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1.
J Mater Chem B ; 11(13): 2972-2988, 2023 03 30.
Article in English | MEDLINE | ID: mdl-36919628

ABSTRACT

Bacterial infection and poor osseointegration are two critical issues that need to be solved for long-term use of titanium implants. As such, Sr/Ag-containing TiO2 microporous coatings were prepared on a Ti alloy surface in the current study via a single-step microarc oxidation technique. The coatings showed both good cytocompatibility in vitro and biosafety in vivo. Sr/Ag incorporation brought no significant change in the surface micromorphology and physicochemical properties, but endowed the coating with strong osteogenic activity and long-term antibacterial capability in vitro. Furthermore, the osteogenic and antibacterial capability of the coating was also confirmed in vivo. In a rat osseointegration model, new bone formation, implant-bone contact, removal torque and bone mineralization were all significantly increased in the M-Sr/Ag group when compared with those in group M, although they were slightly lower than those in group M-Sr. In a periimplantitis model, no rats suffered infection in the M-Sr/Ag group after 3 months of osseointegration and 5 weeks of bacterial inoculation period, when compared to 100% and 75% infection rates in M and M-Sr groups, respectively. In addition, active bone remodeling and many mesenchymal cells were observed in the M-Sr group, suggesting good bone regeneration potential in Sr-containing coatings in the case of controlled periimplantitis. Overall, the Sr/Ag-containing TiO2 microporous coating is valuable for preventing periimplantitis and improving implant reosseointegration, and is therefore promising for long-term and high quality use of titanium implants.


Subject(s)
Peri-Implantitis , Titanium , Humans , Titanium/pharmacology , Titanium/chemistry , Osteogenesis , Coated Materials, Biocompatible/pharmacology , Coated Materials, Biocompatible/chemistry , Anti-Bacterial Agents/pharmacology , Anti-Bacterial Agents/chemistry
2.
J Biomed Mater Res B Appl Biomater ; 111(4): 846-857, 2023 04.
Article in English | MEDLINE | ID: mdl-36455234

ABSTRACT

Strontium (Sr) is the most common element introduced into TiO2 coatings to strengthen the osteogenic property of titanium implants. However, the optimal Sr content and its effect on osteogenic and physicochemical properties of the coatings need to be clarified. In the current study, TiO2 microporous coatings with different contents of Sr (9.64-21.25 wt %) and silver (Ag) (0.38-0.75 wt %) were prepared via micro-arc oxidation technique. Sr contents did not change physicochemical properties of the coatings, including surface microstructure, micropore size and distribution, phase composition, roughness and hydrophilicity. Meanwhile, higher Sr contents (18.23-21.25 wt %) improved cytocompatibility, proliferation and alkaline phosphatase (ALP) activity of preosteoblasts, even the coatings underwent 30 days' PBS immersion. Furthermore, higher Sr contents facilitated preosteoblast growth and spreading, which are essential for their proliferation and osteogenic differentiation. Therefore, it is promising to incorporate higher Sr content (18.23-21.25 wt %) within TiO2 microporous coatings to improve their osteogenic capability.


Subject(s)
Coated Materials, Biocompatible , Osteogenesis , Coated Materials, Biocompatible/pharmacology , Coated Materials, Biocompatible/chemistry , Strontium/pharmacology , Strontium/chemistry , Titanium/pharmacology , Titanium/chemistry , Surface Properties
3.
Int J Nanomedicine ; 17: 4339-4353, 2022.
Article in English | MEDLINE | ID: mdl-36160471

