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Tissue engineering. Part A, ISSN 1937-3341, 05/2019
Cells require a home. 3D printing provides the technology to enable the manufacture of 3D scaffolds with interconnected porosity. 3D printed medical grade... 
Journal Article
Journal of Tissue Engineering and Regenerative Medicine, ISSN 1932-6254, 07/2019
Journal Article
Journal of Oral and Maxillofacial Surgery, Medicine, and Pathology, ISSN 2212-5558, 05/2018, Volume 30, Issue 3, pp. 212 - 219
In this pilot study, we aim to investigate the clinical efficacy of a novel polycaprolactone-tricalcium phosphate (PCL-TCP) membrane for guided bone... 
Polycaprolactone-tricalcium phosphate | Guided bone regeneration | Dental implants | Bioresorbable membrane | Calvarial defects | Usage | Research | Bone regeneration | Implant dentures
Journal Article
Expert Reviews in Molecular Medicine, ISSN 1462-3994, 01/2015, Volume 17
Journal Article
Tissue Engineering Part A, ISSN 1937-3341, 10/2017, Volume 23, Issue 19-20, pp. 111 - 1119
Collagen has been used extensively in tissue engineering applications. However, the source of collagen has been primarily bovine and porcine. In view of the... 
Special Focus Articles | collagen | tilapia | cytokines | electrospun | immune response | BIOCOMPATIBILITY | FIBROBLAST | REGENERATION | CELL & TISSUE ENGINEERING | CELL BIOLOGY | LINKING | PORCINE | BIOTECHNOLOGY & APPLIED MICROBIOLOGY | FISH | DEGRADATION | BONE | SCAFFOLDS | HISTOLOGICAL-EVALUATION | Tensile Strength | Cell Line | Tissue Engineering - methods | Cytokines - metabolism | Implants, Experimental | Cross-Linking Reagents - pharmacology | Osteogenesis - drug effects | Membranes, Artificial | Male | Elastic Modulus | Cell Adhesion - drug effects | Rats, Sprague-Dawley | Animals | Cell Proliferation - drug effects | Collagen - pharmacology | Mice | Cell Death - drug effects | Tilapia - metabolism | Subcutaneous Tissue - drug effects | Cell culture | Disease | Electrospinning | Cytotoxicity | Heat measurement | Proteins | Bone growth | Cross-linking | Biocompatibility | Growth factors | Scanning electron microscopy | Differential scanning calorimetry | Cytokines | Denaturation | Rats | Tilapia | Crosslinking | Gene expression | Electron microscopy | Zoonoses | Immunogenicity | Calorimetry | Skin | In vitro methods and tests | Viability | Aquaculture | Cell proliferation | Surgical implants | Membranes | Transplants & implants | Toxicity | Interleukin | Inflammatory response | Defects | Interleukin 6 | Engineering | Biomedical materials | Fish | Biomedical engineering | Immune system | Immune response | Tissue engineering | Health risks | Histology | Inflammation | Regeneration | Collagen | In vivo methods and tests | Scaffolds | Index Medicus
Journal Article
Journal of Periodontology, ISSN 0022-3492, 04/2015, Volume 86, Issue 4, pp. 569 - 577
Journal Article
BioMed research international, 2017, Volume 2017, pp. 3689716 - 3689716
[This corrects the article DOI: 10.1155/2017/8094152.]. 
Journal Article
Journal Article
Tissue Engineering Part C: Methods, ISSN 1937-3384, 05/2017, Volume 23, Issue 5, pp. 262 - 273
The aim of the current study was to evaluate bone formation and tissue response to porous poly(methyl methacrylate) (PMMA) cement with or without... 
hydroxyapatite | Porous PMMA | bone | POLYMETHYLMETHACRYLATE SPACE MAINTAINERS | DEFECTS | RECONSTRUCTION | PERFORMANCE | GRAFT SUBSTITUTES | CELL & TISSUE ENGINEERING | CELL BIOLOGY | REPLACEMENT | REPAIR | BIOTECHNOLOGY & APPLIED MICROBIOLOGY | porous PMMA | IN-VIVO | MINERALIZATION | MACROPOROSITY | Rabbits | Osteogenesis - physiology | Animals | Biocompatible Materials - chemistry | Mandible - cytology | Durapatite - chemistry | Male | Materials Testing | Models, Animal | Porosity | Polymethyl Methacrylate - chemistry | Bone Cements - chemistry | Biodegradability | Cellulose | Hydroxyapatite | Bone surgery | Degradation | Bone growth | Bone biomaterials | Mineralization | Education | Surgery | Bone marrow | Biocompatibility | Public health | Breeding | Bone healing | Anterior cruciate ligament | Studies | Composite materials | Sodium | Stem cells | Curing | Models | Pores | Polymethyl methacrylate | Knee | Phosphates | Animal models | Transplants & implants | Hydrogels | Calcium | Laboratories | Porous materials | Defects | Biomaterials | Biomedical materials | Bones | Bone morphogenetic proteins | Skeleton | Carboxymethylcellulose | Biodegradation | Reconstruction | Bone morphogenetic protein 2 | Polymerization | Atoms & subatomic particles | Particulates | Inflammation | Ceramics | Calcium phosphates | Fractures | Bone implants | Cement | Tin | Comparative studies | Skull | Bone (long) | Index Medicus
Journal Article
BioMed Research International, ISSN 2314-6133, 2017, Volume 2017, pp. 8094152 - 11
Journal Article