Postoperative Stress Accelerates Atherosclerosis through Inflammatory Remodeling of the HDL Proteome and Impaired

Dominique M Boucher1,2, Valerie Rochon1,2, Thomas Laval1,2

  • 1Department of Biochemistry, Microbiology and Immunology, University of Ottawa, 451 Smyth Rd., Ottawa, ON, K1H 8M5, Canada.

Insights

Surgery-induced inflammation impairs reverse cholesterol transport (RCT) and destabilizes atherosclerotic plaques by affecting HDL function. Restoring apolipoprotein A-I (apoA-I) during surgery may mitigate this risk.

Area of Science:

  • Cardiovascular Biology
  • Atherosclerosis Research
  • Surgical Inflammation

Background:

  • Millions of non-cardiac surgery patients face cardiovascular complications.
  • Atherosclerotic plaque destabilization is a key concern.
  • Reverse cholesterol transport (RCT) is vital for plaque stability, but surgical inflammation's impact is unclear.

Purpose of the Study:

  • To investigate how surgical inflammation affects RCT and atherosclerotic plaque stability.
  • To determine the impact on HDL function and cholesterol efflux capacity.
  • To explore potential therapeutic interventions.

Main Methods:

  • Developed a low-blood-loss abdominal laparotomy model in apoE-/- mice.
  • Assessed cholesterol efflux capacity, HDL proteomic profiles, and plaque characteristics (lipids, PLIN2, c-Casp-3).
  • Utilized a novel dual-cell-type in vivo RCT model and tested recombinant apoA-I (rApoA-I) therapy.

Main Results:

  • Surgery reduced RCT and cholesterol efflux capacity for at least 48 hours.
  • Plaques showed increased lipids, PLIN2, and apoptosis, leading to necrotic core expansion.
  • Surgical inflammation specifically impaired RCT from macrophage-derived foam cells, not VSMC-derived foam cells.
  • Postoperative patient plasma showed reduced cholesterol efflux capacity; rApoA-I partially restored RCT in mice.

Conclusions:

  • Surgical inflammation acutely impairs HDL function and RCT, promoting plaque destabilization.
  • This occurs independently of blood loss and affects foam cell apoptosis.
  • Targeted apoA-I restoration during surgery could reduce postoperative cardiovascular risk.
Abstract

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