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1.
International Journal of Traditional Chinese Medicine ; (6): 547-550, 2022.
Article in Chinese | WPRIM | ID: wpr-930186

ABSTRACT

Objective:To explore the effects of different processed products of Epimedii Folium on cytotoxicity and the material basis of toxicity. Methods:By using the SRB method to investigate the effects of different processed products of Epimedii Folium on the proliferation of HaCaT cells; and based on the grey correlation analysis method to establish the data spectrum effect relationship of HPLC fingerprint spectrum-toxicity so as to determine the toxic components and processing methods. Results:The value of cytotoxicity IC 50 of different processed products of Epimedii Folium is as follow: vinegar fried> oil fried > original > single fried > salt fried > wine fried. Among the 12 characteristic chromatographic peaks, Peak No.3 (magnoflorine, correlation value: 0.870) and Peak No.6 (epimedin C, correlation value: 0.851) are highly correlated with the toxicity value. Conclusions:Both vinegar fried and oil fried Epimedii Folium have the effect of reducing toxicity. Magnoflorine and epimedin C may be the main toxic components in Epimedii Folium. The study provides scientific basis for the research on the process optimization of Epimedii Folium concocting to reduce toxicity.

2.
Journal of Practical Stomatology ; (6): 27-30, 2017.
Article in Chinese | WPRIM | ID: wpr-619226

ABSTRACT

Objective:To evaluate the effects of different denture cleaners on the discoloration of heat-cured denture base resin and artificial teeth.Methods:40 same specifications of the heat-curing denture base resin and 40 artificial central incisors were immerced in an acombination stain of coffee,tea and soy sauce for 4 weeks.Then specimens and artificial teeth were randomly distributed into 4 groups and soaked in Polident,Steradent,0.5% sodium hypochlorite solution and distilled water for 4 hours respectivelly(n =10).Color differences(△E) were measured by using a colorimeter and a denture spectrophotometer before and after staining,and after cleaning.Results:Before or after staining there was no difference of △E among the groups of denture base risn or artificial teeth(P > 0.05).After cleaning the denture base resin and the artificial teeth in the group of 0.5% sodium hypochlorite solution presented higher △E than the other groups(P < 0.05),in group of distilled water presented lower △E than the other groups(P < 0.05).No significant difference was found between Polident group and Steradent group(P >0.05).The △E of the denture base resin and artificial teeth.in distilled water group before staining and after cleaning were the highest among the groups(P <0.05).Conclusion:0.5% sodium hypochlorite solution,Polident and Steradent are effective in removing the discoloration from the heat-cured acrylic resin and artificial teeth.0.5% sodium hypochlorite solution is the most effective,Polident and Steradent are the similar.

3.
Journal of Practical Stomatology ; (6): 182-185, 2016.
Article in Chinese | WPRIM | ID: wpr-485975

ABSTRACT

Objective:To evaluate the effects of different denture cleansers on the physical and mechanical properties of heat-cured denture base resin.Methods:Heat-curing denture base resin samples were prepared and respectively immersed in Polident,Stera-dent,0.5% sodium hypochlorite solution and distilled water for 60 h.The flexural strength and elastic modulus were measured(n =10)using 3-point bending test in a universal testing machine.A surface analyzer was used to measure the surface roughness of each specimen(n =10).Results:There were no significant differences of flexural strength and elastic modulus among Polident,Steradent and distilled water(P >0.05).The 0.5% sodium hypochlorite treatment produced lower flexural strength and elastic modulus than the other cleaners(P 0.05).Conclusion:Both Poli-dent and Steradent don't affect the physical and mechanical properties of the heat-cured acrylic resin.0.5% sodium hypochlorite solu-tion doesn't affect the surface roughness,but decreases the flexural strength and elastic modulus of the resin.

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