Oxidized LDL stimulates matrix metalloproteinase-1 expression in human vascular endothelial cells

Y Huang1, M Mironova, M F Lopes-Virella

  • 1Division of Endocrinology, Diabetes, and Medical Genetics, Department of Medicine, Medical University of South Carolina, and the Ralph H. Johnson Veterans Administration Medical Center, Charleston, SC 29403, USA.

Insights

Oxidized low-density lipoprotein (LDL) stimulates the release and transcription of matrix metalloproteinase-1 (MMP-1) in vascular endothelial cells. This suggests oxidized LDL may promote atherosclerotic plaque rupture by increasing MMP-1 expression.

Area of Science:

  • Cardiovascular Biology
  • Molecular Biology
  • Atherosclerosis Research

Background:

  • Acute myocardial infarction is linked to atherosclerotic plaque disruption.
  • Matrix metalloproteinase-1 (MMP-1) is present in plaques and degrades collagen, potentially destabilizing them.
  • Stimulatory factors for MMP-1 in endothelial cells remain largely undefined.

Purpose of the Study:

  • To investigate the role of oxidized low-density lipoprotein (LDL) in stimulating MMP-1 expression and activity in vascular endothelial cells.
  • To elucidate the mechanism by which oxidized LDL influences MMP-1 production.

Main Methods:

  • Utilized human umbilical vein and aortic endothelial cells.
  • Assessed MMP-1 release and expression via immunocytochemistry and mRNA analysis.
  • Investigated transcriptional regulation using actinomycin D.
  • Measured collagenase activity using zymography and activity assays.

Main Results:

  • Oxidized LDL significantly stimulated MMP-1 release and expression in endothelial cells.
  • A positive correlation was observed between the degree of LDL oxidation and MMP-1 mRNA levels.
  • Oxidized LDL enhanced nascent MMP-1 mRNA synthesis, indicating transcriptional activation.
  • Collagenase activity in conditioned medium was increased by oxidized LDL.

Conclusions:

  • Oxidized LDL is a potent stimulator of MMP-1 transcription and secretion in vascular endothelial cells.
  • This mechanism suggests oxidized LDL contributes to atherosclerotic plaque destabilization and rupture.
  • Findings highlight a novel pathway linking lipid oxidation to matrix degradation in atherosclerosis.

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