Intimal hyperplasia induced by vascular intervention causes lipoprotein retention and accelerated atherosclerosis
Siavash Kijani1, Ana Maria Vázquez2, Malin Levin1
1Department of Molecular and Clinical Medicine, Wallenberg Laboratory, Institute of Medicine, Sahlgrenska Academy at University of Gothenburg, Gothenburg, Sweden.
Insights
Vascular interventions accelerate atherosclerosis by promoting lipoprotein retention in intimal hyperplasia. Blocking lipoprotein-proteoglycan interactions in the vessel wall can inhibit this process, improving long-term outcomes.
Area of Science:
- Cardiovascular Research
- Vascular Biology
- Atherosclerosis Pathogenesis
Background:
- Accelerated atherosclerosis reduces the long-term success of vascular interventions like angioplasty and vein grafts.
- The underlying mechanisms driving this accelerated atherosclerosis remain incompletely understood.
Purpose of the Study:
- To investigate the hypothesis that intimal hyperplasia, a common response to vascular injury, promotes the retention of atherogenic lipoproteins.
- To elucidate the role of intimal hyperplasia in accelerating atherosclerosis post-intervention.
Main Methods:
- Surgically induced intimal hyperplasia in mouse common carotid arteries.
- Utilized various hypercholesterolemia mouse models to control cholesterol levels and onset.
- Employed immunostaining to detect apolipoprotein B (apoB) lipoproteins, smooth muscle cells, and leukocytes.
- Investigated the role of electrostatic interactions and proteoglycan glycosaminoglycans in lipoprotein retention.
Main Results:
- Pronounced apoB lipoprotein retention was observed in intimal hyperplasia and injured media at mild hypercholesterolemia (193 mg/dL).
- Minimal lipoprotein retention occurred in uninjured vessel regions or in normocholesterolemic mice (81 mg/dL).
- Aggravated hypercholesterolemia post-intimal hyperplasia formation led to rapid atherosclerotic lesion development.
- Lipoprotein retention was primarily mediated by electrostatic interactions with proteoglycan glycosaminoglycans and could be inhibited by specific antibodies.
Conclusions:
- Intimal hyperplasia formation renders the vessel wall highly susceptible to lipoprotein retention and accelerated atherosclerosis.
- Targeting the interaction between apoB lipoproteins and extracellular matrix glycosaminoglycans offers a potential therapeutic strategy to mitigate post-intervention atherosclerosis.
Abstract:
Accelerated atherosclerosis diminishes the long term patency of vascular interventions, such as percutaneous coronary intervention and implantation of saphenous vein grafts. However, the cause of this accelerated atherosclerosis is unclear. In this study, we tested the hypothesis that intimal hyperplasia formed following vascular intervention promotes retention of atherogenic lipoproteins. Intimal hyperplasia was surgically induced in the mouse common carotid artery. The surgery was combined with different mouse models of hypercholesterolemia to obtain different cholesterol levels and to control the onsets of hypercholesterolemia. Three weeks after surgery, samples were immunostained for apoB lipoproteins, smooth muscle cells and leukocytes. Already at mild hypercholesterolemia (193 mg/dL), pronounced apoB lipoprotein retention was found in the extracellular matrix in both intimal hyperplasia and the injured underlying media. In contrast, minimal retention was detected in the uninjured proximal region of the same vessel, or in vessels from mice with normal cholesterol levels (81 mg/dL). Induction of aggravated hypercholesterolemia 3 weeks after surgery, when a mature intimal hyperplasia had been formed, caused a very rapid development of atherosclerotic lesions. Mechanistically, we show that lipoprotein retention was almost exclusively dependent on electrostatic interactions to proteoglycan glycosaminoglycans, and the lipoprotein retention to intimal hyperplasia could be inhibited in vivo using glycosaminoglycan-binding antibodies. Thus, formation of intimal hyperplasia following vascular intervention makes the vessel wall highly susceptible for lipoprotein retention and accelerated atherosclerosis. The increased lipoprotein retention in intimal hyperplasia can be targeted by blocking the interaction between apoB lipoproteins and glycosaminoglycans in the extracellular matrix.
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