Effect of Cudrania tricuspidata and Kaempferol in Endoplasmic Reticulum Stress-Induced Inflammation and Hepatic Insulin Resistance in HepG2 Cells

Nutrients. 2016 Jan 21;8(1):60. doi: 10.3390/nu8010060.

Abstract

In this study, we quantitated kaempferol in water extract from Cudrania tricuspidata leaves (CTL) and investigated its effects on endoplasmic reticulum (ER) stress-induced inflammation and insulin resistance in HepG2 cells. The concentration of kaempferol in the CTL was 5.07 ± 0.08 mg/g. The HepG2 cells were treated with 300 µg/mL of CTL, 500 µg/mL of CTL, 1.5 µg/mL of kaempferol or 2.5 µg/mL of kaempferol, followed immediately by stimulation with 100 nM of thapsigargin for ER stress induction for 24 h. There was a marked increase in the activation of the ER stress and inflammation response in the thapsigargin-stimulated control group. The CTL treatment interrupted the ER stress response and ER stress-induced inflammation. Kaempferol partially inhibited the ER stress response and inflammation. There was a significant increase in serine phosphorylation of insulin receptor substrate (IRS)-1 and the expression of C/EBPα and gluconeogenic genes in the thapsigargin-stimulated control group compared to the normal control. Both CTL and kaempferol suppressed serine phosphorylation of IRS-1, and the treatments did not interrupt the C/EBPα/gluconeogenic gene pathway. These results suggest that kaempferol might be the active compound of CTL and that it might protect against ER stress-induced inflammation and hyperglycemia.

Keywords: Cudrania tricuspidata; ER stress; inflammation; insulin resistance; obesity.

MeSH terms

  • CCAAT-Enhancer-Binding Protein-alpha / metabolism
  • Endoplasmic Reticulum Stress / drug effects
  • Hep G2 Cells
  • Humans
  • Inflammation / chemically induced
  • Inflammation / drug therapy*
  • Insulin Receptor Substrate Proteins / metabolism
  • Insulin Resistance*
  • Kaempferols / pharmacology*
  • Moraceae / chemistry*
  • Phosphorylation / drug effects
  • Plant Extracts / pharmacology*
  • Plant Leaves / chemistry
  • Serine / metabolism
  • Signal Transduction / drug effects
  • Thapsigargin
  • Water / pharmacology

Substances

  • CCAAT-Enhancer-Binding Protein-alpha
  • Insulin Receptor Substrate Proteins
  • Kaempferols
  • Plant Extracts
  • Water
  • Serine
  • Thapsigargin
  • kaempferol