肠道微生物群:通过与异黄酮相互作用降低京尼平苷肝毒性的潜在介导靶点

IF 10.1 1区 工程技术 Q1 ENGINEERING, MULTIDISCIPLINARY
Wen Yang , Wen Zhang , Xinhui Huang , Shuwen Geng , Yujia Zhai , Yuetong Jiang , Tian Tian , Yuye Gao , Jing He , Taohong Huang , Yunxia Li , Wenjing Zhang , Jun Wen , Jian-lin Wu , Guangji Wang , Tingting Zhou
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引用次数: 0

摘要

玄参苷是栀子中的主要活性鸢尾甙成分,被用于许多传统中医临床处方,但已证明其酮代谢物玄皮素可导致中药肝毒性。本研究探讨了肠道微生物群在用豆制品中的异黄酮减轻玄尼泊苷肝毒性中的作用。利用超高效液相色谱-四极杆飞行时间质谱(UHPLC-Q/TOF-MS)进行的代谢谱分析揭示了体内基尼泊苷的两种代谢途径和六种主要形式。酶抑制剂实验表明,在已建立的假绝育大鼠模型中,异黄酮通过介导特定的酶,包括β-葡萄糖苷酶(β-GC)和磺基转移酶(SULT),改变了基尼泊苷的代谢。通过灌胃对异黄酮进行为期三周的预处理,优化了肠道微生物群的结构,这与关键代谢酶的调节有关。此外,粪便微生物群移植(FMT)实验证实了肠道微生物群对酶活性和基尼泊苷代谢调节的直接贡献。这项研究表明,豆制品中的异黄酮能调节依赖于肠道微生物群(尤其是乳酸杆菌属)的吉尼泊苷代谢酶,这在我们使用 16S 核糖体 RNA(rRNA)和元基因组测序分析的临床试验中得到了进一步验证,从而调节了吉尼泊苷的代谢。此外,乳酸杆菌作为主要的有益细菌,被发现有望成为更好地控制吉尼哌类肝毒性的微生物靶标。这些发现为预防和干预药物引起的肝损伤提供了宝贵的见解。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Gut Microbiota, a Potential Mediated Target for Reducing Geniposide Hepatotoxicity by Interacting with Isoflavones

Gut Microbiota, a Potential Mediated Target for Reducing Geniposide Hepatotoxicity by Interacting with Isoflavones
Geniposide, the principal active iridoid glucoside ingredient in Fructus gardeniae used in numerous traditional Chinese clinical prescriptions, has been shown to cause herbal hepatotoxicity because of its glycone metabolite genipin. This study explored the role of gut microbiota in alleviating geniposide hepatotoxicity with isoflavones in soy products. Metabolic profiling using ultra high-performance liquid chromatography-quadrupole time-of-flight mass spectrometry (UHPLC-Q/TOF-MS) revealed two metabolic pathways and six main forms of geniposides in vivo. Enzyme inhibitor experiments have shown that isoflavones alter geniposide metabolism by mediating specific enzymes, including β-glucosidase (β-GC) and sulfotransferase (SULT), in an established pseudo-sterile rat model. Isoflavones pretreatment by gavage for three weeks optimized the structure of the gut microbiota was linked to the regulation of key metabolic enzymes. Furthermore, experiments involving fecal microbiota transplantation (FMT) established the direct contribution of the gut microbiota to the regulation of enzyme activities and geniposide metabolism. This study demonstrated that isoflavones in soy products regulated the metabolic enzymes of geniposode dependent on gut microbiota, especially Lactobacillus spp., which was further verified in our clinical trials analyzed using 16S ribosomal RNA (rRNA) and metagenomic sequencing, thus regulating geniposide metabolism. Furthermore, as dominant beneficial bacterium, Lactobacillus spp. were discovered to be promising microbial targets for the better management of geniposide hepatotoxicity. These findings provide valuable insights for the prevention and intervention of drug-induced liver injury.
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来源期刊
Engineering
Engineering Environmental Science-Environmental Engineering
自引率
1.60%
发文量
335
审稿时长
35 days
期刊介绍: Engineering, an international open-access journal initiated by the Chinese Academy of Engineering (CAE) in 2015, serves as a distinguished platform for disseminating cutting-edge advancements in engineering R&D, sharing major research outputs, and highlighting key achievements worldwide. The journal's objectives encompass reporting progress in engineering science, fostering discussions on hot topics, addressing areas of interest, challenges, and prospects in engineering development, while considering human and environmental well-being and ethics in engineering. It aims to inspire breakthroughs and innovations with profound economic and social significance, propelling them to advanced international standards and transforming them into a new productive force. Ultimately, this endeavor seeks to bring about positive changes globally, benefit humanity, and shape a new future.
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