PURPOSE: To evaluate in vitro ability the of three different biomaterials - purified hydroxyapatite, demineralized bone matrix and castor oil-based polyurethane - as biocompatible 3D scaffolds for canine bone marrow mesenchymal stem cell (MSC) intending bone tissue engineering. METHODS: MSCs were isolated from canine bone marrow, characterized and cultivated for seven days with the biomaterials. Cell proliferation and adhesion to the biomaterial surface were evaluated by scanning electron microscopy while differentiation into osteogenic lineage was evaluated by Alizarin Red staining and Sp7/Osterix surface antibody marker. RESULTS: The biomaterials allowed cellular growth, attachment and proliferation. Osteogenic differentiation occurred in...
Support structures for dermal regeneration are composed of biodegradable and bioresorbable polymers,...
Support structures for dermal regeneration are composed of biodegradable and bioresorbable polymers,...
In vitro culturing human Mesenchymal Stem Cells on 3D scaffolds for bone tissue regeneratio
PURPOSE: To evaluate in vitro ability the of three different biomaterials - purified hydroxyapatite,...
We investigated the effects of different implant biomaterials on cultured canine bone marrow stromal...
WOS: 000382569600004PubMed ID: 27182756We investigated the effects of different implant biomaterials...
PubMed ID: 25994048Bone marrow contains mesenchymal stem cells that form many tissues. Various scaff...
Multipotent mesenchymal stem cells (MSCs) and MSC sheets have effective potentials of bone regenerat...
Tissue engineering holds much promise for treatment of large bone defects. The objective of the work...
Objective: To isolate and characterize mesenchymal stem cells (MSCs) from canine muscle and perioste...
Mesenchymal stromal/stem cells (MSC), when used in combination with biomaterial scaffolds, have been...
OBJECTIVE: To isolate and characterize mesenchymal stem cells (MSCs) from canine muscle and periost...
Support structures for dermal regeneration are composed of biodegradable and bioresorbable polymers,...
Support structures for dermal regeneration are composed of biodegradable and bioresorbable polymers,...
Introduction: Engineered bone graft substitutes are a promising alternative and supplement to autolo...
Support structures for dermal regeneration are composed of biodegradable and bioresorbable polymers,...
Support structures for dermal regeneration are composed of biodegradable and bioresorbable polymers,...
In vitro culturing human Mesenchymal Stem Cells on 3D scaffolds for bone tissue regeneratio
PURPOSE: To evaluate in vitro ability the of three different biomaterials - purified hydroxyapatite,...
We investigated the effects of different implant biomaterials on cultured canine bone marrow stromal...
WOS: 000382569600004PubMed ID: 27182756We investigated the effects of different implant biomaterials...
PubMed ID: 25994048Bone marrow contains mesenchymal stem cells that form many tissues. Various scaff...
Multipotent mesenchymal stem cells (MSCs) and MSC sheets have effective potentials of bone regenerat...
Tissue engineering holds much promise for treatment of large bone defects. The objective of the work...
Objective: To isolate and characterize mesenchymal stem cells (MSCs) from canine muscle and perioste...
Mesenchymal stromal/stem cells (MSC), when used in combination with biomaterial scaffolds, have been...
OBJECTIVE: To isolate and characterize mesenchymal stem cells (MSCs) from canine muscle and periost...
Support structures for dermal regeneration are composed of biodegradable and bioresorbable polymers,...
Support structures for dermal regeneration are composed of biodegradable and bioresorbable polymers,...
Introduction: Engineered bone graft substitutes are a promising alternative and supplement to autolo...
Support structures for dermal regeneration are composed of biodegradable and bioresorbable polymers,...
Support structures for dermal regeneration are composed of biodegradable and bioresorbable polymers,...
In vitro culturing human Mesenchymal Stem Cells on 3D scaffolds for bone tissue regeneratio