ABSTRACT

Purpose: Biopiezoelectric materials have good biocompatibility and excellent piezoelectric properties, and they can generate local currents in vivo to restore the physiological electrical microenvironment of the defect and promote bone regeneration. Previous studies of guided bone regeneration membranes have rarely addressed the point of restoring it, so this study prepared a Barium titanate/Polylactic acid (BT/PLA) piezoelectric composite membrane and investigated its bone-formation, with a view to providing an experimental basis for clinical studies of guided bone tissue regeneration membranes. Methods: BT/PLA composite membranes with different BT ratio were prepared by solution casting method, and piezoelectric properties were performed after corona polarization treatment. The optimal BT ratio was selected and then subjected to in vitro cytological experiments and in vivo osteogenic studies in rats. The effects on adhesion, proliferation and osteogenic differentiation of the pre-osteoblastic cell line (MC3T3-E1) were investigated. The effect of composite membranes on bone repair of cranial defects in rats was investigated after 4 and 12 weeks. Results: The highest piezoelectric coefficient d33 were obtained when the BT content was 20%, reaching (7.03 ± 0.26) pC/N. The value could still be maintained at (4.47±0.17) pC/N after 12 weeks, meeting the piezoelectric constant range of bone. In vitro, the MC3T3-E1 cells showed better adhesion and proliferative activity in the group of polarized 20%BT. The highest alkaline phosphatase (ALP) content was observed in cells of this group. In vivo, it promoted rapid bone regeneration. At 4 weeks postoperatively, new bone formation was evident at the edges of the defect, with extensive marrow cavity formation; after 12 weeks, the defect was essentially completely closed, with density approximating normal bone tissue and significant mineralization. Conclusion: The BT/PLA piezoelectric composite membrane has good osteogenic properties and provides a new idea for guiding the research of membrane materials for bone tissue regeneration.


Subject(s)
Barium Compounds , Osteogenesis , Alkaline Phosphatase , Animals , Barium/pharmacology , Barium Compounds/pharmacology , Biocompatible Materials/pharmacology , Bone Regeneration , Bone and Bones , Cell Differentiation , Polyesters/pharmacology , Rats , Tissue Scaffolds , Titanium/pharmacology
4.
Zhonghua Kou Qiang Yi Xue Za Zhi ; 51(5): 292-5, 2016 May.
Article in Chinese | MEDLINE | ID: mdl-27220389

ABSTRACT

OBJECTIVE: To evaluate the influence of different polishing methods on marginal microleakage of zirconium dioxide full crown. METHODS: Thirty extracted premolars were selected and randomly divided into three groups, A, B and C, with 10 in each group. Group A was prepared with MANI TF-13 bur completely without the treatment of shoulder. The shoulder of group B was polished with MANI TR13-EF bur after the preparation using MANI TF-13. The shoulder of group C was polished with the dental pneumatic ultrasonic hand-piece of KaVo SONICflex after the preparation using MANI TF-13 bur. Five specimens after preparation were selected in each group. Fifteen CAD/CAM zirconium dioxide full crowns have been made. The crowns were bonded using PULPDENT resin cement, and the root canals were sealed using nail polish, and apical foramen were closed using flow resin. The test-pieces have been immersed in a 3% solution of methylene blue for 24 h. The condition of shoulder marginal microleakage was observed using light stereomicroscopy and evaluated in classification index. The remaining specimens in each group were used for roughness test and scanning electron microscope(SEM) experiment. The marginal microleakage situations of specimens in three groups was analyzed by SPSS 17.0. The enamel surface of different polishing methods was observed using SEM. RESULTS: The specimens in group C demonstrated the least marginal microleakage, and those in group B showed an intermediate level of marginal microleakage, and those in group A characterized the most serious marginal microleakage (total, χ2=44.610, P<0.01; among the different groups, P<0.05). The roughness experiment showed that specimens in group C achieve the smoothest results ([0.27±0.03] µm). Preparation shoulder polished using the dental pneumatic ultrasonic hand-piece demonstrated the best result under the SEM among the three groups. CONCLUSIONS: The anti-microleakage effectiveness of dental pneumatic ultrasonic hand-piece in shoulder refinement is better than ordinary shoulder treatment.


