Dental Biomaterials: From Fundamental Principles to Clinical Applications
The continuous evolution of preventive and therapeutic strategies aims to enhance oral health outcomes. Novel approaches are being developed to prevent and treat prevalent oral diseases like dental caries, periodontitis, and oral cancer. Researchers are also exploring the potential of biomaterials i...
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| Formato: | Online |
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| Idioma: | inglês |
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MDPI - Multidisciplinary Digital Publishing Institute
2024
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| Acesso em linha: | ONIX_20240704_9783036577258_2 |
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| description | The continuous evolution of preventive and therapeutic strategies aims to enhance oral health outcomes. Novel approaches are being developed to prevent and treat prevalent oral diseases like dental caries, periodontitis, and oral cancer. Researchers are also exploring the potential of biomaterials in regenerative dentistry, such as promoting bone growth and repairing damaged oral tissues.The ongoing research and development in dental materials and biomaterials holds great promise for improving oral health outcomes. However, it is imperative to maintain a sustained focus on research to fully leverage their potential and effectively address the existing gaps in dental care.In the special issue titled "Dental Biomaterials: From Fundamental Principles to Clinical Applications," significant findings have emerged from a variety of sources, including in vitro experiments and clinical trials. These insights have deepened our understanding of oral disease biology, resulting in the development of innovative treatment approaches like targeted drug delivery systems and gene therapy. Clinical trials have also provided evidence on the effectiveness and safety of these new treatment options.Overall, these advancements in technology and treatment offer hope for enhanced management of oral diseases. Nevertheless, it is crucial to emphasize the importance of continuous research and development in order to fully unlock the potential of these innovations and achieve significant progress in improving oral health outcomes. |
| format | Online |
| id | doab-20.500.12854ir-139206 |
| institution | Directory of Open Access Books |
| language | eng |
| publishDate | 2024 |
| publishDateRange | 2024 |
| publishDateSort | 2024 |
| publisher | MDPI - Multidisciplinary Digital Publishing Institute |
| publisherStr | MDPI - Multidisciplinary Digital Publishing Institute |
| record_format | ojs |
| spelling | doab-20.500.12854ir-1392062024-07-04T09:27:31Z Dental Biomaterials: From Fundamental Principles to Clinical Applications Melo, Mary Anne saliva oral regeneration interaction biomaterials bone regeneration plasma gases zirconium oxide surface properties nitrogen wettability zirconium alloy bioactive coating sulfonated PEEK electrophoretic deposition adhesion strength corrosion resistance bone mesenchymal stem cells bone morphogenetic protein-9 tissue engineering dental biomaterial plasma-activated water plasma-treated water atmospheric plasma gliding arc discharge DBD dentistry decontamination oral cancer tooth bleaching therapeutic window silver strontium peri-implantitis osseointegration antibacterial cytocompatible eggshell membrane electrospinning guided tissue regeneration/guided bone regeneration nanofibers polycaprolactone Taguchi orthogonal arrays Sapindus mukorossi ligature-induced periodontitis rat model micro CT microbiota fibroblast composite PMMA reactive oxygen spices (ROS) glutathione resin composite bulk fill pre-heating monomer elution porosity dentures DSC FTIR glass fibers mechanical properties polymer composite polymethylmethacrylate (PMMA) treatments acid base silane antifungal surface Aspergillus brasiliensis nanopillar surface biomimetic surface quaternary ammonium methacrylate urethane-dimethacrylate analogue dimethacrylate-based dental material photocured copolymer physicochemical property implant abutment biofilm in vivo study zirconia PEEK titanium biofilm management photofunctionalization dental and orthopedic implants hydrocarbon biological aging of titanium zirconia nanoparticles luting cements bond strength film thickness flexural strength thermocycling water sorption dual-curing dental implants hydroxyapatite maxilla osteopontin tooth extraction TiO2 nanotube heat treatment non-thermal plasma treatment biofilms dental composites hydrolytic stability aging clinical performance urethane-dimethacrylate derivatives anti-hydrolysis agent CHINOX SA-1 artifact near-infrared ray gold nanoparticle osteoblast alveolar bone regeneration anorganic bovine bone biphasic calcium phosphate histology immunohistochemistry alloplastic bone graft alveolar bone bone defects bone label bone substitute meso-tetra(hydroxyphenyl)chlorin ovine bone model periodontitis photodynamic therapy polyfluorochromes additive manufacturing (AM) material selection analytic hierarchy process (AHP) VIKOR multicriteria decision-making (MCDM) material index ranking guided bone regeneration alveolar ridge preservation autologous dentin bovine xenograft CBCT BMP-4 TNF-? dental composite material compression non-linear behaviors multifractality thema EDItEUR::M Medicine and Nursing thema