Formyl Peptide Receptor 2 Alleviates Hepatic Fibrosis in Liver Cirrhosis by Vascular Remodeling

Int J Mol Sci. 2021 Feb 20;22(4):2107. doi: 10.3390/ijms22042107.

Abstract

Hexapeptide WKYMVm (Trp-Lys-Tyr-Met-Val-D-Met), a ligand of formyl peptide receptor 2, exhibits anti-inflammatory and angiogenic properties in disease models. However, the therapeutic effects of WKYMVm on hepatic fibrosis have not been evaluated to date. Therefore, we investigated whether WKYMVm exerts antifibrotic effects and induces vascular regeneration in a rat model of bile duct ligation (BDL). The antifibrotic and angiogenic effects of WKYMVm on liver regeneration in the BDL rat model were analyzed using biochemical assays, qRT-PCR, western blotting, immunofluorescence, and immunohistochemistry. To determine the effects of WKYMVm on hepatic fibrosis and angiogenesis in vitro, we measured the expression levels of fibrotic factors in hepatic stellate cells (HSCs) and angiogenic factors in human umbilical vein endothelial cells (HUVECs). WKYMVm attenuated the expression of collagen type I (Col I) and α-smooth muscle actin (α-SMA) and significantly increased the levels of angiogenetic factors in the BDL model (p < 0.05). WKYMVm reduced fibrotic marker expression in transforming growth factor (TGF)-β-induced HSCs and promoted angiogenic activity through tube formation in 5-Fluorouracil (FU)-treated HUVECs (p < 0.05). Also, WKYMVm administration enhanced hepatocyte proliferation in BDL rats (p < 0.05). The WKYMVm alleviates hepatic fibrosis by inhibiting HSC activation and promotes hepatic regeneration via vascular remodeling. These data suggest that the WKYMVm may be a new therapeutic agent for liver fibrosis.

Keywords: WKYMVm; angiogenesis; fibrosis; liver cirrhosis; regeneration.

MeSH terms

  • Animals
  • Bile Ducts / drug effects
  • Bile Ducts / pathology
  • Bile Ducts / physiopathology
  • Disease Models, Animal
  • Hepatic Stellate Cells / drug effects
  • Hepatic Stellate Cells / metabolism
  • Hepatic Stellate Cells / pathology
  • Human Umbilical Vein Endothelial Cells / metabolism
  • Humans
  • Ligation
  • Liver / blood supply
  • Liver / drug effects
  • Liver / pathology
  • Liver / physiopathology
  • Liver Cirrhosis / pathology
  • Liver Cirrhosis / physiopathology*
  • Liver Regeneration / drug effects
  • Male
  • Neovascularization, Physiologic / drug effects
  • Oligopeptides / pharmacology
  • Rats
  • Rats, Sprague-Dawley
  • Receptors, Lipoxin / metabolism*
  • Transforming Growth Factor beta / metabolism
  • Vascular Remodeling* / drug effects

Substances

  • Oligopeptides
  • Receptors, Lipoxin
  • Transforming Growth Factor beta
  • Trp-Lys-Tyr-Met-Val-Met
  • lipoxin A(4) receptor, rat