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Impact of pesticide polarity and lipid phase dimensions on the bioaccessibility of pesticides in agricultural produce consumed with model fatty foods

机译:农药极性和脂阶段对模型脂肪食品消费农产品农药生物可接受的影响

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For most people, the pesticide residues found on agriculture products are the main source of pesticide exposure, which may adversely influence consumer health. The potential health hazard of residual pesticides depends on the nature of the foods they are consumed with. Studies with fat-soluble vitamins and nutraceuticals have shown that their bioaccessibility depends on food matrix composition and structure. We used anin vitromethod to investigate the influence of the dimensions of the lipid phase in model fatty foods (emulsified or bulk oil) on the bioaccessibility of various pesticides. Three pesticides that differed in their oil-water partition coefficients were selected: bendiocarb (log P= 1.7), parathion (log P= 3.8), and chlorpyrifos (log P= 5.3). These pesticides were mixed with tomato puree to represent pesticide-treated agricultural products. Three model foods with different oil phase dimensions were used to represent different kinds of food product: small emulsions (d(32)= 0.14 mu m); large emulsions (d(32)= 10 mu m); and, bulk oil. Our results showed that the oil droplets underwent extensive changes as they passed through the simulated gastrointestinal tract due to changes in environmental conditions, such as pH, ionic strength, bile salts, and enzyme activities. The initial rate and final amount of lipid hydrolysis decreased with increasing lipid phase dimensions. Pesticide bioaccessibility depended on both the hydrophobicity of the pesticide and the dimensions of the co-ingested lipid droplets. The least hydrophobic pesticide (bendiocarb) had a high bioaccessibility (>95%) that did not depend on lipid phase dimensions. The more hydrophobic pesticides (parathion and chlorpyrifos) has a lower bioaccessibility that increased with decreasing lipid phase dimensions. Our results demonstrate the critical role that food structure plays on the potential uptake of pesticides from agricultural products, like fruits and vegetables.
机译:对于大多数人来说,农业产品中发现的农药残留是农药暴露的主要来源,可能对消费者的健康产生不利影响。残留杀虫剂的潜在健康危害取决于它们消耗的食物的性质。用脂溶性维生素和营养保健品的研究表明,它们的生物可接为性取决于食物基质组成和结构。我们使用Anin Vitromethod来研究脂质相尺寸在模型脂肪食品(乳化或散装油)上的影响各种农药的生物可接受性。选择其油分配系数的三种杀虫剂:BendioCarb(Log P = 1.7),脱落(log p = 3.8)和氯吡啶(log p = 5.3)。这些农药与番茄酱混合,代表农药处理的农产品。采用不同的油相尺寸的三种模型食品来代表不同种类的食品:小乳液(D(32)= 0.14 mu m);大乳液(D(32)= 10亩);和散装油。我们的研究结果表明,由于环境条件的变化,如pH,离子强度,胆汁盐和酶活性,水滴由于环境条件的变化而经历了广泛的变化。随着脂质阶段尺寸的增加,脂质水解的初始速率和最终量降低。农药生物进步依赖于农药的疏水性和共摄入脂液滴的尺寸。最少的疏水性农药(BENDIOCARB)具有高生物可接定性(> 95%),其不依赖于脂质阶段尺寸。疏水性杀虫剂(对硫磷和氯吡啶酚)具有较低的生物可接定性,随着脂质阶段尺寸的降低而增加。我们的结果表明,食品结构对农产品潜在吸收农药的潜在摄取,如水果和蔬菜。

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    《Food & Function》 |2020年第7期|共10页
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  • 正文语种 eng
  • 中图分类 食品工业;
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