Literature DB >> 24508518

Berberine improves pressure overload-induced cardiac hypertrophy and dysfunction through enhanced autophagy.

Ming-Hui Li1, Yao-Jun Zhang1, Yi-Hui Yu1, Shao-Hua Yang1, Javaid Iqbal2, Qiong-Yu Mi3, Bing Li1, Zhi-Mei Wang1, Wen-Xing Mao1, Hong-Guang Xie4, Shao-Liang Chen5.   

Abstract

Cardiac hypertrophy is a maladaptive change in response to pressure overload, and is also an important risk for developing heart failure. Berberine is known to have cardioprotective effects in patients with hypertension and in animal models of cardiac hypertrophy. In the current study, we observed that transverse aortic contraction (TAC) surgery induced a marked increase in heart size, the ratio of heart weight to body weight, cardiomyocyte apoptosis, myocardial fibrosis, and hypertrophic marker brain natriuretic peptide, all of which were effectively suppressed by berberine administration. In addition, berberine enhanced autophagy in hypertrophic hearts, which was accompanied by a decrease in heart size, cardiac apoptosis, and the attenuation of cardiac dysfunction. Furthermore, use of autophagy inhibitor 3-methyladenine (3-MA) blocked berberine-induced autophagy level, and abrogated the protection of berberine against heart hypertrophy, cardiac dysfunction, and apoptosis. Berberine ameliorated TAC-induced endoplasmic reticulum stress, which was also abolished by 3-MA. Moreover, berberine significantly inhibited the upstream signaling of autophagy, such as the mammalian target of rapamycin (mTOR), extracellular signal-regulated kinase (ERK1/2), and p38 mitogen-activated protein kinase (MAPK) phosphorylation. We conclude that berberine could attenuate left ventricular remodeling and cardiomyocyte apoptosis through an autophagy-dependent mechanism in a rat model of cardiac hypertrophy, which is, at least in part, associated with enhanced autophagy through inhibition of mTOR, p38 and ERK1/2 MAPK signaling pathways.
Copyright © 2014 Elsevier B.V. All rights reserved.

Entities:  

Keywords:  Autophagy; Berberine; Berberine chloride (PubChem CID: 12456); Endoplasmic reticulum stress; Hypertrophy; Transverse aortic constriction

Mesh:

Substances:

Year:  2014        PMID: 24508518     DOI: 10.1016/j.ejphar.2014.01.061

Source DB:  PubMed          Journal:  Eur J Pharmacol        ISSN: 0014-2999            Impact factor:   4.432


  41 in total

1.  Renoprotective effects of berberine as adjuvant therapy for hypertensive patients with type 2 diabetes mellitus: Evaluation via biochemical markers and color Doppler ultrasonography.

Authors:  Peifeng Dai; Junhua Wang; Lin Lin; Yanyan Zhang; Zhengping Wang
Journal:  Exp Ther Med       Date:  2015-06-22       Impact factor: 2.447

2.  Berberine improves mesenteric artery insulin sensitivity through up-regulating insulin receptor-mediated signalling in diabetic rats.

Authors:  Feng-Hao Geng; Guo-Hua Li; Xing Zhang; Peng Zhang; Ming-Qing Dong; Zhi-Jing Zhao; Yuan Zhang; Ling Dong; Feng Gao
Journal:  Br J Pharmacol       Date:  2016-04-05       Impact factor: 8.739

3.  Molecular characterization of microtubule-associated protein 1-light chain 3B in Megalobrama amblycephala fed with high fat/berberine diets.

Authors:  Wei-Na Xu; Dan-Hong Chen; Wen-Bin Liu; Jian-Xiong Xu; Shuo-Shuo Yang
Journal:  J Appl Genet       Date:  2018-06-28       Impact factor: 3.240

4.  Berberine inhibits colitis-associated tumorigenesis via suppressing inflammatory responses and the consequent EGFR signaling-involved tumor cell growth.

Authors:  Dandan Li; Youyu Zhang; Kun Liu; Yujie Zhao; Beibei Xu; Liang Xu; Li Tan; Yuan Tian; Cunxi Li; Wenqing Zhang; Hanwei Cao; Yan-Yan Zhan; Tianhui Hu
Journal:  Lab Invest       Date:  2017-07-31       Impact factor: 5.662

5.  Effect of berberine on acetylcholine-induced atrial fibrillation in rabbit.

Authors:  Zhi-Wen Zhou; Hong-Chao Zheng; Li-Fang Zhao; Wei Li; Jian-Wen Hou; Yi Yu; Pi-Zhi Miao; Jian-Ming Zhu
Journal:  Am J Transl Res       Date:  2015-08-15       Impact factor: 4.060

Review 6.  The role of autophagy in cardiac hypertrophy.

Authors:  Lanfang Li; Jin Xu; Lu He; Lijun Peng; Qiaoqing Zhong; Linxi Chen; Zhisheng Jiang
Journal:  Acta Biochim Biophys Sin (Shanghai)       Date:  2016-04-15       Impact factor: 3.848

Review 7.  Biologically active isoquinoline alkaloids covering 2014-2018.

Authors:  Xiao-Fei Shang; Cheng-Jie Yang; Susan L Morris-Natschke; Jun-Cai Li; Xiao-Dan Yin; Ying-Qian Liu; Xiao Guo; Jing-Wen Peng; Masuo Goto; Ji-Yu Zhang; Kuo-Hsiung Lee
Journal:  Med Res Rev       Date:  2020-07-29       Impact factor: 12.944

Review 8.  Targeting Autophagy in Aging and Aging-Related Cardiovascular Diseases.

Authors:  Jun Ren; Yingmei Zhang
Journal:  Trends Pharmacol Sci       Date:  2018-10-26       Impact factor: 14.819

9.  Augmentation of autophagy by atorvastatin via Akt/mTOR pathway in spontaneously hypertensive rats.

Authors:  Wei Wang; Hao Wang; Qing-Xin Geng; Hua-Ting Wang; Wei Miao; Bo Cheng; Di Zhao; Guang-Min Song; Groban Leanne; Zhuo Zhao
Journal:  Hypertens Res       Date:  2015-07-30       Impact factor: 3.872

Review 10.  Chronic heart failure: Ca(2+), catabolism, and catastrophic cell death.

Authors:  Geoffrey W Cho; Francisco Altamirano; Joseph A Hill
Journal:  Biochim Biophys Acta       Date:  2016-01-13
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