Dietary flavonoids attenuate tumor necrosis factor alpha-induced adhesion molecule expression in human aortic

Silvina B Lotito1, Balz Frei

  • 1Linus Pauling Institute, Oregon State University, Corvallis, Oregon 97331, USA.

Insights

Dietary flavonoids inhibit inflammatory cell adhesion molecule expression through specific structural features, not antioxidant activity. Metabolism and concentration also impact their effectiveness in human aortic endothelial cells.

Area of Science:

  • Biochemistry
  • Molecular Biology
  • Nutritional Science

Background:

  • Flavonoids are plant compounds with suggested health benefits via antioxidant and anti-inflammatory pathways.
  • Cellular adhesion molecules play a role in inflammation and atherosclerosis.
  • Understanding how flavonoids impact these molecules is crucial for health research.

Purpose of the Study:

  • To investigate the mechanisms by which dietary flavonoids inhibit cellular adhesion molecule expression.
  • To determine the structural requirements of flavonoids for inhibiting adhesion molecule expression.
  • To assess the role of antioxidant activity and metabolic transformation in flavonoid efficacy.

Main Methods:

  • Utilized human aortic endothelial cells and cultured hepatocytes.
  • Assessed tumor necrosis factor alpha-induced adhesion molecule expression.
  • Analyzed structure-activity relationships and metabolic effects of various flavonoids.

Main Results:

  • Specific flavonoid structures, including 5,7-dihydroxyl A-ring and C-ring features, are essential for inhibiting adhesion molecule expression.
  • Antioxidant activity is not correlated with the inhibition of adhesion molecule expression.
  • Active flavonoids (e.g., apigenin, quercetin) attenuated E-selectin and intercellular adhesion molecule 1 expression at low concentrations.
  • Hepatocyte metabolism significantly reduced the inhibitory effects of apigenin and kaempferol.

Conclusions:

  • The inhibitory effect of dietary flavonoids on endothelial adhesion molecule expression is dependent on molecular structure, concentration, and metabolic transformation.
  • Antioxidant activity is not the primary mechanism for this inhibition.
  • Specific structural features dictate the anti-inflammatory potential of flavonoids in vascular cells.

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