首页> 外文期刊>Revista de Odontologia da UNESP >Inorganic elemental analysis and identification of residual monomers released from different glass ionomer cements in cell culture medium
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Inorganic elemental analysis and identification of residual monomers released from different glass ionomer cements in cell culture medium

机译:细胞培养基中不同玻璃离子水门汀释放的残留单体的无机元素分析和鉴定

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INTRODUCTION: Glass ionomer cements (GICs) release inorganic elements and organic residual monomers with the potential for deleterious effects on pulp cells. OBJECTIVE: To identify and quantify inorganic elements present in different GICs and released components from these materials in cell culture medium. MATERIAL AND METHOD: Samples of two resin-modified GICs for base/liner (Vitrebond and Fuji Lining LC), two resin-modified restorative GICs (Vitremer and Fuji II LC) and two conventional restorative GICs (Ketac Fil Plus and Ketac Molar Easymix) were prepared and analyzed by Energy-Dispersive X-Ray Fluorescence Spectrometry (EDXRF). Extracts of these materials were obtained by immersion of each sample in separate containers of DMEM for 24 h (total surface-liquid ratio = 45.7 mm2/mL). The extracts were analyzed by EDXRF and Gas Chromatography-Mass Spectrometry (GC-MS). RESULT: Higher percentages of strontium, silicon and aluminum were identified in Vitrebond, Vitremer, Fuji Lining LC, Fuji II LC, and Ketac Fil Plus, while zinc was detected only in Vitrebond. Ketac Molar Easymix presented a greater atomic composition of lanthanum, calcium, aluminum and silicon. Strontium was detected in the extracts from all materials except Ketac Molar Easymix; calcium was present in extracts from Ketac Fil Plus; zinc only in Vitrebond; and silicon in Fuji II LC extract. The analysis by GC-MS detected 2-hydroxyethyl-methacrylate (HEMA) in the extracts from all resin-modified GICs, and iodine benzene was detected only in the Vitrebond extract. CONCLUSION: Of the GICs sampled, Vitrebond released the highest number of components with cytotoxic potential.
机译:简介:玻璃离聚物水泥(GIC)释放无机元素和有机残留单体,可能对纸浆细胞产生有害影响。目的:鉴定和定量存在于细胞培养基中的不同GIC中的无机元素和这些材料中释放的成分。材料和方法:两种用于底漆/衬里的树脂改性GIC(Vitrebond和Fuji Lining LC),两种树脂改性的修复性GIC(Vitremer和Fuji II LC)和两种常规的修复性GIC(Ketac Fil Plus和Ketac Molar Easymix)的样品制备并通过能量色散X射线荧光光谱法(EDXRF)进行分析。这些材料的提取物是通过将每个样品浸入DMEM的单独容器中24小时(总表面液比= 45.7 mm2 / mL)而获得的。通过EDXRF和气相色谱-质谱法(GC-MS)分析提取物。结果:在Vitrebond,Vitremer,Fuji Lining LC,Fuji II LC和Ketac Fil Plus中鉴定出较高的锶,硅和铝百分比,而仅在Vitrebond中检测到锌。 Ketac Molar Easymix呈现出更大的镧,钙,铝和硅原子组成。在除Ketac Molar Easymix之外的所有材料的提取物中都检测到了锶。 Ketac Fil Plus的提取物中存在钙;仅在Vitrebond中添加锌;和富士II LC提取物中的硅。通过GC-MS进行的分析在所有树脂改性的GIC的提取物中检测到了甲基丙烯酸2-羟乙酯(HEMA),仅在Vitrebond提取物中检测到了碘苯。结论:在所采样的GIC中,Vitrebond释放出具有细胞毒性潜力的组分最多。

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