Subject(s)
Computer-Aided Design , Crowns , Dental Leakage/prevention & control , Dental Polishing/methods , Dental Prosthesis Design/methods , Zirconium , Bicuspid , Dental Enamel , Dental Instruments , Dental Leakage/diagnosis , Humans , Pit and Fissure Sealants , Random Allocation , Resin Cements , Ultrasonics
5.
Nan Fang Yi Ke Da Xue Xue Bao ; 32(12): 1695-8, 2012 Dec.
Article in Chinese | MEDLINE | ID: mdl-23268391

ABSTRACT

OBJECTIVE: To investigate the effect of alendronate on the expressions of osteoprotegerin (OPG) and receptor activator of nuclear factor-κB ligand (RANKL) in mouse osteoblasts. METHODS: Mouse calvarial osteoblasts cultured in vitro were identified by alkaline phosphatase (ALP) staining and immunofluorescence assay of OPG and RANKL expressions. The second passage of the osteoblasts were treated with different concentrations of alendronate (10(-4) to 10(-7) mol/L) for 48 h, and the changes in OPG and RANKL mRNA and protein expressions were examined using real-time PCR and Western blotting, respectively. RESULTS: The isolated osteoblasts were positive for ALP and expressed OPG and RANKL. Real-time PCR and Western blotting showed that at the concentration of 1×10(-4) mol/L, alendronate caused an obvious down-regulation of OPG and RANKL expressions in the cells, whereas at lower concentrations, alendronate increased the expressions of both genes with the highest expressions occurring after treatment with 1×10(-5) mol/L. CONCLUSION: High concentrations of alendronate (>1×10(-4) mol/L) decrease the expressions of OPG and RANKL, whereas low concentrations (1×10(-5) to 1×10(-7) mol/L) increase their expressions in mouse osteoblasts cultured in vitro.


Subject(s)
Alendronate/pharmacology , Osteoblasts/drug effects , Osteoblasts/metabolism , Osteoprotegerin/metabolism , RANK Ligand/metabolism , Animals , Cells, Cultured , Mice , Mice, Inbred BALB C
6.
Sheng Wu Yi Xue Gong Cheng Xue Za Zhi ; 27(5): 1100-4, 2010 Oct.
Article in Chinese | MEDLINE | ID: mdl-21089679

ABSTRACT

This experiment was designed to construct mouse Smad6 recombinant RNA interference vectors and determine their interference effects on bone marrow mesenchymal stem cells (BMSCs). Three recombinant Smad6 RNA interference vectors were constructed by molecular clone techniques with a lenti-virus vector expressing green fluorescent protein (GFP), and the correctness of recombinant vectors was verified by DNA sequencing. Mouse BMSCs were used for transfection experiments and BMP-2 was in use for osteogenic induction of MSCs. The transfection efficiency of recombinant vectors was examined by Laser confocal scanning microscope and the interference effect of recombinant vectors on Smad6 gene expression was determined by real-time RT-PCR and Western blot, respectively. Three Smad6 recombinant RNA interference vectors were successfully constructed and their correctness was proved by DNA sequencing. After transfection, GFPs were effectively expressed in MSCs and all of three recombinant vectors gained high transfection efficiency (> 95%). Both real-time PCR and Western blot examination indicated that among three recombinant vectors, No. 2 Svector had the best interference effect and the interference effect was nearly 91% at protein level. In conclusion, Mouse recombinant Smad6 RNA interference (RNAi) vector was successfully constructed and it provided an effective tool for further studies on BMP signal pathways.


Subject(s)
Bone Morphogenetic Proteins/genetics , Genetic Vectors/genetics , Lentivirus/genetics , RNA Interference , Smad6 Protein/biosynthesis , Animals , Bone Morphogenetic Proteins/metabolism , Green Fluorescent Proteins/biosynthesis , Green Fluorescent Proteins/genetics , Lentivirus/metabolism , Mesenchymal Stem Cells/metabolism , Mice , Recombinant Proteins/biosynthesis , Recombinant Proteins/genetics , Smad6 Protein/genetics , Transfection
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