4.7 Article

Metformin acts to suppress β-hydroxybutyric acid-mediated inflammatory responses through activation of AMPK signaling in bovine hepatocytes

Journal

JOURNAL OF ANIMAL SCIENCE
Volume 99, Issue 7, Pages -

Publisher

OXFORD UNIV PRESS INC
DOI: 10.1093/jas/skab153

Keywords

bovine hepatocytes; beta-hydroxybutyric acid; inflammation; AMPK signaling; NF-kappa B signaling

Funding

  1. National Natural Science Foundation of China [31872324]

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This study revealed that metformin attenuates BHBA-induced inflammation in bovine hepatocytes by inactivating NF-kappa B through the activation of AMPK signaling.
The occurrence of bovine ketosis involves the accumulation of beta-hydroxybutyric acid (BHBA), which contributes to the initiation and acceleration of hepatic metabolic stress and inflammation. Metformin has other beneficial effects apart from its medical intervention for diabetes, such as prevention of laminitis and hyper-triglyceridemic. AMPK maintains energy homeostasis and is the intracellular target of metformin action. This study aims to uncover the role of metformin in modulating BHBA-induced inflammatory responses through the activation of AMPK signaling. The hepatocytes were isolated from the liver tissue of mid-lactation multiparous Holstein cows (similar to 160 d postpartum). Treatments were conducted as follows: treated with PBS for 18 h (control); pretreated with PBS for 12 h followed by treatment of 1.2 mM BHBA for 6 h (BHBA); pretreated with 1.5 mM or 3 mM metformin for 12 h followed by the BHBA treatment (1.2 mM) for 6 h (M(1.5)+B; M(3)+B). The inhibitor of AMPK, Compound C, at a concentration of 10 mu M, was applied to substantiate the AMPK-dependent responses. RT-qPCR were applied for the mRNA expression while Western-blots and immunofluorescence were conducted for the target proteins expression. Among dose-dependent assays for BHBA, the concentration of BHBA at 1.2 mM activated NF-kappa B signaling by upregulating the expression of phosphorylated NF-kappa B and pro-inflammatory cytokines compared with the control cells (P < 0.05). Along with the upregulation of phosphorylated AMPK alpha and ACC alpha, metformin at 1.5 and 3 mM inactivated NF-kappa B signaling components (p65 and I kappa B alpha) and the inflammatory genes (TNFA, IL6, IL1B and COX-2) which were activated by BHBA. Additionally, BHBA inhibited cells staining intensity in EdU assay were increased by pretreatment with metformin. The activation of AMPK resulted in the increased gene and protein expression of SIRT1, along with the deacetylation of H3K9 and H3K14. However, the AMPK inhibitor compound C blocked this effect. Compared with BHBA treated cells, the protein expression of COX-2 and IL-1 beta were decreased by the pretreatment with metformin, and the inhibitory effect of metformin was released by compound C. The bound of NF-kappa B onto IL1B promoter displayed higher in BHBA group and this was suppressed by pretreatment with metformin (P < 0.05). Altogether, metformin attenuates the BHBA-induced inflammation through the inactivation of NF-kappa B as a target for AMPK/SIRT1 signaling in bovine hepatocytes.

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