首页> 外文期刊>Journal of Endodontics: Official Journal of American Association of Endodontists >Experimental Sealers Containing Metal Methacrylates: Physical and Biological Properties
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Experimental Sealers Containing Metal Methacrylates: Physical and Biological Properties

机译:含有金属甲基丙烯酸酯的实验密封剂:物理和生物学性质

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Introduction: The aim of this study was to evaluate the physical properties, the antimicrobial effect, and the biocompatibility of dual polymerization experimental sealers after the incorporation of dibutyltin (ET) or calcium (EC) methacrylate at concentrations of 0.5%, 1%, 2%, and 5%. Methods: RealSeal (RS; SybronEndo, Glendora, CA) was used as a commercial control. Materials were evaluated regarding film thickness, degree of conversion, radiopacity, antimicrobial effect against Enterococcus faecalis using the modified direct contact test, and cell viability. Data were analyzed using analysis of variance followed by the Tukey test or the Student-Newman-Keuls test in SigmaPlot 12.0 (Systat Software, Inc, Point Richmond, CA) (P=.05). Results: The film thickness of the dibutyltin and calcium were greater than experimental sealers following the standards given by ISO 6876:2012. For degree of conversion, dual polymerization was not influenced by the addition of metal methacrylate. Regarding the modified direct contact test, calcium and dibutyltin at all concentrations showed antimicrobial activity when compared with the positive control after 48 hours of contact (P<.05). In cell viability, ET at all concentrations showed high cytotoxicity similar to RS, and EC at concentrations of 0.5%, 1%, and 2% showed moderate cytotoxicity that was less than 5% of calcium and RS. Conclusions: It was concluded that calcium and dibutyltin methacrylate incorporation in experimental sealers promoted the antimicrobial effect. The incorporation of calcium methacrylate at 0.5%, 1%, and 2% seemed to be a good treatment option to provide antimicrobial activity associated with moderate cytotoxicity and adequate physical properties.
机译:介绍:本研究的目的是评估在浓度为0.5%,1%,2的浓度下掺入二丁基锡(ET)或钙(EC)甲基丙烯酸钙后双聚合实验密封剂的物理性质,抗微生物效应和双聚合实验密封剂的生物相容性。 %,5%。方法:Realseal(Rs; Sybronendo,Glendora,CA)被用作商业控制。使用改性的直接接触试验和细胞活力来评估薄膜厚度,转化率,辐射性,对肠球菌粪便的抗微生物作用的抗微生物作用的评估。使用差异分析,然后在Sigmaplot 12.0(Systat Software,Inc,Point Richmond,CA)中的Tukey Test或The Student-Newman-Keuls测试进行分析数据(Systat Software,Inc,CA)(P = .05)。结果:二丁基锡和钙的膜厚度大于由ISO 6876:2012给出的标准后的实验密封剂。对于转化程度,不受加入金属甲基丙烯酸酯的影响。关于改性的直接接触试验,在所有浓度下,钙和二丁基霉素与48小时接触后的阳性对照相比,抗微生物活性(P <.05)。在细胞活力中,ET在所有浓度下显示出类似于Rs的高细胞毒性,EC以0.5%,1%,2%的浓度显示,表现出低于5%的钙和Rs的中等细胞毒性。结论:得出结论,甲基丙烯酸钙和二丁基锡在实验密封剂中的掺入促进了抗微生物作用。甲基丙烯酸钙的掺入0.5%,1%和2%似乎是一种良好的处理选择,以提供与中度细胞毒性和适当物理性质相关的抗微生物活性。

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