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Chemical Composition and Bile Acid Binding Activity of Products Obtained from Amaranth (Amaranthus cruentus) Seeds

机译:A菜(Amaranthus cruentus)种子获得的产品的化学组成和胆汁酸结合活性

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Cardiovascular diseases are currently the greatest cause of mortality in the world, and dislipidemia is appearing as one of the most important risk factors. The binding of bile acids (BAs) has been hypothesized as a possible mechanism by which dietary fibers lower blood cholesterol levels. Besides the fibers, other components in the amaranth seeds may be related to this hypocholesterolemic effect. The objective of the present study was to evaluate the BA binding capacity of some products obtained from defatted amaranth flour (DAF) and from the amaranth protein concentrate (APC). The alkaline residue, rich in fibers (8.6%), presented the lowest binding activity for the BAs tested, with the exception of glycocholic acid. The DAF showed intermediary binding activity for all the BAs tested, although similar to that of the APC for deoxycholic acid, and to that of the amaranth protein hydrolysate (APH) for taurocholic acid. The DAF and APC showed binding activity for secondary bile acids toxic to the intestinal mucus. From the results, amaranth products were shown to have the ability to bind BAs, but it was not possible to affirm whether the main component responsible for this activity was the proteins, fibers or eventually some other non-evaluated component.
机译:当前,心血管疾病是世界上最大的死亡原因,而血脂异常似乎是最重要的危险因素之一。胆汁酸(BAs)的结合被认为是膳食纤维降低血液胆固醇水平的可能机制。除纤维外,mar菜种子中的其他成分可能与此降胆固醇作用有关。本研究的目的是评估脱脂a菜粉(DAF)和a菜浓缩蛋白(APC)获得的某些产品的BA结合能力。富含纤维(8.6%)的碱性残基,除糖胆酸外,对BAs的结合活性最低。 DAF对所有测试的BA显示出中间结合活性,尽管与APC的脱氧胆酸相似,与protein菜蛋白水解产物(APH)的牛磺胆酸相似。 DAF和APC对对肠粘液有毒的仲胆汁酸显示出结合活性。从结果可以看出,a菜产品具有结合BAs的能力,但无法确定引起这种活性的主要成分是蛋白质,纤维还是最终是其他未评估的成分。

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