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首页> 外文期刊>The Science of the Total Environment >Maize cultivars relieve health risks of Cd-Polluted Soils: In vitro Cd bioaccessibility and bioavailability
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Maize cultivars relieve health risks of Cd-Polluted Soils: In vitro Cd bioaccessibility and bioavailability

机译:玉米品种缓解镉污染土壤的健康风险:体外镉的生物利用度和生物利用度

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Dietary grain ingestion is the primary route of human exposure to the adverse effects of Cd; therefore, an understanding of the transfer characteristics of Cd in a system involving soil, grain, and humans is crucial for health risk alleviation and pollution control. In this study, Cd bioaccessibility and bioavailability for humans from grains of sweet maize (Zea mays convar. saccharata var. rugosa) cultivars grown on a contaminated field (1.05 mg Cd kg~(-1) soil) were assessed by combining a simulated in vitro digestion method with a Caco-2 cell model. Results showed that cultivars differed significantly in grain Cd concentration, bioaccessibility, and bioavailability with the corresponding values of 0.07 to 0.20 mg kg ~(-1) DW (dry weight), 4.10 to 6.20%, and 0.01 to 0.04 μg g~(-1) grain, respectively. The estimated daily intake of Cd through sweet maize grain was within the range of 0.04 and 0.25 μg kg~(-1) body weight, which is lower than the tolerable limit recommended by the Joint FAO/WHO Expert Committee on Food Additives (JEFCA). Conclusively, results from the present study indicate that most grain Cd remains non-bioaccessible and thus might not present adverse health effects in humans. Therefore, sweet maize cultivars could be used to produce healthy food crops in low-to-moderately Cd-contaminated soil.
机译:饮食中的谷物摄入是人体暴露于镉不利影响的主要途径。因此,了解Cd在涉及土壤,谷物和人类的系统中的转移特性对于减轻健康风险和控制污染至关重要。在这项研究中,通过结合模拟玉米田中的甜玉米(1.05 mg Cd kg〜(-1)土壤)上生长的甜玉米(Zea mays convar。saccharata var。rugosa)品种的谷物,对人体的Cd生物可利用性和生物利用度进行了评估。 Caco-2细胞模型的体外消化方法。结果表明,不同品种的Cd含量,生物利用度和生物利用度差异显着,分别为0.07至0.20 mg kg〜(-1)DW(干重),4.10至6.20%和0.01至0.04μgg〜(- 1)分别为谷物。通过甜玉米籽粒估算的Cd每日摄入量在0.04至0.25μgkg〜(-1)体重范围内,低于粮农组织/世卫组织食品添加剂联合专家委员会(JEFCA)推荐的容许限量。总之,本研究的结果表明,大多数谷物Cd仍无法生物获取,因此可能不会对人类健康产生不利影响。因此,甜玉米品种可用于在低至中度Cd污染的土壤中生产健康的粮食作物。

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