A meprin inhibitor suppresses atherosclerotic plaque formation in ApoE-/- mice

Pan Gao1, Rui-wei Guo, Jian-fei Chen

  • 1Department of Cardiology, No 2 Hospital Affiliated to Third Military Medical University, Xinqiao Hospital, Chongqing 400037, China.

Atherosclerosis
|May 26, 2009
PubMed

Insights

Meprin inhibition using actinonin reduced atherosclerosis development in mice. This protective effect may stem from increased natriuretic peptides and reduced oxidative stress and apoptosis in blood vessels.

Area of Science:

  • Biochemistry
  • Cardiovascular Biology
  • Pharmacology

Background:

  • Meprin, a zinc metalloendopeptidase, degrades vasoactive peptides influencing arterial wall functions.
  • Atherosclerosis involves complex cellular changes in the arterial wall.

Purpose of the Study:

  • To investigate the impact of chronic meprin inhibition on atherosclerosis development in apolipoprotein E-deficient (ApoE(-/-)) mice.
  • To explore the therapeutic potential of meprin inhibition in preventing atherosclerosis.

Main Methods:

  • ApoE(-/-) mice were fed a Western-type diet and treated with actinonin (meprin inhibitor) or placebo for 6 weeks.
  • Body weight, hemodynamics, serum lipids, natriuretic peptide levels, plaque volume, lipid deposition, reactive oxygen species (ROS), and apoptosis were assessed.
  • In vitro studies used THP-1 cells and primary vascular smooth muscle cells (VSMC).

Main Results:

  • Meprin inhibition elevated plasma and vascular natriuretic peptide (NP) levels.
  • Actinonin treatment reduced atherosclerotic plaque volume and lipid deposition in carotid arteries.
  • Meprin inhibition decreased vascular ROS production and apoptosis, and enhanced NP function in vitro.

Conclusions:

  • Meprin inhibitor actinonin demonstrates a protective role against atherosclerosis in ApoE(-/-) mice.
  • Meprin inhibition may offer a therapeutic strategy for atherosclerosis prevention.
  • Suppression of natriuretic peptide degradation by meprin inhibition likely contributes to its anti-atherosclerotic effects.