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首页> 外文期刊>Food and Chemical Toxicology: An International Journal Published for the British Industrial Biological Research >Probabilistic estimates of heterocyclic amines and polycyclic aromatic hydrocarbons concentrations in meats and breads applicable to exposure assessments
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Probabilistic estimates of heterocyclic amines and polycyclic aromatic hydrocarbons concentrations in meats and breads applicable to exposure assessments

机译:杂环胺和多环芳烃浓度在适用于暴露评估的肉类和面包中的概率估计

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摘要

Random effect meta-regressions were constructed to estimate concentrations of two heterocyclic amines (HCA) and eight polycyclic aromatic hydrocarbons (PAH) in meat and breads. Eighteen HCA studies and nine PAH studies of food concentration were assembled. Concentration was computed for beef, poultry, pork, and seafood, and bread. Fixed effect predictors included cooking time, form of the food, cooking method, interaction between form and cooking method, temperature at which the food was cooked, fuel of the flame source, 'percentage of fat, and other elements. Meat type was significant to all HCAs but only three of the PAHs. Cooking method or an interaction between cooking method and food form was significant in all the overall models for each compound, and 80% of models created for stratifications of the data based on meat type. Improvement on compilations such as the Computerized Heterocyclic Amines Resource for Research in Epidemiology of Disease (CHARRED) database comes from inclusion of additional studies, PAH compounds, more generalizable food categories, more cooking methods (such as smoking), and addition of seafood. Meta-regression allows parameters to be estimated with separation of between-study heterogeneity, and extrapolation of exposures to more foods. Resulting uncertainty estimates are useful in a probabilistic exposure assessment.
机译:构建随机效应元回归以估计肉和面包中的两个杂环胺(HCA)和八个多环芳烃(PAH)的浓度。组装了十八HCA研究和对食物浓度的九项研究。为牛肉,家禽,猪肉和海鲜和面包计算浓度。固定效果预测因子包括烹饪时间,食品的形式,烹饪方法,形式和烹饪方法之间的相互作用,烹饪的温度,火焰源的燃料,脂肪百分比,脂肪百分比,其他元素。肉类对所有HCA都不重要,但只有三个PAH。在每个化合物的所有整体模型中,烹饪方法或烹饪方法和食物形式之间的相互作用,以及80%的模型,用于基于肉类的数据分层。诸如疾病流行病学研究中的计算机化杂环胺资源(烧焦)数据库的汇编的改进来自包含额外的研究,PAH化合物,更广泛的食品类别,更广泛的烹饪方法(如吸烟),并添加海鲜。元回归允许估计参数,分离研究之间的异质性,并将暴露的外推到更多食物。产生的不确定性估计对于概率的曝光评估是有用的。

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