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首页> 外文期刊>Journal of the Science of Food and Agriculture >Commercial probiotic bacteria and prebiotic carbohydrates: a fundamental study on prebiotics uptake, antimicrobials production and inhibition of pathogens
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Commercial probiotic bacteria and prebiotic carbohydrates: a fundamental study on prebiotics uptake, antimicrobials production and inhibition of pathogens

机译:商业益生菌和益生元碳水化合物:关于益生元摄取,抗菌素产生和病原体抑制的基础研究

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BACKGROUND: Probiotics and prebiotics are among the most important functional food ingredients worldwide. The proven benefits of such ingredients to human health have encouraged the development of functional foods containing both probiotics and prebiotics. In this work, the production of antimicrobial compounds coupled to the uptake of commercial prebiotics by probiotic bacteria was investigated.RESULTS: The probiotic bacteria studied were able to take up commercial prebiotic carbohydrates to the same or higher extent than that observed for lactose (control carbohydrate). The growth of probiotic bacteria was coupled to the production of antimicrobials such as short-chain fatty acids (SCFA), H2O2 and bacteriocins. A higher production of antimicrobial compounds was recorded with Oligomate 55 (R) compared with Regulact (R) and Frutafit (R) (3-5 and 10-115 times higher SCFA and H2O2 production, respectively). The probiotic bacteria grown with Oligomate 55 (R) also produced bacteriocins and other non-identified antimicrobial compounds. The antimicrobials produced by the probiotic bacteria inhibited up to 50% the growth of model pathogens such as Escherichia coli, Listeria innocua and Micrococcus luteus compared with control cultures.CONCLUSIONS: The results here obtained are useful for the adequate selection of probiotic/prebiotics pairs and therefore in the development of efficient functional foods
机译:背景:益生菌和益生元是世界上最重要的功能性食品成分之一。此类成分对人体健康的已证明的益处已鼓励开发同时包含益生菌和益生元的功能性食品。在这项工作中,研究了与益生菌细菌吸收商业益生元有关的抗菌化合物的产生。结果:所研究的益生菌能够吸收与乳糖(对照碳水化合物)相同或更高水平的商业益生元碳水化合物。 )。益生菌的生长与诸如短链脂肪酸(SCFA),H2O2和细菌素等抗微生物剂的产生有关。与Regulact(R)和Frutafit(R)相比,Oligomate 55(R)记录的抗菌化合物产量更高(分别为SCFA和H2O2产量的3-5倍和10-115倍)。与Oligomate 55(R)一起生长的益生菌还产生细菌素和其他未鉴定的抗菌化合物。与对照培养相比,益生菌产生的抗菌剂最多可抑制50%的模型病原菌(如大肠杆菌,无病李斯特菌和黄褐微球菌)生长。结论:这里获得的结果可用于适当选择益生菌/益生元对和因此在开发高效功能食品中

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