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首页> 外文期刊>Biological trace element research >Investigating the Bioaccessibility and Bioavailability of Cadmium in a Cooked Rice Food Matrix by Using an 11-Day Rapid Caco-2/HT-29 Co-culture Cell Model Combined with an In Vitro Digestion Model
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Investigating the Bioaccessibility and Bioavailability of Cadmium in a Cooked Rice Food Matrix by Using an 11-Day Rapid Caco-2/HT-29 Co-culture Cell Model Combined with an In Vitro Digestion Model

机译:使用11天的快速Caco-2 / HT-29共培养细胞模型研究镉在煮米食物基质中镉的生物可接为和生物利用度,结合体外消化模型

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摘要

Investigating the bioaccessibility and bioavailability of Cd based on real contaminated cooked rice matrixes helps establish an accurate risk assessment method and effectively reduce the digestion and absorption of Cd. An 11-day in vitro rapid Caco-2/HT-29 co-culture cell model was used to establish and evaluate the simulation of the absorption and transport of Cd in the small intestine with a 70:30 Caco-2/HT-29 co-culture ratio and 1.0mmolL(-1) butyric acid as a differentiation inducer. The bioaccessibility and bioavailability of Cd in cooked rice were studied using the cell model combined with an in vitro digestion model. The bioaccessibility of Cd of each of the three cooked rice samples was significantly higher in the gastric phase (59.04-80.23%) than in the gastrointestinal phase (37.14-52.93%). Despite the extension of the digestion time of the gastrointestinal phase, no significant difference was found among the time points. Results demonstrated that the amount of undigested residue, not the level of Cd contamination, significantly contributed to the bioaccessibility of Cd, which was affected by pH or ion. The absorption rate of Cd (25.08%+/- 3.05%) was greater than the values obtained using the pure Caco-2 cell models. The bioavailability of Cd (8.29%+/- 1.95%) was almost similar to that of Zn2+ (6.66%+/- 1.41%) in the cooked rice matrix, indicating that the intestinal epithelium expressed a strong absorptive capacity of Cd during the absorption of essential metallic elements. The 11-day rapid Caco-2/HT-29 co-culture cell model combined with the in vitro digestion model was an efficient tool for studying the bioaccessibility and bioavailability of Cd or other substances in a food matrix to further investigate mechanistic steps and screen a broad set of food matrix factors.
机译:研究基于真正受污染的饭基质的CD的生物可接为和生物利用度有助于建立准确的风险评估方法,并有效减少CD的消化和吸收。使用70:30 Caco-2 / HT-29,使用7天的体外Caco-2 / HT-29共培养细胞模型来建立和评估小肠中的吸收和运输的模拟共培养率和1.0mmoll(-1)丁酸作为分化诱导剂。使用细胞模型与体外消化模型相结合,研究了CD在熟米中的生物可接为和生物利用度。胃相的每种熟稻样品中的每种镉的CD的生物可接为性显着高于胃肠相(59.04-80.23%)(37.14-52.93%)。尽管延长了胃肠阶段的消化时间,但在时间点中没有发现显着差异。结果表明,未消化的残留物量,而不是CD污染水平,显着导致CD的生物可接为性,其受pH或离子的影响。 Cd的吸收率(25.08%+ / - 3.05%)大于使用纯Caco-2细胞模型获得的值。 Cd的生物利用度(8.29%+ / - 1.95%)几乎与煮熟的稻基质中的Zn2 +(6.66%+ / - 1.41%)类似,表明肠上皮在吸收期间表达了CD的强吸收能力基本金属元素。结合体外消化模型的11天的快速Caco-2 / HT-29共培养细胞模型是研究CD或其他物质在食品基质中的生物可接为和生物利用度进一步研究机械步骤和筛选的有效工具广泛的食物矩阵因子。

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  • 来源
    《Biological trace element research》 |2019年第2期|共13页
  • 作者单位

    Cent South Univ Forestry &

    Technol Food Sci &

    Engn Coll Natl Engn Lab Rice &

    By Prod Deep Proc;

    Cent South Univ Forestry &

    Technol Food Sci &

    Engn Coll Natl Engn Lab Rice &

    By Prod Deep Proc;

    Cent South Univ Forestry &

    Technol Food Sci &

    Engn Coll Natl Engn Lab Rice &

    By Prod Deep Proc;

    Acad State Adm Grain 11 Baiwanzhuang St Beijing 100037 Peoples R China;

    Cent South Univ Forestry &

    Technol Food Sci &

    Engn Coll Natl Engn Lab Rice &

    By Prod Deep Proc;

    Cent South Univ Forestry &

    Technol Food Sci &

    Engn Coll Natl Engn Lab Rice &

    By Prod Deep Proc;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 生物化学;
  • 关键词

    Cadmium (Cd); Cooked rice; Bioaccessibility; Bioavailability; Caco-2; HT-29 cells; Co-culture;

    机译:镉(CD);煮熟的米;生物可接受性;生物利用度;Caco-2;HT-29细胞;共同培养;

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