Dental caries are the most common and widespread biofilm-dependent oral disease. Nanotechnology promises to be a useful strategy for dental caries management by combating caries-related bacteria, decreasing biofilm accumulation, inhibiting demineralization and enhancing remineralization. Many potential applications of nanotechnology in the development of anticaries materials have recently been reported, especially for anticaries adhesive nanomaterials and anticaries nanofilled composite resins. This review summarizes the current progress in the application of functional nanoparticles in the following products: antibacterial nanomaterials, remineralizing nanomaterials and nanodrug delivery systems.
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Open Access
Review Article
Issue
Open Access
Basic Study
Issue
To study the effects of hedysarum polybotys saccharides (HPS) and selenizated hedysarum polybotys saccharides (SE-HPS) on the oral squamous cancer cell line SCC25.
Different concentrations (0, 10, 25, 50, 100, 200, 400 μg/ml) of HPS and SE-HPS were added to SCC25 cells in the logarithmic growth stage. Cell proliferation was detected by the CCK-8 method, apoptosis was detected by flow cytometry, and apoptosis-related indexes were observed by RT-qPCR and Western blotting.
The concentrations of HPS and SE-HPS inhibited the proliferation of SCC25 cells. The inhibitory effect of 50 μg/mL HPS and SE-HPS on the proliferation of SCC25 cells was the strongest and was time-dependent. The inhibition effect significantly increased within 48 h, and the effect was achieved after 48 h. At the plateau stage, SE-HPS inhibited the proliferation of SCC25 cells more strongly than HPS (P < 0.05). The results of flow cytometry showed that 50 μg/mL HPS and SE-HPS acted on SCC25 cells for 48 h, and the apoptotic rates were 25.8% and 30.8% respectively. Compared with the control group (0 μg/mL HPS and SE-HPS), the difference was statistically significant (P < 0.05). RT-qPCR and Western blotting showed that 50 μg/mL HPS and SE-HPS acted on SCC25 cells for 48 h, and the mRNA and protein expression levels of the apoptosis gene Fas/FasL were upregulated. The difference was statistically significant (P < 0.05).
Both HPS and SE-HPS can inhibit the proliferation of SCC25 oral cancer cells, but SE-HPS is superior to HPS and can induce apoptosis through the Fas/Fasl pathway.
Open Access
Clinical Study
Issue
To study the clinical efficacy of biological ceramics (iRoot BP Plus ) and mineral trioxide aggregate (MTA) in direct pulp capping of mature permanent teeth, to provide referrence for clinical application.
Seventy-four patients with pulp exposure due to deep caries or reversible pulpitis in 75 mature permanent teeth were selected and were randomly divided into two groups. iRoot BP Plus were used as pulp capping agents in the treatment group and MTA were used as pulp capping agents in the control group respectively. The clinical efficacy and imaging analysis were performed at 1, 3, 6 and 12 months after operation. Treatment success rate of the two groups were calculated, and the influence of various factors including gender, age, tooth position, cavity, number and size of pulp exposure on the efficacy of direct pulp capping were analyzed.
Sixty patients with 61 mature permanent teeth were selected. Twelve mouths after treatment, 61 teeth of 60 patents were completely investigated (iRoot group: 31 teeth 30 patients; MTA group: 30 teeth 30 patients). The success rates of the 2 groups were 90.3% (iRoot BP Plus) and 90.0% (MTA), respectively. There was no statistical difference between 2 groups (P>0.05). Statistical analysis also showed that gender, age, tooth position, cavity, number and size of pulp exposure had no significant difference between the two groups (P>0.05).
Both iRoot BP Plus and MTA are effective in direct pulp capping of mature permanent teeth with carious pulp exposure, while the operation of iRoot is simple and convenient.
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