首页> 外文期刊>Biomedicine & pharmacotherapy =: Biomedecine & pharmacotherapie >The activity of Hou-Po-Da-Huang-Tang is improved through intestinal bacterial metabolism and Hou-Po-Da-Huang-Tang selectively stimulate the growth of intestinal bacteria associated with health
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The activity of Hou-Po-Da-Huang-Tang is improved through intestinal bacterial metabolism and Hou-Po-Da-Huang-Tang selectively stimulate the growth of intestinal bacteria associated with health

机译:通过肠道细菌新陈代谢和Hou-Po-da-Huang-ang改善了Hou-Po-da-Huang-ang的活性选择性地刺激与健康相关的肠道细菌的生长

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Graphical abstract Intestinal bacterial metabolism may play a key role in the biological activities of Hou-Po-Da-Huang-Tang. Display Omitted Abstract Hou-Po-Da-Huang Tang (HPDHT) was used for the treatment of intestinal tract diseases in China. However, the underlying mechanisms via the intestinal bacteria remain largely unclear. Therefore, the aim of this study was to evaluate the metabolism of HPDHT by the human intestinal bacteria and its modulating effect on the intestinal bacteria. As a result, a total of 34 compounds were identified in HPDHT and transformed HPDHT (T-HPDHT). Among them, 12 metabolites were proved to be transformed by human intestinal bacteria. In vitro assays showed that T-HPDHT exhibited more significant elevation of free radical scavenging activity and suppression on the production of nitric oxide (NO) and TNF-α when comparing to HPDHT. Additionally, in vivo experiment confirmed that HPDHT significantly increased activity of superoxide dismutase (SOD), attenuated the malondialdehyde (MDA) and TNF-α levels in the conventional rats compared with that of pseudo germ-free (PGF) rats. In addition, HPDHT could significantly enhance the mean counts of Bifidobacterium and Lactobacillus and inhibit the growth of Clostridium , and Enterobacteriaceae , relative to controls. Due to the transformation of HPDHT being dependent on the bacterial strain, the effect of HPDHT on the selective growth of Bifidobacterium bifidum 29521 and Lactobacillus plantarum 8014 was evaluated. The kinetic parameters of microbial growth and prebiotic activity scores indicated that HPDHT could selectively stimulate the growth of the strains Bifidobacterium bifidum 29521 and Lactobacillus plantarum 8014 . Taken together, metabolism of HPDHT by intestinal bacteria is a critical step towards the emergence of their anti-oxidation, anti-inflammation and prebiotic activities. This study provided valuable information for further pharmacological research on HPDHT. ]]>
机译:图形摘要肠道细菌新陈代谢可能在侯波大黄堂的生物学活动中发挥关键作用。展示省略摘要Hou-Po-da-Huang唐(HPDHT)用于治疗中国肠道疾病。然而,通过肠细菌的潜在机制仍然很大程度上不清楚。因此,本研究的目的是通过人肠细菌评估HPDHT的代谢及其对肠道细菌的调节作用。结果,总共34种化合物以HPDHT和转化的HPDHT(T-HPDH)鉴定。其中,证明了12种代谢物由人肠细菌转化。体外测定表明,T-HPDHT在比较HPDHT时,T-HPDHT对自由基清除活性的更显着的自由基清除活性和抑制产生一氧化氮(NO)和TNF-α的抑制。另外,在体内实验中证实,与伪无菌(PGF)大鼠相比,HPDHT显着增加了超氧化物歧化酶(SOD)的活性,减弱了常规大鼠中的丙二醛(MDA)和TNF-α水平。此外,HPDHT可以显着增强双歧杆菌和乳酸杆菌的平均值,并抑制相对于对照的梭菌和肠杆菌的生长。由于HPDHT的转化依赖于细菌菌株,评价HPDHT对双歧杆菌29521和乳酸杆菌植物杆菌8014的选择性生长的影响。微生物生长和益生元活性分数的动力学参数表明,HPDHT可以选择性地刺激菌株双歧杆菌29521和乳杆菌的生长和乳酸杆菌8014。连胜,HPDHT的代谢由肠道细菌是朝向抗氧化,抗炎和益生元活性出现的关键步骤。本研究为HPDHT提供了有价值的药理学研究。 ]]>

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