PAC1 Agonist Maxadilan Reduces Atherosclerotic Lesions in Hypercholesterolemic ApoE-Deficient Mice

Lilli Mey1, Gabriel A Bonaterra1, Joy Hoffmann1

  • 1Department of Medical Cell Biology, Institute for Anatomy and Cell Biology, Medical Faculty, Philipps-University of Marburg, Robert-Koch-Str. 8, 35037 Marburg, Germany.

Insights

PACAP signaling via the PAC1 receptor may protect against atherosclerosis. The PAC1 agonist Maxadilan reduced plaque development and inflammation in mice, suggesting potential new treatments for cardiovascular disease.

Area of Science:

  • Cardiovascular Research
  • Immunology
  • Pharmacology

Background:

  • Atherosclerosis involves vascular inflammation and plaque buildup.
  • PACAP (pituitary adenylate cyclase-activating polypeptide) signaling through the PAC1 receptor is implicated in immune and vascular regulation.

Purpose of the Study:

  • To investigate the effects of the PAC1 receptor agonist Maxadilan and antagonist M65 on atherosclerosis development and vascular inflammation in ApoE-/- mice.

Main Methods:

  • ApoE-/- mice were fed a cholesterol-enriched diet (CED) or standard chow (SC) and treated with Maxadilan, M65, or Sham.
  • Analysis included atherosclerotic plaques, lumen stenosis, apoptosis (caspase-3), and inflammatory markers (TNF-α, IL-1β) in the brachiocephalic trunk.

Main Results:

  • Maxadilan treatment reduced plaque presence and lumen stenosis, irrespective of diet, compared to Sham or M65.
  • Maxadilan decreased TNF-α and caspase-3 positive areas, indicating reduced inflammation and apoptosis.
  • Despite hypercholesterolemia, Maxadilan showed atheroprotective effects, acting downstream of inflammation.

Conclusions:

  • PAC1 receptor agonism with Maxadilan demonstrates atheroprotective properties.
  • Maxadilan mitigates vascular inflammation and apoptosis, suggesting potential therapeutic applications for atherosclerosis beyond current treatments like statins and PCSK9 inhibitors.