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首页> 外文期刊>Journal de la Societe de biologie >The metabolic, nutritional and toxicological consequences of ingested dietary Maillard reaction products: a literature review.
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The metabolic, nutritional and toxicological consequences of ingested dietary Maillard reaction products: a literature review.

机译:摄入膳食美拉德反应产物的代谢,营养和毒理学后果:文献综述。

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摘要

The field of Maillard reaction in food has recently re-emerged. This reaction which takes place between carbohydrates and proteins at a high cooking temperatures and causes the formation of flavor and yellow to brown colors was already well documented. Little is known, however, about the formation of other Maillard reaction products (MRPs) which may be toxic: the so-called glycotoxins. It is well recognized that only 10% of these have been identified so far, and improved analytical methods are needed for the discovery of more of the neo-formed contaminants. Only a few studies as yet have focused on the digestion, metabolism and excretion of fructoselysine, carboxymethyllysine, pentosidine, acrylamide, the MRPs which have already been identified. MRPs have been shown to be present at significant amounts in a variety of industrially and domestically heat-treated foodstuffs but their absorption appears to be limited and they are readily excreted. Clinical studies indicate, none the less, that the typical Western diet, which contains a high MRPs content, may have an impact on human health. The main effects are observed on the glucose and lipid metabolisms, and on inflammatory mediators. However, the physiopathological role of the ingested MRPs has yet to be investigated in detail, so no conclusive recommendations can be given at present regarding their possible toxic effects.
机译:食品中的美拉德反应领域最近重新出现。在高温蒸煮温度下,碳水化合物和蛋白质之间发生的这种反应已经引起了人们的广泛关注,该反应导致形成风味,并形成黄色至棕色。然而,人们对其他可能有毒的美拉德反应产物(MRP)的形成知之甚少:所谓的糖毒素。公认的是,到目前为止,仅发现了其中的10%,并且需要改进的分析方法来发现更多的新形成的污染物。仅有少数研究集中在果糖赖氨酸,羧甲基赖氨酸,戊糖苷,丙烯酰胺,已经确定的MRP的消化,代谢和排泄上。已显示出MRP在各种工业和家庭热处理食品中的含量均很高,但它们的吸收似乎受到限制,并且很容易被排泄。尽管如此,临床研究表明,含有高MRPs含量的典型西方饮食可能会对人体健康产生影响。在葡萄糖和脂质代谢以及炎性介质上观察到了主要作用。但是,摄入的MRP的生理病理作用尚未进行详细研究,因此,目前尚无关于其可能的毒性作用的结论性建议。

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