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PMID: 22271820 Published · ppublish English Comparative Study Journal Article Research Support, N.I.H., Extramural Research Support, Non-U.S. Gov't

Inhibition of histone deacetylases preserves myocardial performance and prevents cardiac remodeling through stimulation of endogenous angiomyogenesis.

The Journal of pharmacology and experimental therapeutics ·Vol. 341 ·No. 1 ·2012-04-00 ·Pages 285-93

Zhang L, Qin X, Zhao Y, Fast L, Zhuang S, Liu P, Cheng G, Zhao TC

Abstract

We have previously shown that the inhibition of histone deacetylases (HDACs) protects the heart against acute myocardial ischemia and reperfusion injury. We also demonstrated that HDAC inhibition stimulates myogenesis and angiogenesis in a cultured embryonic stem cell model. We investigate whether in vivo inhibition of HDAC preserves cardiac performance and prevents cardiac remodeling in mouse myocardial infarction (MI) through the stimulation of endogenous regeneration. MI was created by ligation of the left descending artery. Animals were divided into three groups: 1) sham group, animals that underwent thoracotomy without MI; 2) MI, animals that underwent MI; and 3) MI + trichostatin A (TSA), MI animals that received a daily intraperitoneal injection of TSA. In addition, infarcted mice received a daily intraperitoneal injection of TSA (0.1 mg/kg), a selective HDAC inhibitor. 5-Bromo-2-deoxyuridine (50 mg/kg) was delivered every other day to pulse-chase label in vivo endogenous cardiac replication. Eight weeks later, the MI hearts showed a reduction in ventricular contractility. HDAC inhibition increased the improvement of myocardial functional recovery after MI, which was associated with the prevention of myocardial remodeling and reduction of myocardial and serum tumor necrosis factor α. HDAC inhibition enhanced the formation of new myocytes and microvessels, which was consistent with the robust increase in proliferation and cytokinesis in the MI hearts. An increase in angiogenic response was demonstrated in MI hearts receiving TSA treatment. It is noteworthy that TSA treatment significantly inhibited HDAC activity and increased phosphorylation of Akt-1, but decreased active caspase 3. Taken together, our results indicate that HDAC inhibition preserves cardiac performance and mitigates myocardial remodeling through stimulating cardiac endogenous regeneration.

MeSH Terms
Animals Histone Deacetylase Inhibitors/pharmacology,therapeutic use Histone Deacetylases/metabolism Hydroxamic Acids/pharmacology,therapeutic use Male Mice Mice, Inbred ICR Muscle Development/physiology Myocardial Infarction/drug therapy,enzymology,pathology Myocardium/enzymology,pathology Myocytes, Cardiac/drug effects,enzymology Neovascularization, Physiologic/drug effects,physiology Ventricular Remodeling/drug effects,physiology
Chemicals
Histone Deacetylase Inhibitors Hydroxamic Acids trichostatin A Histone Deacetylases
Authors & Affiliations
8 authors, click to expand affiliations / ORCID
Zhang Ling
Cardiovascular Laboratories, Department of Surgery, Boston University Medical School, Roger William Medical Center, 50 Maude Street, Providence, RI 02908, USA.
Qin Xin
Zhao Yu
Fast Loren
Zhuang Shougang
Liu Paul
Cheng Guangmao
Zhao Ting C
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Article Info
Journal
The Journal of pharmacology and experimental therapeutics
Abbr.
J Pharmacol Exp Ther
ISSN
1521-0103
Published
2012-04-00
Epub
2012-00-23
Pages
285-93
Language
English
Region
United States
NLM ID
0376362
PMCID
PMC3310703
Subset
IM
Grants
NIDDK NIH HHS · R01 DK085065 · United States
NHLBI NIH HHS · R01 HL089405 · United States
NHLBI NIH HHS · R01-HL089405 · United States
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