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1.
Hypertension ; 61(3): 593-601, 2013 Mar.
Article in English | MEDLINE | ID: mdl-23339168

ABSTRACT

Pulmonary hypertension (PH) that occurs after left-heart failure (LHF), classified as Group 2 PH, involves progressive pulmonary vascular remodeling induced by smooth muscle cell (SMC) proliferation. However, mechanisms involved in the activation of SMCs remain unknown. The objective of this study was to determine the involvement of peroxynitrite and phosphatase-and-tensin homolog on chromosome 10 (PTEN) in vascular SMC proliferation and remodeling in the LHF-induced PH (LHF-PH). LHF was induced by permanent ligation of left anterior descending coronary artery in rats for 4 weeks. MRI, ultrasound, and hemodynamic measurements were performed to confirm LHF and PH. Histopathology, Western blot, and real-time polymerase chain reaction analyses were used to identify key molecular signatures. Therapeutic intervention was demonstrated using an antiproliferative compound, HO-3867. LHF-PH was confirmed by significant elevation of pulmonary artery pressure (mean pulmonary artery pressure/mm Hg: 35.9±1.8 versus 14.8±2.0, control; P<0.001) and vascular remodeling. HO-3867 treatment decreased mean pulmonary artery pressure to 22.6±0.8 mm Hg (P<0.001). Substantially higher levels of peroxynitrite and significant loss of PTEN expression were observed in the lungs of LHF rats when compared with control. In vitro studies using human pulmonary artery SMCs implicated peroxynitrite-mediated downregulation of PTEN expression as a key mechanism of SMC proliferation. The results further established that HO-3867 attenuated LHF-PH by decreasing oxidative stress and increasing PTEN expression in the lung. In conclusion, peroxynitrite and peroxynitrite-mediated PTEN inactivation seem to be key mediators of lung microvascular remodeling associated with PH secondary to LHF.


Subject(s)
Down-Regulation/physiology , Heart Failure/complications , Hypertension, Pulmonary/etiology , PTEN Phosphohydrolase/biosynthesis , Peroxynitrous Acid/metabolism , Animals , Cell Line , Heart Failure/diagnostic imaging , Heart Failure/drug therapy , Heart Failure/metabolism , Humans , Hypertension, Pulmonary/diagnostic imaging , Hypertension, Pulmonary/drug therapy , Hypertension, Pulmonary/metabolism , Hypertension, Pulmonary/pathology , Lung/blood supply , Lung/drug effects , Lung/metabolism , Lung/pathology , Male , Microvessels/drug effects , Microvessels/metabolism , Muscle, Smooth, Vascular/drug effects , Muscle, Smooth, Vascular/metabolism , Oxidative Stress/drug effects , Peroxynitrous Acid/analysis , Piperidones/therapeutic use , Pulmonary Artery/drug effects , Pulmonary Artery/metabolism , Rats , Rats, Sprague-Dawley , Ultrasonography
2.
Am J Physiol Heart Circ Physiol ; 301(3): H868-80, 2011 Sep.
Article in English | MEDLINE | ID: mdl-21622832

ABSTRACT

Rac1-GTPase activation plays a key role in the development and progression of cardiac remodeling. Therefore, we engineered a transgenic mouse model by overexpressing cDNA of a constitutively active form of Zea maize Rac gene (ZmRacD) specifically in the hearts of FVB/N mice. Echocardiography and MRI analyses showed cardiac hypertrophy in old transgenic mice, as evidenced by increased left ventricular (LV) mass and LV mass-to-body weight ratio, which are associated with relative ventricular chamber dilation and systolic dysfunction. LV hypertrophy in the hearts of old transgenic mice was further confirmed by an increased heart weight-to-body weight ratio and histopathology analysis. The cardiac remodeling in old transgenic mice was coupled with increased myocardial Rac-GTPase activity (372%) and ROS production (462%). There were also increases in α(1)-integrin (224%) and ß(1)-integrin (240%) expression. This led to the activation of hypertrophic signaling pathways, e.g., ERK1/2 (295%) and JNK (223%). Pravastatin treatment led to inhibition of Rac-GTPase activity and integrin signaling. Interestingly, activation of ZmRacD expression with thyroxin led to cardiac dilation and systolic dysfunction in adult transgenic mice within 2 wk. In conclusion, this is the first study to show the conservation of Rho/Rac proteins between plant and animal kingdoms in vivo. Additionally, ZmRacD is a novel transgenic model that gradually develops a cardiac phenotype with aging. Furthermore, the shift from cardiac hypertrophy to dilated hearts via thyroxin treatment will provide us with an excellent system to study the temporal changes in cardiac signaling from adaptive to maladaptive hypertrophy and heart failure.


Subject(s)
Hypertrophy, Left Ventricular/enzymology , Myocardium/enzymology , Plant Proteins/metabolism , Ventricular Dysfunction, Left/enzymology , Ventricular Function, Left , Ventricular Remodeling , rac1 GTP-Binding Protein/metabolism , Aging , Amino Acid Sequence , Analysis of Variance , Animals , Echocardiography , Genotype , Hypertrophy, Left Ventricular/diagnosis , Hypertrophy, Left Ventricular/genetics , Hypertrophy, Left Ventricular/physiopathology , Integrin alpha1/metabolism , Integrin beta1/metabolism , MAP Kinase Signaling System , Magnetic Resonance Imaging , Male , Mice , Mice, Transgenic , Molecular Sequence Data , Mutation , Myocardium/pathology , Myosin Heavy Chains/genetics , Phenotype , Plant Proteins/antagonists & inhibitors , Plant Proteins/genetics , Pravastatin/pharmacology , Promoter Regions, Genetic , Superoxides/metabolism , Thyroxine/pharmacology , Ventricular Dysfunction, Left/diagnosis , Ventricular Dysfunction, Left/genetics , Ventricular Dysfunction, Left/physiopathology , Ventricular Function, Left/drug effects , Ventricular Function, Left/genetics , Ventricular Remodeling/drug effects , Ventricular Remodeling/genetics , rac1 GTP-Binding Protein/antagonists & inhibitors , rac1 GTP-Binding Protein/genetics
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