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Metabolism of stevioside and rebaudioside A from Stevia rebaudiana extracts by human microflora

机译:甜叶菊提取物中甜菊糖苷和莱鲍迪苷A的人体微生物代谢

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Stevia rebaudiana standardized extracts (SSEs) are used as natural sweeteners or dietary supplements in different countries for their content of stevioside or rebaudioside A. These compounds possess up to 250 times the sweetness intensity of sucrose, and they are noncaloric and noncariogenic sweeteners. The aim of this study was to investigate the in vitro transformation of stevioside and rebaudioside A after incubation with human microflora, the influence of these sweeteners on human microbial fecal community and which specific groups metabolize preferentially stevioside and rebaudioside A. The experiments were carried out under strict anaerobic conditions in batch cultures inoculated with mixed fecal bacteria from volunteers. The hydrolysis was monitored by HPLC coupled to photodiode array and mass spectrometric detectors. Isolated bacterial strains from fecal materials incubated in selective broths were added to stevioside and rebaudioside A. These sweeteners were completely hydrolyzed to their aglycon steviol in 10 and 24 h, respectively. Interestingly, the human intestinal microflora was not able to degrade steviol. Furthermore, stevioside and rebaudioside A did not significantly influence the composition of fecal cultures; among the selected intestinal groups, bacteroides were the most efficient in hydrolyzing Stevia sweeteners to steviol.
机译:甜叶菊甜叶菊标准化提取物(SSE)由于其甜菊糖苷或莱鲍迪苷A的含量在不同国家用作天然甜味剂或膳食补充剂。这些化合物的甜度高达蔗糖的250倍,并且是无热量和无致龋性的甜味剂。这项研究的目的是研究甜菊糖苷和莱鲍迪苷A与人菌群孵育后的体外转化,这些甜味剂对人粪便微生物群落的影响以及哪些特定基团优先代谢甜菊糖苷和莱鲍迪苷A。分批培养中严格的厌氧条件,接种了志愿者的混合粪便细菌。通过与光电二极管阵列和质谱检测器偶联的HPLC监测水解。在选择性肉汤中培养的粪便中分离出的细菌菌株被添加到甜菊糖苷和莱鲍迪苷A中。这些甜味剂分别在10和24小时内被完全水解为糖苷甜菊醇。有趣的是,人类肠道菌群不能降解甜菊醇。此外,甜菊糖苷和莱鲍迪苷A对粪便培养物的组成没有显着影响。在选定的肠类中,类细菌最有效地将甜叶菊甜味剂水解为甜菊醇。

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