4.6 Article

Cynaroside prevents macrophage polarization into pro-inflammatory phenotype and alleviates cecal ligation and puncture-induced liver injury by targeting PKM2/HIF-1α axis

期刊

FITOTERAPIA
卷 152, 期 -, 页码 -

出版社

ELSEVIER
DOI: 10.1016/j.fitote.2021.104922

关键词

PKM2; Sepsis; Macrophage polarization; Liver injury; HMGB1

资金

  1. National Natural Science Foundation of China [82074079]
  2. Natural Science Foundation of Zhejiang Province [LY19H280003]
  3. Opening Project of Key Laboratory of Integrative Chinese and Western Medicine for the Diagnosis and Treatment of Circulatory Diseases of Zhejiang Province [2C32005]
  4. Zhejiang science and technology innovation program for college students [2019R410039]
  5. Postgraduate Scientific Research Fund of Zhejiang Chinese Medical University [2020YKJ15]

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The study revealed that cynaroside can promote phenotypic transition of hepatic macrophages from M1 to M2, alleviating sepsis-induced liver inflammation. Results suggest that cynaroside has a novel role in modulating immunometabolic pathways through affecting pyruvate kinase M2-mediated glycolysis, which could be valuable in sepsis treatment.
The treatment of sepsis is still challenging and the liver is an important target of sepsis-related injury. Macrophages are important innate immune cells in liver, and modulation of macrophages M1/M2 polarization may be a promising strategy for septic liver injury treatment. Macrophage polarization and inflammation of liver tissue has been shown regulated by pyruvate kinase M2 (PKM2)-mediated aerobic glycolysis and immune inflammatory pathways. Therefore, modulating PKM2-mediated immunometabolic reprogramming presents a novel strategy for inflammation-associated diseases. In this study, cynaroside, a flavonoid compound, promoted macrophage phenotypic transition from pro-inflammatory M1 to anti-inflammatory M2, and mitigated sepsis-associated liver inflammatory damage. We established that cynaroside reduced binding of PKM2 to hypoxia-inducible factor-1 alpha (HIF-1 alpha) by abolishing translocation of PKM2 to the nucleus and promoting PKM2 tetramer formation, as well as suppressing phosphorylation of PKM2 at Y105 in vivo and in vitro. Moreover, cynaroside restored pyruvate kinase activity, inhibited glycolysis-related proteins including PFKFB3, HK2 and HIF-1 alpha, and inhibited glycolysisrelated hyperacetylation of HMGB1 in septic liver. Therefore, this study reports a novel function of cynaroside in hepatic macrophage polarization, and cecum ligation and puncture-induced liver injury in septic mice. The findings provide crucial information with regard to therapeutic efficacy of cynaroside in the treatment of sepsis.

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