Interaction of effective ingredients from traditional Chinese medicines with intestinal microbiota

微生态学 菌群(微生物学) 中医药 肠道菌群 免疫系统 生物 肠道菌群 微生物学 传统医学 细菌 医学 免疫学 遗传学 替代医学 病理
作者
Xianpeng Zu,Lin Zhang,Haisheng Xie,Niao Yang,Xinru Liu,Weidong Zhang
出处
期刊:China journal of Chinese materia medica [Chinese Pharmaceutical Association]
被引量:12
标识
DOI:10.4268/cjcmm20161002
摘要

A large number and wide varieties of microorganisms colonize in the human gastrointestinal tract. They construct an intestinal microecological system in the intestinal environment. The intestinal symbiotic flora regulates a series of life actions, including digestion and absorption of nutrient, immune response, biological antagonism, and is closely associated with the occurrence and development of many diseases. Therefore, it is greatly essential for the host's health status to maintain the equilibrium of intestinal microecological environment. After effective compositions of traditional Chinese medicines are metabolized or biotransformed by human intestinal bacteria, their metabolites can be absorbed more easily, and can even decrease or increase toxicity and then exhibit significant different biological effects. Meanwhile, traditional Chinese medicines can also regulate the composition of the intestinal flora and protect the function of intestinal mucosal barrier to restore the homeostasis of intestinal microecology. The relevant literatures in recent 15 years about the interactive relationship between traditional Chinese medicines and gut microbiota have been collected in this review, in order to study the classification of gut microflora, the relationship between intestinal dysbacteriosis and diseases, the important roles of gut microflora in intestinal bacterial metabolism in effective ingredients of traditional Chinese medicines and bioactivities, as well as the modulation effects of Chinese medicine on intestinal dysbacteriosis. In addition, it also makes a future prospect for the research strategies to study the mechanism of action of traditional Chinese medicines based on multi-omics techniques.

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