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Modified Dietary Fiber from Cassava Pulp and Assessment of Mercury Bioaccessibility and Intestinal Uptake Using an In Vitro Digestion/Caco-2 Model System

机译:木薯纸浆的改性膳食纤维以及使用体外消化/ Caco-2模型系统评估汞的生物可及性和肠道吸收

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The ability of modified dietary fiber (MDF) generated from cassava pulp to modulate the bioaccessibility and intestinal absorption of heavy metals may be helpful to mitigate health risk associated with select foods including select fish high in methyl mercury. Using a coupled in vitro digestion/Caco-2 human intestinal cell model, the reduction of fish mercury bioaccessibility and intestinal uptake by MDF was investiaged. MDF was prepared from cassava pulp, a byproduct of tapioca production. The highest yield (79.68%) of MDF was obtained by enzymatic digestion with 0.1% α-amylase (w/v), 0.1% amyloglucosidase (v/v) and 1% neutrase (v/v). MDF and fish tissue were subjected to in vitro digestion and results suggest that MDF may reduce mercury bioaccessibility from fish to 34% to 85% compared to control in a dose-dependent manner. Additionally, accumulation of mercury from digesta containing fish and MDF was only modestly impacted by the presence of MDF. In conclusion, MDF prepared from cassava pulp may be useful as an ingredient to reduce mercury bioavailability from food such as fish specifically by inhibiting mercury transfer to the bioaccessibile fraction during digestion.
机译:木薯果肉产生的改性膳食纤维(MDF)调节重金属的生物可及性和肠道吸收的能力可能有助于减轻与精选食品(包括精选的甲基汞含量高的鱼类)相关的健康风险。使用耦合的体外消化/ Caco-2人肠道细胞模型,研究了中密度纤维板对鱼类汞生物可及性和肠道吸收的降低。 MDF由木薯纸浆制成,木薯纸浆是木薯粉生产的副产品。通过用0.1%α-淀粉酶(w / v),0.1%淀粉葡糖苷酶(v / v)和1%中性酶(v / v)进行酶消化,可以得到最高产量(79.68%)的MDF。对中密度纤维板和鱼的组织进行了体外消化,结果表明,与对照相比,中密度纤维板可以使鱼类中汞的生物可吸收性降低至34%至85%。此外,含有鱼和中密度纤维板的食糜中汞的积累仅受中密度纤维板的影响。总之,由木薯纸浆制成的中密度纤维板可以用作降低食品(如鱼类)中汞生物利用度的成分,特别是通过抑制消化过程中汞向生物利用部分的转移而降低汞的生物利用度。

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