首页> 外文期刊>Biological & pharmaceutical bulletin >Effects of glycyrrhizin and glycyrrhetic acid on the growth, glycyrrhizin beta-D-glucuronidase and 3 beta-hydroxysteroid dehydrogenase of human intestinal bacteria.
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Effects of glycyrrhizin and glycyrrhetic acid on the growth, glycyrrhizin beta-D-glucuronidase and 3 beta-hydroxysteroid dehydrogenase of human intestinal bacteria.

机译:甘草甜素和甘草次酸对人肠道细菌的生长,甘草甜素β-D-葡萄糖醛酸苷酶和3β-羟类固醇脱氢酶的影响。

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摘要

The peak of glycyrrhizin (GL) beta-D-glucuronidase activity for Ruminococcus sp. PO1-3 and Eubacterium sp. GLH changed to 24 h from 12 h of culture and to 12 h from 48 h, respectively, at almost the same level by the addition of 1.0 mM GL. This enzyme activity was about 20-fold higher in Eubacterium sp. GLH than in Ruminococcus sp. PO1-3. GL beta-D-glucuronidase activity of Ruminococcus sp. PO1-3 with Eubacterium sp. GLH and the intestinal flora showed a maximal peak at 12 h of culture in the presence and absence of 1.0 mM GL. This enzyme activity was about 2.5-fold higher in mixed bacteria than in intestinal flora. 3Beta-hydrosteroid dehydrogenase activity of Ruminococcus sp. PO1-3 and Ruminococcus sp. PO1-3 with Eubacterium sp. GLH was suppressed greater in the presence of GL than without GL. Also, Ruminococcus sp. PO1-3, Eubacterium sp. GLH, and a mixture of both and intestinal flora, metabolized 1.0 mM GL to glycyrrhetic acid (GA) in yields of about 10, 70, 40 and 100%, respectively, with 24 h culture. From the level of GL beta-D-glucuronidase activity, it is considered that the metabolism of GL by intestinal flora is due to both enzymatic and non-enzymatic reactions. Moreover, GA at a concentration of 1.0 mM suppressed growth of Ruminococcus sp. PO1-3, Eubacterium sp. GLH, and the mixture of both and intestinal flora, which metabolized 1.0 mM GA to a negligible amount of 3-oxo-glycyrrhetic acid, indicating the accumulation of unchanged GA. GL beta-D-glucuronidase activity of intestinal flora was enhanced by GA, which stimulated bacteria possessing particular this characteristic.
机译:甘草甜素(GL)β-D-葡萄糖醛酸苷酶对Ruminococcus sp。的峰值。 PO1-3和真细菌通过添加1.0 mM GL,GLH从培养12 h变为24 h,从48 h变为12 h,几乎处于相同水平。该酶活性在真细菌属中大约高20倍。 GLH比Ruminococcus sp。 PO1-3。鲁米诺球菌的GLβ-D-葡萄糖醛酸酶活性。 PO1-3与真细菌在存在和不存在1.0 mM GL的情况下,GLH和肠道菌群在培养12 h时显示最大峰。在混合细菌中,该酶活性比在肠道菌群中高约2.5倍。鲁米诺球菌的3β-氢类固醇脱氢酶活性。 PO1-3和Ruminococcus sp。 PO1-3与真细菌有GL的情况下GLH的抑制作用比无GL时更大。此外,Ruminococcus sp。 PO1-3,真细菌属。 GLH以及肠道菌群和肠道菌群的混合物在培养24小时后,分别将1.0 mM GL代谢成甘草次酸(GA),产率分别约为10%,70%,40%和100%。从GLβ-D-葡糖醛酸糖苷酶活性的水平来看,认为肠道菌群对GL的代谢是由于酶促反应和非酶促反应。此外,浓度为1.0 mM的GA抑制了Ruminococcus sp。的生长。 PO1-3,真细菌属。 GLH,以及肠道菌群和肠道菌群的混合物,它们将1.0 mM的GA代谢为可忽略不计的3-氧代甘草酸,表明未积累的GA的积累。 GA增强了肠道菌群的GLβ-D-葡萄糖醛酸苷酶活性,从而刺激了具有此特征的细菌。

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