MicrobiotaLab, Department of Pharmacognosy and Molecular Basis of Phytotherapy, Centre for Preclinical Studies, Medical University of Warsaw, Warsaw, Poland.
Institute of Animal Nutrition, Freie Universität Berlin, Berlin, Germany.
Planta Med. 2022 Mar;88(3-04):254-261. doi: 10.1055/a-1647-2866. Epub 2021 Oct 8.
Urinary tract infections influence the mortality rate in pigs and are linked to extensive antibiotic usage in the farm industry. (L.) Maxim. and (Blume) Miq. are widespread medicinal plants traditionally used to treat urinary tract disorders. As their preparations are orally administered, the metabolism of their constituents by gut microbiota before absorption should be considered. Until now, no experiments had been performed to describe the biotransformation of tthose plants' extracts by animal gut microbiota. The study evaluates the influence of pig intestinal microbiota on the structure of active compounds in flowers of and leaves of . The incubations of the extracts with piglet gut microbiota were performed in anaerobic conditions, and the samples of the batch culture were collected for 24 h. In , the main metabolites were quercetin and kaempferol, which were products of the deglycosylation of flavonoids. After 24 h incubation of extract with the piglet gut microbiota, 2 main metabolites were observed. One, tentatively identified as 3-(3-dihydroxyphenyl)propionic acid, is likely the primary metabolite of the most abundant depsides and phenolic acids. The results confirm the formation of the compounds with anti-inflammatory and diuretic activity in the microbiota cultures, which might suggest and for treating urinary tract disorders in piglets. Based on the similarities of human and pig gut microbiota, the pig model can help estimate the metabolic pathways of natural products in humans.
尿路感染会影响猪的死亡率,并且与农场产业中抗生素的广泛使用有关。(L.) Maxim. 和 (Blume) Miq. 是广泛用于治疗尿路感染的传统药用植物。由于它们的制剂是口服给药的,因此应该考虑肠道微生物群在吸收前对其成分的代谢。到目前为止,还没有进行实验来描述这些植物提取物被动物肠道微生物群转化的情况。本研究评估了猪肠道微生物群对 和 的花和叶的活性化合物结构的影响。在厌氧条件下,将提取物与仔猪肠道微生物群进行孵育,并在 24 小时内收集分批培养物的样品。在 中,主要代谢产物是槲皮素和山柰酚,它们是黄酮类化合物糖苷化的产物。在仔猪肠道微生物群孵育 提取物 24 小时后,观察到 2 种主要代谢产物。一种,推测为 3-(3-二羟基苯基)丙酸,可能是最丰富的联苯和酚酸的初级代谢产物。研究结果证实了在微生物群培养物中形成具有抗炎和利尿活性的化合物,这可能表明 和 可用于治疗仔猪的尿路感染。基于人类和猪肠道微生物群的相似性,猪模型可以帮助估计天然产物在人类中的代谢途径。