Javascript must be enabled to continue!
Modeling of Arrhythmogenic Right Ventricular Cardiomyopathy With Human Induced Pluripotent Stem Cells
View through CrossRef
Background—
Arrhythmogenic right ventricular cardiomyopathy (ARVC) is a primary heart muscle disorder resulting from desmosomal protein mutations. ARVC is characterized pathologically by fibrofatty infiltration and clinically by arrhythmias and sudden cardiac death. We aimed to establish a patient-/disease-specific human induced pluripotent stem cell (hiPSC) model of ARVC.
Methods and Results—
Dermal fibroblasts were obtained from 2 patients with ARVC with plakophilin-2 (
PKP2
) mutations, reprogrammed to generate hiPSCs, coaxed to differentiate into cardiomyocytes (CMs), and then compared with healthy control hiPSC-derived CMs (hiPSC-CMs). Real-time polymerase chain reaction showed a significant decrease in the expression of
PKP2
in the ARVC-hiPSC-CMs. Immunostainings revealed reduced densities of PKP2, the associated desmosomal protein plakoglobin, and the gap-junction protein connexin-43. Electrophysiological assessment demonstrated prolonged field potential rise time in the ARVC-hiPSC-CMs. Transmission electron microscopy identified widened and distorted desmosomes in the ARVC-hiPSC-CMs. Clusters of lipid droplets were identified in the ARVC-CMs that displayed the more severe desmosomal pathology. This finding was associated with upregulation of the proadipogenic transcription factor peroxisome proliferator-activated receptor-γ. Exposure of the cells to apidogenic stimuli augmented desmosomal distortion and lipid accumulation. The latter phenomenon was prevented by application of a specific inhibitor of glycogen synthase kinase 3β (6-bromoindirubin-3'-oxime).
Conclusions—
This study highlights the unique potential of the hiPSC technology for modeling inherited cardiac disorders in general and ARVC specifically. The hiPSC-CMs were demonstrated to recapitulate the ARVC phenotype in the dish, provide mechanistic insights into early disease pathogenesis, and provide a unique platform for drug discovery and testing in this disorder.
Ovid Technologies (Wolters Kluwer Health)
Title: Modeling of Arrhythmogenic Right Ventricular Cardiomyopathy With Human Induced Pluripotent Stem Cells
Description:
Background—
Arrhythmogenic right ventricular cardiomyopathy (ARVC) is a primary heart muscle disorder resulting from desmosomal protein mutations.
ARVC is characterized pathologically by fibrofatty infiltration and clinically by arrhythmias and sudden cardiac death.
We aimed to establish a patient-/disease-specific human induced pluripotent stem cell (hiPSC) model of ARVC.
Methods and Results—
Dermal fibroblasts were obtained from 2 patients with ARVC with plakophilin-2 (
PKP2
) mutations, reprogrammed to generate hiPSCs, coaxed to differentiate into cardiomyocytes (CMs), and then compared with healthy control hiPSC-derived CMs (hiPSC-CMs).
Real-time polymerase chain reaction showed a significant decrease in the expression of
PKP2
in the ARVC-hiPSC-CMs.
Immunostainings revealed reduced densities of PKP2, the associated desmosomal protein plakoglobin, and the gap-junction protein connexin-43.
Electrophysiological assessment demonstrated prolonged field potential rise time in the ARVC-hiPSC-CMs.
Transmission electron microscopy identified widened and distorted desmosomes in the ARVC-hiPSC-CMs.
Clusters of lipid droplets were identified in the ARVC-CMs that displayed the more severe desmosomal pathology.
This finding was associated with upregulation of the proadipogenic transcription factor peroxisome proliferator-activated receptor-γ.
Exposure of the cells to apidogenic stimuli augmented desmosomal distortion and lipid accumulation.
The latter phenomenon was prevented by application of a specific inhibitor of glycogen synthase kinase 3β (6-bromoindirubin-3'-oxime).
Conclusions—
This study highlights the unique potential of the hiPSC technology for modeling inherited cardiac disorders in general and ARVC specifically.
The hiPSC-CMs were demonstrated to recapitulate the ARVC phenotype in the dish, provide mechanistic insights into early disease pathogenesis, and provide a unique platform for drug discovery and testing in this disorder.
Related Results
Stem cells
Stem cells
What is a stem cell? The term is a combination of ‘cell’ and ‘stem’. A cell is a major category of living thing, while a stem is a site of growth and support for something else. In...
A Case of Takotsubo Cardiomyopathy Following Postpartum Hemorrhage in a Patient with Concurrent Influenza A
A Case of Takotsubo Cardiomyopathy Following Postpartum Hemorrhage in a Patient with Concurrent Influenza A
Background
Takotsubo cardiomyopathy, also known as stress cardiomyopathy and broken heart syndrome, is a transient, non-ischemic cardiomyopathy marked by revers...
Right ventricular assessment of the adolescent footballer’s heart
Right ventricular assessment of the adolescent footballer’s heart
Abstract
Introduction
Athletic training can result in electrical and structural changes of the right ventricle that may mimic phenotypical features ...
The Application of Non-invasive Inverse ECG Techniques in Cardiomyopathy
The Application of Non-invasive Inverse ECG Techniques in Cardiomyopathy
The electrocardiogram (ECG) plays an important role in systematically assessing cardiac electrical function, but the standard 12-lead ECG only provides only a distant view on cardi...
Correlation Between the Ventricular Electrogram Amplitude in Sinus Rhythm and in Ventricular Fibrillation
Correlation Between the Ventricular Electrogram Amplitude in Sinus Rhythm and in Ventricular Fibrillation
During testing of implantable defibrillators, ability to sense ventricular fibrillation is assessed by observing electrograms and the emitted ECG interpretation channel during indu...
Heterozygous desmoplakin (DSP) variants presenting with early onset cardiomyopathy and refractory ventricular tachycardia
Heterozygous desmoplakin (DSP) variants presenting with early onset cardiomyopathy and refractory ventricular tachycardia
Arrhythmogenic cardiomyopathy is a non-ischaemic cardiomyopathy characterised by the presence of myocardial dysfunction and inherited conduction disease that predisposes patients t...
Advancements in differentiation of induced pluripotent stem cells into specialized neuronal subtypes
Advancements in differentiation of induced pluripotent stem cells into specialized neuronal subtypes
Abstract
The ability to generate specialized human neurons from induced pluripotent stem cells has revolutionized neuroscience, regenerative ...
Editorial - Humanising STEM Education
Editorial - Humanising STEM Education
No matter what scale, institution to national to international, STEM education has increasingly focused on humanising the learning experience, making STEM disciplines more relatabl...

