首页> 美国卫生研究院文献>Environmental Health Perspectives >Determination of bisphenol A and related aromatic compounds released from bis-GMA-based composites and sealants by high performance liquid chromatography.
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Determination of bisphenol A and related aromatic compounds released from bis-GMA-based composites and sealants by high performance liquid chromatography.

机译:高效液相色谱法测定从基于双GMA的复合材料和密封胶中释放的双酚A和相关的芳族化合物。

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摘要

Most of the composites and sealants used in dentistry are based on bisphenol A diglycidylether methacrylate (Bis-GMA). Reports revealed that in situ polymerization is not complete and that free monomers can be detected by different analytic methods. Concerns about the estrogenicity of bisphenol A (BPA) and other aromatic components leached from commercial products have been expressed. We studied biphenolic components eluted from seven composites and one sealant before and after in vitro polymerization using HPLC and gas chromatography/mass spectrometry and we investigated how pH modifications affect the leaching of these components. We found BPA (maximal amount 1.8 microg/mg dental material), its dimethacrylate derivative (Bis-DMA, 1.15 microg/mg), bisphenol A diglycidylether (6. 1 microg/mg), Bis-GMA (2.0 microg/mg), and ethoxylate and propoxylate of bisphenol A in media in which samples of different commercial products were maintained under controlled pH and temperature conditions. Our results confirm the leaching of estrogenic monomers into the environment by Bis-GMA-based composites and sealants in concentrations at which biologic effects have been demonstrated in in vivo experimental models. The main issue with implications for patient care and dentist responsibility is to further determine the clinical relevance of this estrogenic exposure.
机译:牙科中使用的大多数复合材料和密封剂都是基于双酚A二缩水甘油醚甲基丙烯酸酯(Bis-GMA)。报告显示原位聚合不完全,可以通过不同的分析方法检测到游离单体。人们已经对双酚A(BPA)和从商业产品中浸出的其他芳香族成分的雌激素性表示担忧。我们使用HPLC和气相色谱/质谱法研究了在体外聚合反应前后从7种复合材料和1种密封剂中洗脱的双酚组分,并研究了pH改变如何影响这些组分的浸出。我们发现BPA(最大量为1.8微克/毫克牙科材料),其二甲基丙烯酸酯衍生物(Bis-DMA,1.15微克/毫克),双酚A二缩水甘油醚(6.1微克/毫克),双酚GMA(2.0微克/毫克),介质中的双酚A的乙氧基化物和丙氧基化物,在该介质中,不同商业产品的样品保持在受控的pH和温度条件下。我们的结果证实了Bis-GMA基复合材料和密封剂在体内实验模型中已证明具有生物效应的浓度下,将雌激素单体浸出到环境中。影响患者护理和牙医责任的主要问题是进一步确定这种雌激素暴露的临床相关性。

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