Dengzhanshengmai capsule alleviates heart failure and concomitantly decreases phenylacetylglutamine level, interacting with the intestinal microflora in rats

Author:

Yi Bojiao12,Zhang Pin12,Chen Jiemei3,Fang Zhengyu1,Yang Xiaofang1,Yang Dawei4,Zang Qingce5,Xu Jing6,Ren Tianying4,Yang Hongjun1,Guo Na1ORCID

Affiliation:

1. Experimental Research Center China Academy of Chinese Medical Sciences Beijing China

2. School of Pharmacy Shenyang Pharmaceutical University Shenyang China

3. Department of Pharmacy The First Affiliated Hospital of Guangxi Medical University Nanning China

4. Zhong Yuan Academy of Biological Medicine Liaocheng People's Hospital Liaocheng China

5. State Key Laboratory of Bioactive Substance and Function of Natural Medicines, Institute of Materia Medica Chinese Academy of Medical Sciences and Peking Union Medical College Beijing China

6. Institute of Chinese Materia Medica China Academy of Chinese Medical Sciences Beijing China

Abstract

AbstractHeart failure (HF) is an advanced stage of most heart diseases. Some studies reported that Dengzhanshengmai (DZSM) capsule may improve HF, but its mechanisms are unclear. This study attempts to determine the function of DZSM in treating HF and investigates its potential mechanism. We demonstrated that DZSM can considerably reduce systemic inflammation, improve intestinal barrier functions and enhance cardiac functions in HF rats. Further investigations displayed that the beneficial effects of DZSM were related to the reduction of gut microbiota metabolite phenylacetylglutamine (PAGln) levels in serum and heart tissue. In addition, we demonstrated that PAGln can exacerbate the severity of HF in rats, and the serum PAGln levels in HF patients were higher than in healthy subjects. Moreover, by using microbial sequencing, we found that DZSM could alter the composition and function of the intestinal microbiota in HF rats, including decreased relative abundance of Turicibacter and Turicibacter_sp.TS3, and regulated the gene expression of PAGln synthesis‐related enzymes. Therefore, our findings have contributed novel perspectives on the involvement of DZSM in treating HF, specifically in its regulation of intestinal flora and associated detrimental metabolites. Furthermore, our results have offered empirical evidence supporting the utilization of DZSM as a therapeutic approach for HF.

Funder

National Natural Science Foundation of China

Publisher

Wiley

Subject

Applied Microbiology and Biotechnology,Biochemistry,Bioengineering,Biotechnology

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