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首页> 外文期刊>Journal of toxicology and environmental health, Part A >APPLICABILITY OF IN VITRO METHODS TO STUDY PATULIN BIOACCESSIBILITY AND ITS EFFECTS ON INTESTINAL MEMBRANE INTEGRITY
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APPLICABILITY OF IN VITRO METHODS TO STUDY PATULIN BIOACCESSIBILITY AND ITS EFFECTS ON INTESTINAL MEMBRANE INTEGRITY

机译:体外方法在研究木瓜蛋白生物可及性及其对肠膜完整性的影响

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In human health risk assessment, ingestion of food is considered a major route of exposure to many contaminants, although the total amount of an ingested contaminant (external dose) does not always reflect the quantity available for the body (internal dose). In this study, two in vitro methods were applied to study bioaccessibility and intestinal membrane integrity of cells exposed to patulin, a mycotoxin with significant public health risk. Seven artificially contaminated fruit juices were assayed in the presence or absence of a standard meal, showing a significant difference for bioaccessibility values between contaminated samples alone (mean 27.65 ± 13.50%) and combinations with a standard meal (mean 7.89 ± 4.03%). Different concentrations of patulin (PAT) and cysteine (CYS) (protector agent) were assayed in Caco-2 cells monolayers. At 95 muM, PAT produced a marked decrease in transepithelial electrical resistance (TEER). This effect was significantly reduced when 400 muM and 4000 muM CYS was added to the cells. Combined use of in vitro digestion models with other techniques using intestinal cell lines, such as in vitro intestinal absorption models that use Caco-2 cells, may offer a more comprehensive model of what is occurring during digestion and absorption processes. The study of beneficial effects of protective agents would also be enhanced.
机译:在人类健康风险评估中,食物的摄入被认为是接触许多污染物的主要途径,尽管摄入的污染物总量(外部剂量)并不总是反映出人体可利用的数量(内部剂量)。在这项研究中,应用了两种体外方法来研究暴露于棒曲霉素(一种具有重大公共卫生风险的霉菌毒素)的细胞的生物可及性和肠膜完整性。在有或没有标准餐的情况下对七种人工污染的果汁进行了分析,结果表明,单独污染的样品(平均27.65±13.50%)和标准餐组合的生物可及性值之间存在显着差异(平均7.89±4.03%)。在Caco-2细胞单层中检测了不同浓度的棒曲霉素(PAT)和半胱氨酸(CYS)(保护剂)。在95μM时,PAT的跨上皮电阻(TEER)明显降低。当向细胞中添加400μM和4000μMCYS时,该作用显着降低。结合使用体外消化模型和使用肠道细胞系的其他技术,例如使用Caco-2细胞的体外吸收模型,可以提供消化和吸收过程中发生的情况的更全面模型。保护剂有益作用的研究也将得到加强。

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