首页> 外文会议>Annual conference of the International Society of Exposure Science >Determination of mercury and selenium bioaccessibility and bioavailability in Inuit Traditional Foods from Nunavik, Quebec using the In Vitro Gastrointestinal (GI) Model
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Determination of mercury and selenium bioaccessibility and bioavailability in Inuit Traditional Foods from Nunavik, Quebec using the In Vitro Gastrointestinal (GI) Model

机译:使用体外胃肠道(GI)模型,Quebec中Quebik中的汞和硒生物可接为和生物利用度的测定

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This study will use in vitro techniques to evaluate mercury (Hg) exposure and selenium (Se) intake via traditional foods (TFs) among Inuit communities in Nunavik, Quebec. The consumption of TFs provide cultural and economic benefits for Inuit communities. They are an excellent source of essential nutrients including Se. However, environmental contaminants like Hg are present in elevated levels in TFs. Mercury causes harmful health effects disturbing many organ systems however, prior research has shown Se and other nutrients (e.g. antioxidants) can moderate the detrimental effects of Hg; these mechanisms are poorly understood. We will assess the total concentration, speciation and bioaccessibility of Se and Hg these TFs. The objectives are as follows: (1) evaluate the total concentrations of Hg and Se present in TFs, (2) assess the chemical forms of Hg and Se in TFs, and (3) estimate the bioaccessibility of Hg in TFs when co-consumed with TFs rich in Se. We used the In Vitro Gastrointestinal (GI) Model to analyze the fraction of bioaccessible Hg and Se in TFs. Preliminary bioaccessibility results show that Ringed seal meat has the highest %Hg bioaccessibility and Arctic char has the lowest. For %Se bioaccessibility, Caribou has the highest and Ringed seal liver has the lowest. Sculpin eggs have the highest Se Health Benefit Value. We will co-digest high Hg TFs (e.g. ringed seal muscle, ringed seal liver, beluga meat etc.) with TFs that may serve as functional foods (such as berries and seaweed) to modify Hg bioaccessibility. We will run a univariate statistics analysis (p-value<0.05) to evaluate if the interaction between Hg and Se is statistically significant and if Se mitigates Hg. These bioaccessibility results will be inputted into an exposure assessment completed by Monte-Carlo simulations to inform public health messaging, risk assessment, and mitigation options for Hg in Inuit foods.
机译:本研究将在魁北克,魁北克州努内克州Nunavik中的其他食物(TFS)进行体外技术来评估汞(HG)暴露和硒摄入量(TFS)。 TFS的消费为因纽特社区提供文化和经济效益。它们是一种优秀的基本营养素来源,包括SE。然而,像Hg这样的环境污染物存在于TFS的升高水平。汞导致有害的健康效果扰乱许多器官系统,然而,先前的研究表明了SE和其他营养素(例如抗氧化剂)可以缓解HG的不利影响;这些机制理解得很差。我们将评估SE和HG这些TF的总浓度,物种和生物可接受性。目标如下:(1)评价TFS中存在的HG和Se的总浓度,(2)评估TFS中的Hg和Se的化学形式,(3)在共同消费时估计Hg中Hg的生物可接受性TFS富含SE。我们使用体外胃肠道(GI)模型来分析TFS中生物可接近的Hg和Se的一部分。初步生物可接近性结果表明,环形密封肉具有最高%HG生物可接受性和北极焦炭最低。对于%SE Biocrocessibility,驯鹿具有最高和振铃的密封肝具有最低。 Sculpin鸡蛋具有最高的SE健康益处价值。我们将通过TFS共消化高HG TFS(例如环形密封肌肉,振铃密封肝,Beluga肉等),其可作为功能性食品(如浆果和海藻)来修饰Hg生物可接定性。我们将运行一个单变量统计分析(p值<0.05)来评估Hg和Se之间的相互作用是否在统计学上显着,如果SE减轻Hg。这些生物可接近的结果将输入由Monte-Carlo模拟完成的曝光评估,以通知在因纽特粮食中的公共卫生消息传递,风险评估和缓解期权。

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