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Modified Mouse Embryonic Stem Cell based Assay for Quantifying Cardiogenic Induction Efficiency
Published on: April 22, 2011
Altered Functional Expression of β-Adrenergic Receptors in Rhesus Monkey Embryonic Stem Cell-Derived Cardiomyocytes
Nermeen Eldabah1,2, Erastus Nembu Nembo1, Marina Penner3
11 Institute of Neurophysiology, University of Cologne , Cologne, Germany .
Abstract:
Pluripotent stem cells have demonstrated the potential to generate large numbers of functional cardiomyocytes (CMs) from different cell sources. Besides Wnt signaling, additional pathways are involved in early cardiac development and function. To date however, no study exists showing the effects of perturbing the canonical Wnt pathway using nonhuman primate embryonic stem (ES) cells. In this study, we investigated the effect of canonical Wnt inhibition during differentiation of nonhuman primate ES cell-derived CMs under defined, growth factor conditions. Rhesus monkey ES (rES) cells were differentiated into spontaneously beating CMs in the absence (control) or presence (treated) of Wnt inhibitor Dickkopf1 (DKK1), vascular endothelial growth factor, and basic fibroblast growth factor combined or added in a sequential manner during differentiation. Quantification and functional characterization of CMs were assessed by molecular and electrophysiological techniques. Analysis revealed no difference in average ratio of spontaneously beating clusters in both control and treated groups. However, the percentage of CMs was significantly reduced and the expressions of specific cardiac markers tested were also decreased in the treated group. Interestingly, we found that in CMs obtained from treated group, β-adrenergic receptors (β-ARs) were less expressed, their function was altered and electrophysiological studies revealed differences in action potential responsiveness to β-AR stimulation. We demonstrated that the Wnt/β-catenin pathway inhibitor, DKK1 associated with other growth factors repressed functional expression of β-ARs in rES cell-derived CMs. Thus, control of this pathway in each cell line and source is important for proper basic research and further cell therapy applications.
Insights
Canonical Wnt pathway inhibition using Dickkopf1 (DKK1) in nonhuman primate stem cells reduced cardiomyocyte differentiation and impaired beta-adrenergic receptor function, impacting cell therapy potential.
Area of Science:
- Stem cell biology
- Cardiovascular research
- Developmental biology
Background:
- Pluripotent stem cells can generate functional cardiomyocytes (CMs).
- Canonical Wnt signaling is crucial for cardiac development.
- The effect of Wnt pathway perturbation in nonhuman primate ES cell-derived CMs is understudied.
Purpose of the Study:
- To investigate the impact of canonical Wnt pathway inhibition on nonhuman primate ES cell differentiation into CMs.
- To assess the functional consequences of Wnt inhibition on CMs, particularly regarding beta-adrenergic receptors (β-ARs).
Main Methods:
- Rhesus monkey ES (rES) cells were differentiated with or without Wnt inhibitor Dickkopf1 (DKK1), vascular endothelial growth factor, and basic fibroblast growth factor.
- CM differentiation was quantified using molecular and electrophysiological techniques.
- Cardiac marker expression and β-AR function were assessed.
Main Results:
- DKK1 treatment significantly reduced the percentage of CMs and cardiac marker expression.
- CMs from DKK1-treated cultures showed reduced β-AR expression and altered function.
- Electrophysiological studies revealed differences in action potential responsiveness to β-AR stimulation in treated CMs.
Conclusions:
- Canonical Wnt pathway inhibition, using DKK1 with growth factors, represses functional β-AR expression in rES cell-derived CMs.
- Controlling the Wnt/β-catenin pathway is critical for CM differentiation and function in stem cell research and therapy.

