Electrical Coupling

Culture on electrospun polyurethane scaffolds decreases atrial natriuretic peptide expression by cardiomyocytes in vitro

Biomaterials / Tissue Engineering / Flow Cytometry / Multidisciplinary / Cell separation / Tissue culture / Animals / Polymerase Chain Reaction / Phenotype / Steady state / Rats / Molecular Marker / Polyurethanes / Cell Shape / High Density Concrete / Cell Survival / Gene Expression Regulation / Electrical Coupling / Atrial Natriuretic Factor / Tissue culture / Animals / Polymerase Chain Reaction / Phenotype / Steady state / Rats / Molecular Marker / Polyurethanes / Cell Shape / High Density Concrete / Cell Survival / Gene Expression Regulation / Electrical Coupling / Atrial Natriuretic Factor

Culture on electrospun polyurethane scaffolds decreases atrial natriuretic peptide expression by cardiomyocytes in vitro

Biomaterials / Tissue Engineering / Flow Cytometry / Multidisciplinary / Cell separation / Tissue culture / Animals / Polymerase Chain Reaction / Phenotype / Steady state / Rats / Molecular Marker / Polyurethanes / Cell Shape / High Density Concrete / Cell Survival / Gene Expression Regulation / Electrical Coupling / Atrial Natriuretic Factor / Tissue culture / Animals / Polymerase Chain Reaction / Phenotype / Steady state / Rats / Molecular Marker / Polyurethanes / Cell Shape / High Density Concrete / Cell Survival / Gene Expression Regulation / Electrical Coupling / Atrial Natriuretic Factor
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