4.5 Article

HDAC5 inhibition attenuates ventricular remodeling and cardiac dysfunction

相关参考文献

注意:仅列出部分参考文献,下载原文获取全部文献信息。
Article Medicine, Research & Experimental

EGCG prevents pressure overload-induced myocardial remodeling by downregulating overexpression of HDAC5 in mice

Xiao Han et al.

Summary: This study aimed to investigate the preventive effect of EGCG on myocardial remodeling and explore the underlying mechanisms. The results showed that EGCG increased H3K27ac acetylation by inhibiting HDAC5, which reversed cardiac dysfunction and hypertrophy, and improved survival in TAC mice.

INTERNATIONAL JOURNAL OF MOLECULAR MEDICINE (2022)

Article Oncology

Upregulation of ERK-EGR1-heparanase axis by HDAC inhibitors provides targets for rational therapeutic intervention in synovial sarcoma

Cinzia Lanzi et al.

Summary: This study revealed that the response of synovial sarcoma cells to HDAC inhibitors mainly involves the ERK-EGR1-heparanase pathway, and the combination of HDAC inhibitors with drugs targeting these pathways can significantly enhance antiproliferative and pro-apoptotic effects.

JOURNAL OF EXPERIMENTAL & CLINICAL CANCER RESEARCH (2021)

Review Cardiac & Cardiovascular Systems

Mechanisms of physiological and pathological cardiac hypertrophy

Michinari Nakamura et al.

NATURE REVIEWS CARDIOLOGY (2018)

Article Biochemistry & Molecular Biology

HDAC inhibition attenuates cardiac hypertrophy by acetylation and deacetylation of target genes

Jenny Y. Y. Ooi et al.

EPIGENETICS (2015)

Article Multidisciplinary Sciences

EGR1 Functions as a Potent Repressor of MEF2 Transcriptional Activity

Yi Feng et al.

PLOS ONE (2015)

Review Cardiac & Cardiovascular Systems

HDAC-dependent ventricular remodeling

Min Xie et al.

TRENDS IN CARDIOVASCULAR MEDICINE (2013)

Review Pharmacology & Pharmacy

Therapeutic Potential for HDAC Inhibitors in the Heart

Timothy A. McKinsey

ANNUAL REVIEW OF PHARMACOLOGY AND TOXICOLOGY, VOL 52 (2012)

Article Multidisciplinary Sciences

Histone deacetylase (HDAC) inhibitors attenuate cardiac hypertrophy by suppressing autophagy

Dian J. Cao et al.

PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA (2011)

Article Biochemistry & Molecular Biology

HDAC-mediated control of ERK- and PI3K-dependent TGF-β-induced extracellular matrix-regulating genes

Matt J. Barter et al.

MATRIX BIOLOGY (2010)

Article Biochemistry & Molecular Biology

A new type of ERK1/2 autophosphorylation causes cardiac hypertrophy

Kristina Lorenz et al.

NATURE MEDICINE (2009)

Review Genetics & Heredity

The many roles of histone deacetylases in development and physiology: implications for disease and therapy

Michael Haberland et al.

NATURE REVIEWS GENETICS (2009)

Article Medicine, Research & Experimental

The MEF2D transcription factor mediates stress-dependent cardiac remodeling in mice

Yuri Kim et al.

JOURNAL OF CLINICAL INVESTIGATION (2008)

Article Cell Biology

YY1 Protects Cardiac Myocytes from Pathologic Hypertrophy by Interacting with HDAC5

Carmen C. Sucharov et al.

MOLECULAR BIOLOGY OF THE CELL (2008)

Article Biochemistry & Molecular Biology

Hdac2 regulates the cardiac hypertrophic response by modulating Gsk3β activity

Chinmay M. Trivedi et al.

NATURE MEDICINE (2007)

Article Medicine, Research & Experimental

CaM kinase II selectively signals to histone deacetylase 4 during cardiornyocyte hypertrophy

Johannes Backs et al.

JOURNAL OF CLINICAL INVESTIGATION (2006)

Review Cardiac & Cardiovascular Systems

Early growth response-1 in cardiovascular pathobiology

LM Khachigian

CIRCULATION RESEARCH (2006)

Article Cardiac & Cardiovascular Systems

Egr-1 negatively regulates expression of the sodium-calcium exchanger-1 in cardiomyocytes in vitro and in vivo

CL Wang et al.

CARDIOVASCULAR RESEARCH (2005)

Article Biochemistry & Molecular Biology

Protein kinases C and D mediate agonist-dependent cardiac hypertrophy through nuclear export of histone deacetylase 5

RB Vega et al.

MOLECULAR AND CELLULAR BIOLOGY (2004)