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Exploring the molecular mechanism of notoginsenoside R1 in sepsis-induced cardiomyopathy based on network pharmacology and experiments validation

Affiliation
Faculty of Life Science and Technology ,Kunming University of Science and Technology ,Kunming ,China
Shao, Ruifei;
Affiliation
Yan’an Hospital Affiliated to Kunming Medical University ,Kunming ,China
Li, Wei;
Affiliation
Yan’an Hospital Affiliated to Kunming Medical University ,Kunming ,China
Chen, Rui;
Affiliation
Yan’an Hospital Affiliated to Kunming Medical University ,Kunming ,China
Li, Kunlin;
Affiliation
Department of Cardiovascular Surgery ,The First Peoples’ Hospital of Yunnan Province ,Kunming ,China
Cao, Yu;
Affiliation
Department of Emergency Medicine ,The First People’s Hospital of Yunnan Province ,Kunming ,China
Chen, Guobing;
Affiliation
Yunnan Key Laboratory of Innovative Application of Traditional Chinese Medicine ,Department of Cardiovascular Surgery ,The First People’s Hospital of Yunnan Province ,The Affiliated Hospital of Kunming University of Science and Technology ,Kunming ,China
Jiang, Lihong

Sepsis-induced cardiomyopathy (SIC) is an important manifestation of sepsis, and abnormal cardiac function affects the development of sepsis. Notoginsenoside R1 (NG-R1) is a unique bioactive component of Panax notoginseng with anti-inflammatory and antioxidant effects. However, the effects and possible mechanisms of NG-R1 on SIC are not clear. The purpose of this study was to identify the potential targets and regulatory mechanisms of the action of NG-R1 on SIC. To investigate the potential mechanism, we used network pharmacology, molecular docking, qRT-PCR, and immunofluorescence. The results showed that NG-R1 ameliorated myocardial fibrosis in septic mice. Validation of network pharmacology and molecular docking results revealed that NG-R1 reduced tumor necrosis factor-Alpha (TNF-α) expression in myocardial tissues and AC16 cardiomyocytes in mice, as well as inflammatory factor release in AC16 cells, so TNF-α may be a potential target of NG-R1 against SIC. The present study demonstrated that NG-R1 could protect against SIC and by regulating the expression of TNF-α inflammatory factors, providing a new idea for sepsis drug development.

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License Holder: Copyright © 2023 Shao, Li, Chen, Li, Cao, Chen and Jiang.

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