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Determination of essential and potentially toxic elements and their estimation of bioaccessibility in honeys

机译:确定基本和潜在有毒因素及其对蜂蜜生物的估算

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In this work, the evaluation of the mineral profile and estimation of the bioaccessibility of essential and potentially toxic elements in honey samples was proposed. The experimental design and multivariate data analysis were applied as tool chemometrics. The acidic honey decomposition procedure using a cold finger digester block was proposed for analysis by inductively coupled plasma optical emission spectrometry (ICP OES). The analytical method presented good precision ( < 10%). The accuracy was confirmed through the analysis of a certified reference material (CRM) of tomato leaves (AGRO C1003a) and oyster tissue (NIST 1566b). The concentration ranges (in mg kg(-1) ) of the analytes quantified in honey samples were As ( < LoQ, 3.25), B ( < LoQ, 6.72), Ba ( < LoQ, 0.25), Ca (28.4-216), Cd ( < LoQ, 0.29), Cu ( < LoQ, 0.29), Fe ( < LoQ, 47.0), K (27.2-1210), Mg (2.82-96.0), Mn (0.17-4.62), Na (16.4-260), P ( < LoQ, 128), Se ( < LoQ, 0.45), Sr ( < LoQ, 1.08), and Zn ( < LoQ, 2.94). Higher concentrations of Cu and Zn were observed in dark and amber honeys. From the multivariate analysis of the data, it was verified that the samples of urban predominance presented higher mineral content than the samples of honey of predominance rural. The bioaccessibility estimation was performed using the in vitro extraction method using the simple bioaccessibility extraction test (SBET). The bands of the bioaccessible contents (in %) for the analytes were Ca ( < LoQ, 21.4), Fe ( < LoQ, 21.8), K (9.4-20.0), Mg (15.0-25.0), and Na ( < LoQ, 20.2). These results provide relevant information about the mineral composition of honey based on the visual coloration, geographical origin and bioaccessible content of the analytes in the gastric phase, contributing to the control of honey quality.
机译:在这项工作中,提出了对蜂蜜样品中必需和潜在有毒元素的必需和潜在有毒元素的生物可接受的评价。实验设计和多变量数据分析作为刀具化学计量学。使用冷手指蒸煮器块的酸性蜂蜜分解过程被电感耦合等离子体光发射光谱法(ICP OES)进行分析。分析方法呈现出良好的精度(<10%)。通过分析番茄叶(Agro C1003a)和牡蛎组织(NIST 1566B)的认证参考材料(CRM)来确认了准确性。在蜂蜜样品中定量的分析物的浓度范围(mg kg(-1))是(

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