Sol-gel bioactive glass containing biomaterials for restorative dentistry: A review

被引:51
作者
Simila, Hazel O. [1 ]
Boccaccini, Aldo R. [1 ]
机构
[1] Univ Erlangen Nurnberg, Inst Biomat, Cauerstr 6, D-91058 Erlangen, Germany
关键词
Bioactivity; Sol-gel synthesis; Restorative dentistry; Dental material; Antibacterial; Cytotoxicity; pH; Ion release; Properties; DENTAL-PULP CELLS; IN-VITRO; POTENTIAL APPLICATION; PHYSICAL-PROPERTIES; BIOFILM FORMATION; RESIN COMPOSITES; FLUORIDE RELEASE; REFRACTIVE-INDEX; SILICATE CEMENT; IONOMER CEMENT;
D O I
10.1016/j.dental.2022.02.011
中图分类号
R78 [口腔科学];
学科分类号
1003 ;
摘要
Objective: Bioactive glasses (BAGs) have been researched extensively for dentistry due to their favourable biocompatibility and hard tissue bonding ability. However, the specific application of BAGs produced through sol-gel synthesis in restorative dentistry has not been reviewed previously. This review provides a comprehensive account of the principles behind sol-gel derived BAGs and their investigation for dental tissue restoration materials. Methods: A search for in vitro and in vivo studies was performed using the databases Web of Science (R), Medline (R), Scopus (R) and Google Scholar (R). Articles published over the past 20 years were selected and data on the BAG composition and morphology was extracted. Analysis of the effect of specific BAG additives on the properties of experimental dental materials was also performed. Results: A majority of BAG particles investigated were spheres ranging in size from 5 nm to ~650 mu m. Sol-gel BAGs are mainly applied in the treatment of hypersensitive dentine and for pulp-dentine tissue engineering, while a handful have been used in target drug delivery. BAG fillers are promising additives that result in improved biological properties, antibacterial effects, hardness, acid buffering and remineralization. Unfortunately, some detrimental effects on optical properties have been observed with BAG addition. Additionally, in vivo data, investigations into radiopacity and standardization of test protocols are identified as areas for improvement and further studies. Significance: Future work should consider the pertinent issues raised in order to improve the quality of available data and expand knowledge in this area of dental biomaterials research and development. (c) 2022 The Academy of Dental Materials. Published by Elsevier Inc. All rights reserved.
引用
收藏
页码:725 / 747
页数:23
相关论文
共 167 条
[1]   A novel, doped calcium silicate bioceramic synthesized by sol-gel method: Investigation of setting time and biological properties [J].
Abdalla, Mohamed Mahmoud ;
Lung, Christie Ying Kei ;
Neelakantan, Prasanna ;
Matinlinna, Jukka Pekka .
JOURNAL OF BIOMEDICAL MATERIALS RESEARCH PART B-APPLIED BIOMATERIALS, 2020, 108 (01) :56-66
[2]   Bioactive functional materials: a perspective on phosphate-based glasses [J].
Abou Neel, Ensanya A. ;
Pickup, David M. ;
Valappil, Sabeel P. ;
Newport, Robert J. ;
Knowles, Jonathan C. .
JOURNAL OF MATERIALS CHEMISTRY, 2009, 19 (06) :690-701
[3]   Synthesis of Al2O3-0.5B2O3-SiO2 fillers by sol-gel method for dental resin composites [J].
Aguiar, Aline Evangelista ;
da Silva, Lidiane Gomes ;
de Paula Barbosa, Henrique Frulani ;
Gloria, Raphael Felca ;
Espanhol-Soares, Melina ;
Gimenes, Rossano .
JOURNAL OF NON-CRYSTALLINE SOLIDS, 2017, 458 :86-96
[4]   The Effect of Mesoporous Bioactive Glass Nanoparticles/Graphene Oxide Composites on the Differentiation and Mineralization of Human Dental Pulp Stem Cells [J].
Ahn, Jae Hwa ;
Kim, In-Ryoung ;
Kim, Yeon ;
Kim, Dong-Hyun ;
Park, Soo-Byung ;
Park, Bong-Soo ;
Bae, Moon-Kyoung ;
Kim, Yong-I .
NANOMATERIALS, 2020, 10 (04)
[5]   Effect of size of bioactive glass nanoparticles on mesenchymal stem cell proliferation for dental and orthopedic applications [J].
Ajita, J. ;
Saravanan, S. ;
Selvamurugan, N. .
MATERIALS SCIENCE AND ENGINEERING C-MATERIALS FOR BIOLOGICAL APPLICATIONS, 2015, 53 :142-149
[6]   Polymerization kinetics and impact of post polymerization on the Degree of Conversion of bulk-fill resin-composite at clinically relevant depth [J].
Al-Ahdal, Khold ;
Ilie, Nicoleta ;
Silikas, Nick ;
Watts, David C. .
DENTAL MATERIALS, 2015, 31 (10) :1207-1213
[7]   In-vitro bioactivity evaluation and physical properties of an epoxy-based dental sealer reinforced with synthesized fluorine-substituted hydroxyapatite, hydroxyapatite and bioactive glass nanofillers [J].
Al-Bakhsh, Bahaa Abdulrazzaq Jerri ;
Shafiei, Farhad ;
Hashemian, Atieh ;
Shekofteh, Kiana ;
Bolhari, Behnam ;
Behroozibakhsh, Marjan .
BIOACTIVE MATERIALS, 2019, 4 :322-333
[8]   Remineralising fluorine containing bioactive glass composites [J].
Al-Eesa, N. A. ;
Fernandes, S. Diniz ;
Hill, R. G. ;
Wong, F. S. L. ;
Jargalsaikhan, U. ;
Shahid, S. .
DENTAL MATERIALS, 2021, 37 (04) :672-681
[9]   Tetracycline and/or hydrocortisone incorporation and release by bioactive glasses compounds [J].
Andrade, A. L. ;
Souza, D. M. ;
Vasconcellos, W. A. ;
Ferreira, R. V. ;
Domingues, R. Z. .
JOURNAL OF NON-CRYSTALLINE SOLIDS, 2009, 355 (13) :811-816
[10]   A Chemical Approach to Optimizing Bioactive Glass Dental Composites [J].
Aponso, S. ;
Ummadi, J. G. ;
Davis, H. ;
Ferracane, J. ;
Koley, D. .
JOURNAL OF DENTAL RESEARCH, 2019, 98 (02) :194-199