibroblasts which contribute to fibrosis progress. This study suggested that TRPM7 should play a pivotal role in cardiac fibroblast functions associated to cardiac fibrosis development.