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Biomaterials, ISSN 0142-9612, 2012, Volume 34, Issue 2, pp. 422 - 433
Journal Article
Biomaterials, ISSN 0142-9612, 2011, Volume 33, Issue 7, pp. 2076 - 2085
Abstract Low oxygen pressure (hypoxia) plays an important role in stimulating angiogenesis; there are, however, few studies to prepare hypoxia-mimicking tissue... 
Advanced Basic Science | Dentistry | Hypoxia | Bone tissue engineering | HIF-1α expression | Mesoporous bioactive glass | VEGF secretion | HIF-1 alpha expression | MATERIALS SCIENCE, BIOMATERIALS | ANGIOGENESIS | MBGS | ENGINEERING, BIOMEDICAL | DRUG-RELEASE | MESENCHYMAL STEM-CELLS | IN-VITRO BIOACTIVITY | CARTILAGE | DELIVERY | OSTEOBLASTS | DIFFERENTIATION | Biocompatible Materials - chemistry | Humans | Middle Aged | Bacteria - drug effects | Bone Marrow Cells - physiology | Ions - pharmacology | Glass - chemistry | Bone and Bones - drug effects | Drug Delivery Systems | Hypoxia - metabolism | Tissue Scaffolds - chemistry | Vascular Endothelial Growth Factor A - secretion | Mesenchymal Stromal Cells - cytology | Cobalt - pharmacology | Hypoxia-Inducible Factor 1, alpha Subunit - metabolism | Bone Marrow Cells - drug effects | Ampicillin - pharmacology | Ampicillin - metabolism | Mesenchymal Stromal Cells - physiology | Mesenchymal Stromal Cells - drug effects | Ions - chemistry | Bone and Bones - physiology | Tissue Engineering - methods | Bone Marrow Cells - cytology | Cells, Cultured | Anti-Bacterial Agents - metabolism | Materials Testing | Biocompatible Materials - pharmacology | Cell Differentiation - drug effects | Anti-Bacterial Agents - pharmacology | Porosity | Cobalt - chemistry | Biological products | Gene expression | Tissue engineering | Cobalt | Vascular endothelial growth factor | Biomedical materials | Specific surface | Bones | Nanostructure | Secretions | Scaffolds | Index Medicus
Journal Article
Journal Article
Journal of the European Ceramic Society, ISSN 0955-2219, 01/2014, Volume 34, Issue 1, pp. 107 - 118
Three dimensional scaffolds with controlled pore architecture were prepared from 45S5 Bioglass powders by robocasting (direct-writing) using carboxymethyl... 
Robocasting | Scaffold | 45S5 bioactive glass | Sintering | Strength | Direct-writing | CRYSTALLIZATION | CALCIUM-PHOSPHATE SCAFFOLDS | BEHAVIOR | MECHANICAL-PROPERTIES | MATERIALS SCIENCE, CERAMICS | INITIO MOLECULAR-DYNAMICS | FABRICATION | BIOGLASS(R) | CERAMICS | SURFACES | Architecture | Tissue engineering | Cellulose | Customizing | Crystallization | Bioglass | Glass | Bones | Porosity | Scaffolds
Journal Article
Journal of the European Ceramic Society, ISSN 0955-2219, 04/2019, Volume 39, Issue 4, pp. 1625 - 1634
This article reports the first robocasting of a sol–gel based glass ceramic scaffold. Sol–gel bioactive glass powders usually exhibit high volume fractions of... 
Bioactive glass | Cytotoxicity | Suspension rheology | Sol–gel | Robocasting 3D scaffolds | CRYSTALLIZATION | BIODEGRADATION | CALCIUM PHOSPHATES | Sol-gel | BEHAVIOR | 45S5 | MECHANICAL-PROPERTIES | MATERIALS SCIENCE, CERAMICS | Powders | Porosity | Tissue engineering | Sintering
Journal Article
Acta Biomaterialia, ISSN 1742-7061, 2011, Volume 7, Issue 10, pp. 3563 - 3572
Journal Article
Journal Article