Glycosaminoglycan

Vascular cell responses to polysaccharide materials

Biomaterials / Tissue Engineering / Chitosan / Cell Adhesion / Polysaccharides / Multidisciplinary / Cell Division / Humans / Smooth muscle / Capillaries / Animals / Male / Vascular endothelium / Glycosaminoglycan / Glycosaminoglycans / Rats / Endothelial cell / Granuloma / Cell Proliferation / Biological activity / Vascular Endothelial Function / Biocompatible Materials / Chitin / Cell Size / Multidisciplinary / Cell Division / Humans / Smooth muscle / Capillaries / Animals / Male / Vascular endothelium / Glycosaminoglycan / Glycosaminoglycans / Rats / Endothelial cell / Granuloma / Cell Proliferation / Biological activity / Vascular Endothelial Function / Biocompatible Materials / Chitin / Cell Size

Porous acellular bovine pericardia seeded with mesenchymal stem cells as a patch to repair a myocardial defect in a syngeneic rat model

Biomaterials / Tissue Engineering / Regeneration / Multidisciplinary / Porosity / Animals / Mesenchymal Stem Cell / Glycosaminoglycan / Cattle / Rats / Rat Model / Cardiomyopathies / Right Ventricle / Pericardium / Materials Testing / Cell free System / Biocompatible Materials / Mesenchymal Stromal Cells / Animals / Mesenchymal Stem Cell / Glycosaminoglycan / Cattle / Rats / Rat Model / Cardiomyopathies / Right Ventricle / Pericardium / Materials Testing / Cell free System / Biocompatible Materials / Mesenchymal Stromal Cells

Natural/synthetic porous scaffold designs and properties for fibro-cartilaginous tissue engineering

Biomedical Engineering / Tissue Engineering / Pore Size / Glycosaminoglycan / Hyaluronic Acid / Three Dimensional / Cartilage Tissue Engineering / Three Dimensional / Cartilage Tissue Engineering

Natural/synthetic porous scaffold designs and properties for fibro-cartilaginous tissue engineering

Biomedical Engineering / Tissue Engineering / Pore Size / Glycosaminoglycan / Hyaluronic Acid / Three Dimensional / Cartilage Tissue Engineering / Three Dimensional / Cartilage Tissue Engineering

Heparan Sulfate 6-O-Sulfotransferase Is Essential for Muscle Development in Zebrafish

Skeletal muscle biology / Biological Chemistry / Biological Sciences / Cell Differentiation / Animals / Biological / Oscillations / Glycosaminoglycan / Phenotype / Enzyme / CHEMICAL SCIENCES / Zebrafish / Amino Acid Sequence / Embryos / Fusion Protein / Molecular Sequence Data / Biological / Oscillations / Glycosaminoglycan / Phenotype / Enzyme / CHEMICAL SCIENCES / Zebrafish / Amino Acid Sequence / Embryos / Fusion Protein / Molecular Sequence Data

A synthetic glycosaminoglycan mimetic (RGTA) modifies natural glycosaminoglycan species during myogenesis

Skeletal muscle biology / Immunohistochemistry / Extracellular Matrix / Biological Sciences / Cell line / Metabolic regulation / Cell Differentiation / Cell / Polymerase Chain Reaction / Species Composition / Glycosaminoglycan / Enzyme / High Pressure Liquid Chromatography / Glycosaminoglycans / Muscle development / Cell Proliferation / Growth Factor / Cell Surface Markers / Enzyme Linked Immunosorbent Assay / Molecular Structure / Cell Growth / Myoblasts / Metabolic regulation / Cell Differentiation / Cell / Polymerase Chain Reaction / Species Composition / Glycosaminoglycan / Enzyme / High Pressure Liquid Chromatography / Glycosaminoglycans / Muscle development / Cell Proliferation / Growth Factor / Cell Surface Markers / Enzyme Linked Immunosorbent Assay / Molecular Structure / Cell Growth / Myoblasts
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