The cellular niche provides combination of biomolecular and biophysical cues to control stem cell fate. Three-dimensional (3D) aligned nanofibrous scaffolds can effectively augment stem cell cardiomyogenesis. This work aims to understand the role of biomolecular signals from extracellular matrix (ECM) proteins and leverage them to further promote cardiomyogenesis on nanofibrous scaffolds. Human mesenchymal stem cells (hMSCs) were cultured on 3D aligned polycaprolactone scaffolds coated with different ECM proteins. Among multiple coatings tested, collagen coated fibers were most effective in promoting cardiomyogenesis as determined from increased expression of cardiac biomarkers and intracellular calcium flux. At molecular level, enhanced di...
In vitro maturation of cardiomyocytes in 3D is essential for the development of viable cardiac model...
A major impediment in the clinical translation of stem cell therapy has been the inability to effici...
Polysaccharides and proteins profoundly impact the development and growth of tissues in the natural ...
Toward engineering a cardiac patch, the objective of this work was to assess stem cell response to a...
Collagen is the major structural protein in myocardium and contributes to tissue strength and integr...
International audienceLimited data are available on the effects of stem cells in non-ischemic dilate...
The functionality of stem cells is tightly regulated by cues from the niche, comprising both intrins...
MSCs are widely applied to regenerate heart tissue in myocardial diseases but when grown in standard...
Dilated cardiomyopathy is a major cause of progressive heart failure. Utilization of stem cell thera...
High-purity cardiomyocytes (CMs) derived from human induced pluripotent stem cells (hiPSCs) are prom...
Advances in stem cell (SC) biology have greatly enhanced our understanding of SC self-renewal and di...
nanofibrous scaffolds directly promote the cardiomyocyte differentiation of murine-induced pluripote...
Abstract Despite the enormous progress in the treatment of coronary artery diseases, they remain the...
In regenerative medicine, accumulating evidence demonstrates that the property of substrates monitor...
<div><p>Introduction</p><p>Dilated cardiomyopathy is a major cause of progressive heart failure. Uti...
In vitro maturation of cardiomyocytes in 3D is essential for the development of viable cardiac model...
A major impediment in the clinical translation of stem cell therapy has been the inability to effici...
Polysaccharides and proteins profoundly impact the development and growth of tissues in the natural ...
Toward engineering a cardiac patch, the objective of this work was to assess stem cell response to a...
Collagen is the major structural protein in myocardium and contributes to tissue strength and integr...
International audienceLimited data are available on the effects of stem cells in non-ischemic dilate...
The functionality of stem cells is tightly regulated by cues from the niche, comprising both intrins...
MSCs are widely applied to regenerate heart tissue in myocardial diseases but when grown in standard...
Dilated cardiomyopathy is a major cause of progressive heart failure. Utilization of stem cell thera...
High-purity cardiomyocytes (CMs) derived from human induced pluripotent stem cells (hiPSCs) are prom...
Advances in stem cell (SC) biology have greatly enhanced our understanding of SC self-renewal and di...
nanofibrous scaffolds directly promote the cardiomyocyte differentiation of murine-induced pluripote...
Abstract Despite the enormous progress in the treatment of coronary artery diseases, they remain the...
In regenerative medicine, accumulating evidence demonstrates that the property of substrates monitor...
<div><p>Introduction</p><p>Dilated cardiomyopathy is a major cause of progressive heart failure. Uti...
In vitro maturation of cardiomyocytes in 3D is essential for the development of viable cardiac model...
A major impediment in the clinical translation of stem cell therapy has been the inability to effici...
Polysaccharides and proteins profoundly impact the development and growth of tissues in the natural ...