Human mesenchymal stem cells (hMSCs) hold great promise in cardiac fibrosis therapy, due to their potential ability of inhibiting cardiac myofibroblast differentiation (a hallmark of cardiac fibrosis). However, the mechanism involved in their effects remains elusive. To explore this, it is necessary to develop an in vitro cardiac fibrosis model that incorporates pore size and native tissue-mimicking matrix stiffness, which may regulate cardiac myofibroblast differentiation. In the present study, collagen coated polyacrylamide hydrogel substrates were fabricated, in which the pore size was adjusted without altering the matrix stiffness. Stiffness is shown to regulate cardiac myofibroblast differentiation independently of pore size. Substrate...
: Cardiac fibrosis is characterized by a maladaptive remodeling of the myocardium, which is controll...
Cardiomyocyte and stroma cell cross-talk is essential for the formation of collagen-based engineered...
In vitro maturation of cardiomyocytes in 3D is essential for the development of viable cardiac model...
Isolation and culturing of cardiac fibroblasts (CF) induces rapid differentiation toward a myofibrob...
Isolation and culturing of cardiac fibroblasts (CF) induces rapid differentiation toward a myofibrob...
Cardiac fibrosis is the excessive accumulation of extra-cellular matrix that is mainly regulated by ...
Pathophysiological conditions, such as myocardial infarction and mechanical overload affect the mamm...
Mechanical cues activate cardiac fibroblasts and induce differentiation into myofibroblasts, which a...
Pathophysiological conditions, such as myocardial infarction and mechanical overload affect the mamm...
Activation of cardiac fibroblasts into myofibroblasts is considered to play an essential role in car...
Abstract Activation of cardiac fibroblasts and differentiation to myofibroblasts underlies developme...
Tissue engineering approaches are currently being investigated for the restoration of myocardial fun...
Cardiac fibrosis is a serious condition currently lacking effective treatments. It occurs as a resul...
Tissue-specific elastic modulus (E), or 'stiffness,' arises from developmental changes in the extrac...
Environmental stiffness is a crucial determinant of cell function. There is a long-standing quest fo...
: Cardiac fibrosis is characterized by a maladaptive remodeling of the myocardium, which is controll...
Cardiomyocyte and stroma cell cross-talk is essential for the formation of collagen-based engineered...
In vitro maturation of cardiomyocytes in 3D is essential for the development of viable cardiac model...
Isolation and culturing of cardiac fibroblasts (CF) induces rapid differentiation toward a myofibrob...
Isolation and culturing of cardiac fibroblasts (CF) induces rapid differentiation toward a myofibrob...
Cardiac fibrosis is the excessive accumulation of extra-cellular matrix that is mainly regulated by ...
Pathophysiological conditions, such as myocardial infarction and mechanical overload affect the mamm...
Mechanical cues activate cardiac fibroblasts and induce differentiation into myofibroblasts, which a...
Pathophysiological conditions, such as myocardial infarction and mechanical overload affect the mamm...
Activation of cardiac fibroblasts into myofibroblasts is considered to play an essential role in car...
Abstract Activation of cardiac fibroblasts and differentiation to myofibroblasts underlies developme...
Tissue engineering approaches are currently being investigated for the restoration of myocardial fun...
Cardiac fibrosis is a serious condition currently lacking effective treatments. It occurs as a resul...
Tissue-specific elastic modulus (E), or 'stiffness,' arises from developmental changes in the extrac...
Environmental stiffness is a crucial determinant of cell function. There is a long-standing quest fo...
: Cardiac fibrosis is characterized by a maladaptive remodeling of the myocardium, which is controll...
Cardiomyocyte and stroma cell cross-talk is essential for the formation of collagen-based engineered...
In vitro maturation of cardiomyocytes in 3D is essential for the development of viable cardiac model...