TNO Quality of Life, Utrechtseweg, HE Zeist, The Netherlands.
J Agric Food Chem. 2010 Apr 28;58(8):4873-82. doi: 10.1021/jf904160a.
Bisphenol A diglycidyl ether (BADGE) is an epoxide that is used as a starting substance in the manufacture of can coatings for food-contact applications. Following migration from the can coating into food, BADGE levels decay and new reaction products are formed by reaction with food ingredients. The significant decay of BADGE was demonstrated by liquid chromatographic (LC) analysis of foodstuffs, that is, tuna, apple puree, and beer, spiked with BADGE before processing and storage. Life-science inspired analytical approaches were successfully applied to study the reactions of BADGE with food ingredients, for example, amino acids and sugars. An improved mass balance of BADGE was achieved by selective detection of reaction products of BADGE with low molecular weight food components, using a successful combination of stable isotopes of BADGE and analysis by LC coupled to fluorescence detection (FLD) and high-resolution mass spectrometric (MS) detection. Furthermore, proteomics approaches showed that BADGE also reacts with peptides (from protein digests in model systems) and with proteins in foods. The predominant reaction center for amino acids, peptides, and proteins was cysteine.
双酚 A 二缩水甘油醚(BADGE)是一种环氧化物,用作食品接触应用罐头涂料制造的起始物质。BADGE 从罐头涂层迁移到食物中后,其水平会衰减,并通过与食物成分反应形成新的反应产物。通过对添加 BADGE 后进行加工和储存的金枪鱼、苹果泥和啤酒等食品进行液相色谱(LC)分析,证明了 BADGE 的显著衰减。受生命科学启发的分析方法成功地应用于研究 BADGE 与食物成分的反应,例如氨基酸和糖。通过使用 BADGE 的稳定同位素和 LC 与荧光检测(FLD)和高分辨率质谱(MS)检测相结合的成功组合,对与低分子量食物成分反应的 BADGE 进行选择性检测,实现了 BADGE 质量平衡的改善。此外,蛋白质组学方法表明,BADGE 还与肽(来自模型系统中的蛋白质消化物)和食物中的蛋白质反应。氨基酸、肽和蛋白质的主要反应中心是半胱氨酸。