牙科材料中双酚A的释放:风险和未来展望。

A Tichy, T Srolerova, F Schwendicke
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引用次数: 0

摘要

牙科汞合金的逐步淘汰导致树脂基材料的使用显著增加。虽然这些材料提供了一些理想的特性,但人们对它们的生物相容性,特别是双酚A (BPA)的释放仍然存在担忧。双酚a是一种干扰内分泌的化学物质,对人体健康有不利影响,包括生殖、发育和代谢紊乱。虽然食品接触材料是人类BPA暴露的主要来源,而牙科材料的贡献很小,但由于BPA的非单调剂量-反应关系,相关风险不能被忽视。2023年,欧洲食品安全局(European Food Safety Authority)提出,将BPA的每日可耐受摄入量减少2万倍,降至每公斤体重0.2纳克,理由是极低剂量会对免疫系统产生影响。这一提议引发了监管和科学上的争论,因为采用如此严格的限制将有效地禁止在食品接触材料和许多其他产品中使用双酚a。在这种情况下,有必要评估体外和体内牙科材料中BPA的释放。然而,由于方法上的不一致,包括材料组成、标本制备、提取介质的选择、实验持续时间和分析方法的变化,数据解释变得复杂。此外,报告结果的关键差异使得很难综合研究结果并得出可靠的结论。本综述审查了围绕双酚a的争议,批判性地评估了其从牙科材料中释放的证据,并探讨了缓解策略。本综述旨在通过突出知识空白并提出未来的研究方向,为临床医生、研究人员和政策制定者提供对bpa相关复杂性更清晰的认识,最终为患者安全和材料创新做出贡献。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Release of Bisphenol A from Dental Materials: Risks and Future Perspectives.

The gradual phaseout of dental amalgam has contributed to a significant increase in the use of resin-based materials. While these materials offer several desirable properties, concerns persist regarding their biocompatibility, particularly the release of bisphenol A (BPA). BPA is an endocrine-disrupting chemical linked to adverse effects on human health, including reproductive, developmental, and metabolic disorders. Although food contact materials are the primary source of human BPA exposure and the contribution of dental materials is minor, the associated risks cannot be dismissed due to BPA's nonmonotonic dose-response relationship. In 2023, the European Food Safety Authority proposed a 20,000-fold reduction in the tolerable daily intake of BPA to 0.2 ng/kg body weight, citing immune system effects at extremely low doses. This proposal has sparked regulatory and scientific debate, as adopting such a stringent limit would effectively ban the use of BPA in food contact materials and many other products. Given this context, it is essential to assess the release of BPA from dental materials both in vitro and in vivo. However, data interpretation is complicated by methodological inconsistencies, including variations in material composition, specimen preparation, choice of extraction media, experimental duration, and analytical methods. In addition, pivotal differences in reporting results make it difficult to synthesize findings and draw reliable conclusions. This review examines the controversy surrounding BPA, critically evaluates evidence on its release from dental materials, and explores mitigation strategies. By highlighting gaps in knowledge and proposing future research directions, this review aims to provide clinicians, researchers, and policymakers with a clearer understanding of BPA-related complexities, ultimately contributing to patient safety and material innovation.

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