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HDAC inhibitor valproic acid protects heart function through Foxm1 pathway after acute myocardial infarction
Tian, Shuo1; Lei, Ienglam1,2; Gao, Wenbin1,3; Liu, Liu1; Guo, Yijing1,4; Creech, Jeffery5; Herron, Todd J.5; Xian, Shaoxiang3; Ma, Peter X.6; Eugene Chen, Y.5; Li, Yongqing7; Alam, Hasan B.7; Wang, Zhong1
2019-01
Source PublicationEBioMedicine
ISSN2352-3964
Volume39Pages:83-94
Abstract

Background: Epigenetic histone acetylation is a major event controlling cell functions, such as metabolism, differentiation and repair. Here, we aim to determine whether Valproic acid (VPA), a FDA approved inhibitor of histone deacetylation for bipolar disease, could protect heart against myocardial infarction (MI) injury and elucidate key molecular pathways. Methods: VPA was administrated to MI rats at different time points, onset and after MI injury. Echocardiography, histology, serum biology assays, and gene expression, inhibition, and over-expression were performed to characterize the systolic function, infarct size, gene and signaling pathways. Findings: VPA treatment reduced the infarct size by ~50% and preserved the systolic function of heart after acute MI in rats. Even 60 min after infarction, VPA treatment significantly decreased infarct size. Furthermore, long-term treatment of VPA markedly improved myocardial performance. VPA regulated gene expression essential for cell survival and anti-inflammatory response. Consequently, oxidative stress and cell death were notably reduced after VPA treatment. Moreover, Foxm1 was identified as a potential key target of VPA. Overexpression of Foxm1 provided similar heart protective effect to VPA treatment. Particularly, both VPA treatment and Foxm1 over-expression repressed inflammatory response after MI for heart protection. In contrast, inhibition of Foxm1 activity abolished the cardiac protective effect of VPA. VPA mediated CM protection through Foxm1 upregulation was also identified in a human ESC derived CM hypoxia/reperfusion system. Interpretation: VPA treatments significantly reduce cardiac damage after MI and the cardioprotective effect of VPA is likely mediated via Foxm1 pathway. Fund: This work was mainly supported by 1R01HL109054.

KeywordCardiomyocyte Protection Foxm1 Myocardial Infarction Valproic Acid
DOI10.1016/j.ebiom.2018.12.003
URLView the original
Indexed BySCIE
Language英語English
WOS Research AreaGeneral & Internal Medicine ; Research & Experimental Medicine
WOS SubjectMedicine, General & Internal ; Medicine, Research & Experimental
WOS IDWOS:000456677400021
Scopus ID2-s2.0-85058042163
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Document TypeJournal article
CollectionUniversity of Macau
Corresponding AuthorWang, Zhong
Affiliation1.Department of Cardiac Surgery, Cardiovascular Center, The University of Michigan, Ann Arbor, 48109, United States
2.Faculty of Health Sciences, University of Macau, Macau, Avenida de Universidade, Taipa, China
3.The First Affiliated Hospital, Guangzhou University of Chinese Medicine, Guangzhou, 510405, China
4.Department of Spine Surgery, Xiangya Spinal Surgery Center, Xiangya Hospital, Central South University, Changsha, 410008, China
5.Cardiovascular Center, Department of Internal Medicine, University of Michigan Medical Center, Ann Arbor, 48109, United States
6.Department of Biologic and Materials Science, University of Michigan, Ann Arbor, 48109, United States
7.Department of Surgery, University of Michigan Health System, Ann Arbor, 48109, United States
Recommended Citation
GB/T 7714
Tian, Shuo,Lei, Ienglam,Gao, Wenbin,et al. HDAC inhibitor valproic acid protects heart function through Foxm1 pathway after acute myocardial infarction[J]. EBioMedicine, 2019, 39, 83-94.
APA Tian, Shuo., Lei, Ienglam., Gao, Wenbin., Liu, Liu., Guo, Yijing., Creech, Jeffery., Herron, Todd J.., Xian, Shaoxiang., Ma, Peter X.., Eugene Chen, Y.., Li, Yongqing., Alam, Hasan B.., & Wang, Zhong (2019). HDAC inhibitor valproic acid protects heart function through Foxm1 pathway after acute myocardial infarction. EBioMedicine, 39, 83-94.
MLA Tian, Shuo,et al."HDAC inhibitor valproic acid protects heart function through Foxm1 pathway after acute myocardial infarction".EBioMedicine 39(2019):83-94.
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