EDItEUR::M Medicine and Nursing::MK Medical specialties, branches of medicine::MKE Dentistry The continuous evolution of preventive and therapeutic strategies aims to enhance oral health outcomes. Novel approaches are being developed to prevent and treat prevalent oral diseases like dental caries, periodontitis, and oral cancer. Researchers are also exploring the potential of biomaterials in regenerative dentistry, such as promoting bone growth and repairing damaged oral tissues.The ongoing research and development in dental materials and biomaterials holds great promise for improving oral health outcomes. However, it is imperative to maintain a sustained focus on research to fully leverage their potential and effectively address the existing gaps in dental care.In the special issue titled "Dental Biomaterials: From Fundamental Principles to Clinical Applications," significant findings have emerged from a variety of sources, including in vitro experiments and clinical trials. These insights have deepened our understanding of oral disease biology, resulting in the development of innovative treatment approaches like targeted drug delivery systems and gene therapy. Clinical trials have also provided evidence on the effectiveness and safety of these new treatment options.Overall, these advancements in technology and treatment offer hope for enhanced management of oral diseases. Nevertheless, it is crucial to emphasize the importance of continuous research and development in order to fully unlock the potential of these innovations and achieve significant progress in improving oral health outcomes. 2024-07-04T09:27:27Z 2024-07-04T09:27:27Z 2024 book ONIX_20240704_9783036577258_2 9783036577258 9783036577241 https://directory.doabooks.org/handle/20.500.12854/139206 eng application/octet-stream Attribution-NonCommercial-NoDerivatives 4.0 International https://mdpi.com/books/pdfview/book/9201 https://mdpi.com/books/pdfview/book/9201 MDPI - Multidisciplinary Digital Publishing Institute 10.3390/books978-3-0365-7724-1 10.3390/books978-3-0365-7724-1 46cabcaa-dd94-4bfe-87b4-55023c1b36d0 9783036577258 9783036577241 432 open access |
| spellingShingle | saliva oral regeneration interaction biomaterials bone regeneration plasma gases zirconium oxide surface properties nitrogen wettability zirconium alloy bioactive coating sulfonated PEEK electrophoretic deposition adhesion strength corrosion resistance bone mesenchymal stem cells bone morphogenetic protein-9 tissue engineering dental biomaterial plasma-activated water plasma-treated water atmospheric plasma gliding arc discharge DBD dentistry decontamination oral cancer tooth bleaching therapeutic window silver strontium peri-implantitis osseointegration antibacterial cytocompatible eggshell membrane electrospinning guided tissue regeneration/guided bone regeneration nanofibers polycaprolactone Taguchi orthogonal arrays Sapindus mukorossi ligature-induced periodontitis rat model micro CT microbiota fibroblast composite PMMA reactive oxygen spices (ROS) glutathione resin composite bulk fill pre-heating monomer elution porosity dentures DSC FTIR glass fibers mechanical properties polymer composite polymethylmethacrylate (PMMA) treatments acid base silane antifungal surface Aspergillus brasiliensis nanopillar surface biomimetic surface quaternary ammonium methacrylate urethane-dimethacrylate analogue dimethacrylate-based dental material photocured copolymer physicochemical property implant abutment biofilm in vivo study zirconia PEEK titanium biofilm management photofunctionalization dental and orthopedic implants hydrocarbon biological aging of titanium zirconia nanoparticles luting cements bond strength film thickness flexural strength thermocycling water sorption dual-curing dental implants hydroxyapatite maxilla osteopontin tooth extraction TiO2 nanotube heat treatment non-thermal plasma treatment biofilms dental composites hydrolytic stability aging clinical performance urethane-dimethacrylate derivatives anti-hydrolysis agent CHINOX SA-1 artifact near-infrared ray gold nanoparticle osteoblast alveolar bone regeneration anorganic bovine bone biphasic calcium phosphate histology immunohistochemistry alloplastic bone graft alveolar bone bone defects bone label bone substitute meso-tetra(hydroxyphenyl)chlorin ovine bone model periodontitis photodynamic therapy polyfluorochromes additive manufacturing (AM) material selection analytic hierarchy process (AHP) VIKOR multicriteria decision-making (MCDM) material index ranking guided bone regeneration alveolar ridge preservation autologous dentin bovine xenograft CBCT BMP-4 TNF-? dental composite material compression non-linear behaviors multifractality thema EDItEUR::M Medicine and Nursing thema EDItEUR::M Medicine and Nursing::MK Medical specialties, branches of medicine::MKE Dentistry Dental Biomaterials: From Fundamental Principles to Clinical Applications |
| title | Dental Biomaterials: From Fundamental Principles to Clinical Applications |
| title_full | Dental Biomaterials: From Fundamental Principles to Clinical Applications |
| title_fullStr | Dental Biomaterials: From Fundamental Principles to Clinical Applications |
| title_full_unstemmed | Dental Biomaterials: From Fundamental Principles to Clinical Applications |
| title_short | Dental Biomaterials: From Fundamental Principles to Clinical Applications |
| title_sort | dental biomaterials from fundamental principles to clinical applications |
