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Flavonoid bioconversion in bifidobacterium pseudocatenulatum B7003: A potential probiotic strain for functional food development

机译:假双歧杆菌B7003中的类黄酮生物转化:功能性食品开发的潜在益生菌菌株

摘要

Flavonoids are plant derived compounds mainly present as O-glycosides. They are hydrolyzed by gut microbial enzymes to their aglycons, which represent the bioavailable and bioactive form. In this work the capability of a Bifidobacterium strain ( Bifidobacterium pseudocatenulatum B7003) of being used as a probiotic starter culture to obtain fermented legume milks with an increased concentration of flavonoids in their aglycone form was studied. B7003 strain can effectively bioconvert glycosylated flavonoids while fermenting soybean or common bean derived milks. Conversely, a strain used as negative control ( Bifidobacterium longum B7254) could grow on the milks but had low activity in flavonoid bioconversion. B7003 strain possesses basic safety properties, the capability of adhering to gut epithelial cells and showed resistance to simulated food processing conditions. Thus, B. pseudocatenulatum B7003 complies well with a new vision of probiotics, which, beside benefits deriving from gut transit, have additional functional properties, such as the high bioavailability of flavonoids in their aglycone form. © 2013 Elsevier Ltd.
机译:黄酮类化合物是植物衍生的化合物,主要以O-糖苷的形式存在。它们被肠道微生物酶水解为糖苷配基,代表了生物利用度和生物活性形式。在这项工作中,研究了将双歧杆菌菌株(假双歧杆菌B7003)用作益生菌发酵剂的能力,以获得发酵豆类奶粉的糖苷配基形式的黄酮类化合物浓度增加。 B7003菌株可以有效地生物转化糖基化的类黄酮,同时发酵大豆或普通豆类牛奶。相反,用作阴性对照的菌株(长双歧杆菌B7254)可以在牛奶上生长,但在类黄酮生物转化中活性较低。 B7003菌株具有基本的安全特性,具有粘附到肠上皮细胞的能力,并且对模拟食品加工条件具有抵抗力。因此,假单胞菌B7003很好地符合了益生菌的新视野,除了从肠道运输中获得的好处外,还具有其他功能特性,例如糖苷配基形式的类黄酮的高生物利用度。 ©2013爱思唯尔有限公司。

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