Suppr超能文献

保元汤通过肠-心轴代谢途径对心脏的保护作用。

The cardiac protection of Baoyuan decoction via gut-heart axis metabolic pathway.

机构信息

State Key Laboratory of Natural and Biomimetic Drugs, School of Pharmaceutical Sciences, Peking University, Beijing 100191, China.

Waters Technologies Ltd., Shanghai 201203, China.

出版信息

Phytomedicine. 2020 Dec;79:153322. doi: 10.1016/j.phymed.2020.153322. Epub 2020 Sep 2.

Abstract

BACKGROUND

Gut-heart axis has emerged as a novel concept to provide new insights into the complex mechanisms of heart failure (HF) and offer new therapeutic targets. Cardiac hypertrophy (CH) is one of the etiological agents contributing to the development of HF. Baoyuan Decoction (BYD), a traditional Chinese medicine (TCM) formula, exhibits unambiguous effects on treating CH and preventing HF. Previously, we have reported that BYD-targeted endogenous metabolites are potentially linked to gut microbiota metabolism, but the contribution of gut microbiota and metabolic interaction to the cardioprotective efficacy of BYD remains to be elucidated.

PURPOSE

To investigate whether the gut microbiota plays a key role in anti-CH effects of BYD.

STUDY DESIGN

A comprehensive strategy via incorporating pharmacodynamics, microbiomics, metabolomics, and microflora suppression model was adopted to investigate the links between the microbiota-host metabolic interaction and BYD efficacy in CH rats.

METHOD

Firstly, the efficacy evaluation of BYD in treating chronic isoproterenol (ISO)-induced CH rats was performed by using multiple pharmacodynamic approaches. Then, the fecal metabolomics and 16S rRNA sequencing techniques were used to obtain the microbial and metabolic features of BYD against CH. After that, the potential gut-heart axis-based mechanism of BYD against CH was predicted by bioinformatic network analysis and validated by multiple molecular biology approaches. Finally, the antibiotics (AB)-induced gut microbiota suppression was employed to investigate whether the anti-CH effects of BYD is associated with the gut microflora.

RESULTS

The fecal microbial communities and metabolic compositions were significantly altered in ISO-induced CH rats, while BYD effectively ameliorated the CH-associated gut microbiota dysbiosis, especially of Firmicutes and Bacteroidetes, and time-dependently alleviated the disturbance of fecal metabolome and reversed the changes of key CH and gut microbiota-related metabolites, such as short/medium chain fatty acids, primary/secondary bile acids, and amino acids. The mechanism study showed that the anti-CH effect of BYD was related to inhibition of the derivatives of arginine and tryptophan and their downstream pro-hypertrophic, pro-inflammatory, and pro-oxidant signaling pathways. The following microflora suppression test showed that BYD-mediated myocardial protection was decreased either in pharmacodynamics or in metabolic modulation.

CONCLUSION

This study demonstrates that the protection of BYD against CH is partially gut microbiota dependent, and the regulatory effects of gut metabolism-related tryptophan and arginine derivatives is an important cardioprotection mechanism of BYD.

摘要

背景

肠道-心脏轴作为一个新概念出现,为心力衰竭(HF)的复杂机制提供了新的见解,并提供了新的治疗靶点。心肌肥厚(CH)是导致 HF 发展的病因之一。保元汤(BYD)是一种中药(TCM)配方,对治疗 CH 和预防 HF 具有明确的疗效。此前,我们已经报道过 BYD 靶向的内源性代谢物可能与肠道微生物代谢有关,但肠道微生物群和代谢相互作用对 BYD 的心脏保护作用的贡献仍有待阐明。

目的

研究肠道微生物群是否在 BYD 抗 CH 作用中起关键作用。

研究设计

采用综合策略,结合药效学、微生物组学、代谢组学和微生物抑制模型,研究了微生物群-宿主代谢相互作用与 CH 大鼠中 BYD 疗效之间的关系。

方法

首先,采用多种药效学方法评价 BYD 治疗慢性异丙肾上腺素(ISO)诱导的 CH 大鼠的疗效。然后,采用粪便代谢组学和 16S rRNA 测序技术获得 BYD 抗 CH 的微生物和代谢特征。之后,通过生物信息网络分析预测 BYD 抗 CH 的潜在肠道-心脏轴机制,并通过多种分子生物学方法进行验证。最后,采用抗生素(AB)抑制肠道微生物群,研究 BYD 的抗 CH 作用是否与肠道微生物群有关。

结果

ISO 诱导的 CH 大鼠粪便微生物群落和代谢组成发生显著改变,而 BYD 可有效改善 CH 相关的肠道微生物群失调,特别是厚壁菌门和拟杆菌门,并随时间缓解粪便代谢组的紊乱,逆转关键 CH 和肠道微生物群相关代谢物的变化,如短/中链脂肪酸、初级/次级胆汁酸和氨基酸。机制研究表明,BYD 的抗 CH 作用与抑制精氨酸和色氨酸的衍生物及其下游促肥大、促炎和促氧化信号通路有关。随后的微生物群抑制试验表明,无论是在药效学还是在代谢调节方面,BYD 介导的心肌保护作用均降低。

结论

本研究表明,BYD 对 CH 的保护部分依赖于肠道微生物群,肠道代谢相关色氨酸和精氨酸衍生物的调节作用是 BYD 心脏保护的重要机制。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验