Pharmacological strategies to inhibit intra-plaque angiogenesis in atherosclerosis
Paola Perrotta1, Besa Emini Veseli1, Bieke Van der Veken1
1Laboratory of Physiopharmacology, University of Antwerp, Belgium.
Insights
Targeting intra-plaque angiogenesis may stabilize vulnerable atherosclerotic plaques. This study explored pharmacological strategies to inhibit plaque neovascularization, offering new therapeutic avenues for cardiovascular disease.
Area of Science:
- Cardiovascular Research
- Vascular Biology
- Pharmacology
Background:
- Atherosclerosis, a leading cause of death, involves plaque rupture.
- Intra-plaque (IP) angiogenesis contributes to plaque instability.
- Lack of suitable animal models hindered research on plaque stabilization therapies.
Purpose of the Study:
- To investigate pharmacological inhibition of IP angiogenesis.
- To evaluate effects on plaque destabilization and atherogenesis.
- To explore novel therapeutic targets for atherosclerosis.
Main Methods:
- Utilized ApoE-/- Fbn1C1039G+/- mice, a model for vulnerable plaques.
- Investigated pharmacological inhibition of IP angiogenesis mechanisms.
- Discussed strategies targeting vascular endothelial growth factor, glycolysis, and fatty acid oxidation.
Main Results:
- Demonstrated the utility of a novel mouse model for studying vulnerable plaques.
- Identified potential pharmacological strategies to inhibit IP angiogenesis.
- Provided insights into mechanisms of plaque destabilization.
Conclusions:
- IP angiogenesis is a promising therapeutic target for plaque stabilization.
- Pharmacological inhibition of IP angiogenesis may reduce cardiovascular events.
- Future research could lead to novel treatments for atherosclerosis.
Abstract:
Atherosclerosis is a complex multifactorial disease that affects large and medium-sized arteries. Rupture of atherosclerotic plaques and subsequent acute cardiovascular complications remain a leading cause of death and morbidity in the Western world. There is a considerable difference in safety profile between a stable and a vulnerable, rupture-prone lesion. The need for plaque-stabilizing therapies is high, and for a long time the lack of a suitable animal model mimicking advanced human atherosclerotic plaques made it very difficult to make progress in this area. Evidence from human plaques indicates that intra-plaque (IP) angiogenesis promotes atherosclerosis and plaque destabilization. Although neovascularization has been widely investigated in cancer, studies on the pharmacological inhibition of this phenomenon in atherosclerosis are scarce, mainly due to the lack of an appropriate animal model. By using ApoE-/- Fbn1C1039G+/- mice, a novel model of vulnerable plaques, we were able to investigate the effect of pharmacological inhibition of various mechanisms of IP angiogenesis on plaque destabilization and atherogenesis. In the present review, we discuss the following potential pharmacological strategies to inhibit IP angiogenesis: (1) inhibition of vascular endothelial growth factor signalling, (2) inhibition of glycolytic flux, and (3) inhibition of fatty acid oxidation. On the long run, IP neovascularization might be applicable as a therapeutic target to induce plaque stabilization on top of lipid-lowering treatment.
Related Concept Videos
Feedback Inhibition
Atherosclerosis III: Management
Atherosclerosis I: Introduction
Mechanism of Angiogenesis
Atherosclerosis II: Clinical Manifestations and Diagnostic Tests
Atherosclerosis IV: Nursing Management


