Attenuation of Low Ambient Temperature-Induced Myocardial Hypertrophy by Atorvastatin via Promoting Bcl-2 Expression

Bibliographic Details
Title: Attenuation of Low Ambient Temperature-Induced Myocardial Hypertrophy by Atorvastatin via Promoting Bcl-2 Expression
Authors: Jing Liang, Kun Yin, Xuefeng Cao, Zhenbo Han, Qi Huang, Lai Zhang, Wenya Ma, Fengzhi Ding, Chongwei Bi, Dan Feng, Zhenwei Pan, Yu Liu
Source: Cellular Physiology and Biochemistry, Vol 41, Iss 1, Pp 286-295 (2017)
Publisher Information: Cell Physiol Biochem Press GmbH & Co KG, 2017.
Publication Year: 2017
Collection: LCC:Physiology
LCC:Biochemistry
Subject Terms: p38, Bcl-2, Cardiac hypertrophy, Cold, Atorvastatin, Heart, Physiology, QP1-981, Biochemistry, QD415-436
More Details: Background/Aims: It is well documented that myocardial hypertrophy is associated with low ambient temperature. Atorvastatin (Atv) has been shown to protect against atherosclerosis, cardiac fibrosis, ischemia/reperfusion injury, etc. In this study, we aim to determine whether atorvastatin is effective in the treatment of myocardial hypertrophy induced by cold exposure and to shed light on underlying mechanism. Methods: The mice aged 4-week were randomized to Control (Ctl) group (raised at room temperature), Cold group (raised at 3-5ºC) and Atv treatment group (raised at 3-5ºC followed by 10mg/kg/day Atv infusion). Echocardiography (ECG), HE, TUNEL and Masson’s trichrome staining, and Transmission electronic microscopy were performed to analyze cardiac function, myocardial hypertrophy, cardiac fibrosis, apoptosis and cardiomyocyte ultrastructure, respectively. Western blot was carried out to determine the involvement of MAPK and apoptosis pathways. Results: Exposure of mice to low temperature induced myocardial hypertrophic growth characterized by the elevation of heart/body weight index and heart weight /tibia length index, compared with control mice. Atv treatment attenuated cardiac hypertrophy induced by cold exposure; Atv also attenuated the increase of cross-sectional area of cardiomyocytes and cardiac collagen content fraction in mice exposed to cold. ECG showed that the decline of cardiac functions including the elevated left ventricular systolic/diastolic internal dimension (LVIDs/d) and fractional shortening (FS) in mice with cold exposure was also inhibited by Atv treatment. Transmission electronic microscopy uncovered that Atv attenuated mitochondrial injury induced by cold exposure in mice. In addition, systolic blood pressure was gradually increased in mice exposed to cold temperature, and Atv treatment significantly inhibited the elevation of blood pressure in cold-treated mice. Mechanistically, mitogen-activated protein kinase (MAPK) signal was not altered in mice exposed to cold, and Atv did not affect MAPK signal in cold-treated mice. But Atv mitigated the reduction of Bcl-2/Bax level in heart of cold-treated mice. Conclusion: Atv attenuated myocardial hypertrophy induced by cold exposure through inhibiting the downregulation of Bcl-2 in heart. It may provide a novel strategy for low temperature-induced myocardial hypertrophy treatment.
Document Type: article
File Description: electronic resource
Language: English
ISSN: 1015-8987
1421-9778
00539074
Relation: http://www.karger.com/Article/FullText/456111; https://doaj.org/toc/1015-8987; https://doaj.org/toc/1421-9778
DOI: 10.1159/000456111
Access URL: https://doaj.org/article/e0d3542f66d34c5995a005390743d2dd
Accession Number: edsdoj.0d3542f66d34c5995a005390743d2dd
Database: Directory of Open Access Journals
More Details
ISSN:10158987
14219778
00539074
DOI:10.1159/000456111
Published in:Cellular Physiology and Biochemistry
Language:English