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Flow shear stress enhances intracellular Ca2+signaling in pulmonary artery smooth muscle cells from patients with pulmonary arterial hypertension

Authors :
Aya Yamamura
Ramon J. Ayon
Shanshan Song
Hisao Yamamura
Jason X.-J. Yuan
Kimberly A. Smith
Ayako Makino
Haiyang Tang
Source :
American Journal of Physiology-Cell Physiology. 307:C373-C383
Publication Year :
2014
Publisher :
American Physiological Society, 2014.

Abstract

An increase in cytosolic Ca2+concentration ([Ca2+]cyt) in pulmonary arterial smooth muscle cells (PASMC) is a major trigger for pulmonary vasoconstriction and an important stimulus for pulmonary arterial medial hypertrophy in patients with idiopathic pulmonary arterial hypertension (IPAH). Vascular smooth muscle cells (SMC) sense the blood flow shear stress through interstitial fluid driven by pressure or direct exposure to blood flow in case of endothelial injury. Mechanical stimulus can increase [Ca2+]cyt. Here we report that flow shear stress raised [Ca2+]cytin PASMC, while the shear stress-mediated rise in [Ca2+]cytand the protein expression level of TRPM7 and TRPV4 channels were significantly greater in IPAH-PASMC than in normal PASMC. Blockade of TRPM7 by 2-APB or TRPV4 by Ruthenium red inhibited shear stress-induced rise in [Ca2+]cytin normal and IPAH-PASMC, while activation of TRPM7 by bradykinin or TRPV4 by 4αPDD induced greater increase in [Ca2+]cytin IPAH-PASMC than in normal PASMC. The bradykinin-mediated activation of TRPM7 also led to a greater increase in [Mg2+]cytin IPAH-PASMC than in normal PASMC. Knockdown of TRPM7 and TRPV4 by siRNA significantly attenuated the shear stress-mediated [Ca2+]cytincreases in normal and IPAH-PASMC. In conclusion, upregulated mechanosensitive channels (e.g., TRPM7, TRPV4, TRPC6) contribute to the enhanced [Ca2+]cytincrease induced by shear stress in PASMC from IPAH patients. Blockade of the mechanosensitive cation channels may represent a novel therapeutic approach for relieving elevated [Ca2+]cytin PASMC and thereby inhibiting sustained pulmonary vasoconstriction and pulmonary vascular remodeling in patients with IPAH.

Details

ISSN :
15221563 and 03636143
Volume :
307
Database :
OpenAIRE
Journal :
American Journal of Physiology-Cell Physiology
Accession number :
edsair.doi.dedup.....5fdca6ef07ccd46ceca4b283c3ec4058
Full Text :
https://doi.org/10.1152/ajpcell.00115.2014