| topic | saliva oral regeneration interaction biomaterials bone regeneration plasma gases zirconium oxide surface properties nitrogen wettability zirconium alloy bioactive coating sulfonated PEEK electrophoretic deposition adhesion strength corrosion resistance bone mesenchymal stem cells bone morphogenetic protein-9 tissue engineering dental biomaterial plasma-activated water plasma-treated water atmospheric plasma gliding arc discharge DBD dentistry decontamination oral cancer tooth bleaching therapeutic window silver strontium peri-implantitis osseointegration antibacterial cytocompatible eggshell membrane electrospinning guided tissue regeneration/guided bone regeneration nanofibers polycaprolactone Taguchi orthogonal arrays Sapindus mukorossi ligature-induced periodontitis rat model micro CT microbiota fibroblast composite PMMA reactive oxygen spices (ROS) glutathione resin composite bulk fill pre-heating monomer elution porosity dentures DSC FTIR glass fibers mechanical properties polymer composite polymethylmethacrylate (PMMA) treatments acid base silane antifungal surface Aspergillus brasiliensis nanopillar surface biomimetic surface quaternary ammonium methacrylate urethane-dimethacrylate analogue dimethacrylate-based dental material photocured copolymer physicochemical property implant abutment biofilm in vivo study zirconia PEEK titanium biofilm management photofunctionalization dental and orthopedic implants hydrocarbon biological aging of titanium zirconia nanoparticles luting cements bond strength film thickness flexural strength thermocycling water sorption dual-curing dental implants hydroxyapatite maxilla osteopontin tooth extraction TiO2 nanotube heat treatment non-thermal plasma treatment biofilms dental composites hydrolytic stability aging clinical performance urethane-dimethacrylate derivatives anti-hydrolysis agent CHINOX SA-1 artifact near-infrared ray gold nanoparticle osteoblast alveolar bone regeneration anorganic bovine bone biphasic calcium phosphate histology immunohistochemistry alloplastic bone graft alveolar bone bone defects bone label bone substitute meso-tetra(hydroxyphenyl)chlorin ovine bone model periodontitis photodynamic therapy polyfluorochromes additive manufacturing (AM) material selection analytic hierarchy process (AHP) VIKOR multicriteria decision-making (MCDM) material index ranking guided bone regeneration alveolar ridge preservation autologous dentin bovine xenograft CBCT BMP-4 TNF-? dental composite material compression non-linear behaviors multifractality thema EDItEUR::M Medicine and Nursing thema EDItEUR::M Medicine and Nursing::MK Medical specialties, branches of medicine::MKE Dentistry |
| topic_facet | saliva oral regeneration interaction biomaterials bone regeneration plasma gases zirconium oxide surface properties nitrogen wettability zirconium alloy bioactive coating sulfonated PEEK electrophoretic deposition adhesion strength corrosion resistance bone mesenchymal stem cells bone morphogenetic protein-9 tissue engineering dental biomaterial plasma-activated water plasma-treated water atmospheric plasma gliding arc discharge DBD dentistry decontamination oral cancer tooth bleaching therapeutic window silver strontium peri-implantitis osseointegration antibacterial cytocompatible eggshell membrane electrospinning guided tissue regeneration/guided bone regeneration nanofibers polycaprolactone Taguchi orthogonal arrays Sapindus mukorossi ligature-induced periodontitis rat model micro CT microbiota fibroblast composite PMMA reactive oxygen spices (ROS) glutathione resin composite bulk fill pre-heating monomer elution porosity dentures DSC FTIR glass fibers mechanical properties polymer composite polymethylmethacrylate (PMMA) treatments acid base silane antifungal surface Aspergillus brasiliensis nanopillar surface biomimetic surface quaternary ammonium methacrylate urethane-dimethacrylate analogue dimethacrylate-based dental material photocured copolymer physicochemical property implant abutment biofilm in vivo study zirconia PEEK titanium biofilm management photofunctionalization dental and orthopedic implants hydrocarbon biological aging of titanium zirconia nanoparticles luting cements bond strength film thickness flexural strength thermocycling water sorption dual-curing dental implants hydroxyapatite maxilla osteopontin tooth extraction TiO2 nanotube heat treatment non-thermal plasma treatment biofilms dental composites hydrolytic stability aging clinical performance urethane-dimethacrylate derivatives anti-hydrolysis agent CHINOX SA-1 artifact near-infrared ray gold nanoparticle osteoblast alveolar bone regeneration anorganic bovine bone biphasic calcium phosphate histology immunohistochemistry alloplastic bone graft alveolar bone bone defects bone label bone substitute meso-tetra(hydroxyphenyl)chlorin ovine bone model periodontitis photodynamic therapy polyfluorochromes additive manufacturing (AM) material selection analytic hierarchy process (AHP) VIKOR multicriteria decision-making (MCDM) material index ranking guided bone regeneration alveolar ridge preservation autologous dentin bovine xenograft CBCT BMP-4 TNF-? dental composite material compression non-linear behaviors multifractality thema EDItEUR::M Medicine and Nursing thema EDItEUR::M Medicine and Nursing::MK Medical specialties, branches of medicine::MKE Dentistry |
| url | ONIX_20240704_9783036577258_2 |