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Prebiotics and the Unavailability of Minerals and Trace Elements

机译:益生元与矿物质和微量元素的缺乏

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Promising evidence exists for a stimulatory influence of prebiotic carbohydrates (non-digestible oligosaccharides (NDO) and lactulose) on the bioavailability of minerals and trace elements, although most information is available from rat experiments. Because the number of human studies is limited, additional research is needed, especially studies that focus on the long-term effects of prebiotics on bone metabolism. The hypothesized mechanisms suggest that prebiotics that result in a strong pH reduction, a pronounced osmotic effect, a stimulation of the exchange of protons, an increased level of butyrate and calbindin, and an enlarged surface area in the colon may be promising candidates for increasing the absorption of minerals and trace elements. Because the place of colonic fermentation seems to be of influence in these mechanisms, the use of mixtures of different types of prebiotics is of special interest. Probiotics are involved in most prebiotic-related mechanisms, possibly mediated in part by the production of poly-amines. Therefore, the combined use of pre- and probiotics may yield promising results. More detailed information on the present state-of-the-art concerning the effects of prebiotics on the bioavailability of minerals and trace elements in different life stages, discussed by study design and its underlying mechanisms, can be found in this review.
机译:尽管大多数信息可从大鼠实验中获得,但存在益生元碳水化合物(非消化性低聚糖(NDO)和乳果糖)对矿物质和微量元素生物利用度具有刺激性影响的有力证据。由于人体研究的数量有限,因此需要进行其他研究,尤其是关注益生元对骨骼代谢的长期影响的研究。假设的机制表明,导致pH值强烈降低,明显的渗透作用,刺激质子交换,丁酸和钙结合蛋白水平增加以及结肠表面积增大的益生元可能是增加细菌数量的有希望的候选者。吸收矿物质和微量元素。由于结肠发酵的场所似乎在这些机制中具有影响,因此特别需要使用不同类型的益生元的混合物。益生菌参与了大多数益生元相关的机制,可能部分由多胺的产生介导。因此,组合使用益生菌和益生菌可能会产生令人鼓舞的结果。通过研究设计及其潜在机制,可以找到有关益生元对生命各个阶段矿物质和微量元素生物利用度影响的最新技术的更详细信息。

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