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Updated: Oct 24, 2025

A Murine Model of Stent Implantation in the Carotid Artery for the Study of Restenosis
Published on: May 14, 2013
[Morphological and Molecular-Biological Changes in the Coronary Arteries after Stenting]
S S Todorov1, V J Deribas1, A S Kazmin1
1Rostov State Medical University of the Ministry of Health of Russia, Rostov-on-Don.
Insights
Coronary artery stenting can cause vascular wall damage, leading to thrombus formation, inflammation, and smooth muscle cell proliferation. Understanding these early changes is crucial for preventing restenosis and thrombosis after stenting.
Area of Science:
- Cardiovascular Biology
- Vascular Pathology
- Biomedical Engineering
Background:
- Coronary artery stenting is a common procedure to treat arterial blockages.
- Stenting can induce vascular wall damage, initiating a cascade of pathological responses.
- Understanding these responses is critical for improving long-term outcomes.
Purpose of the Study:
- To review the morphological and molecular changes in coronary arteries after stenting.
- To elucidate the role of specific factors like von Willebrand factor and TGF-β1.
- To identify gaps in knowledge regarding neoatherosclerosis and late thrombosis.
Main Methods:
- Literature review of morphological and molecular changes post-stenting.
- Analysis of pathological processes including thrombosis, inflammation, and cell proliferation.
- Discussion of experimental and autopsy data limitations.
Main Results:
- Stenting triggers thrombus formation, inflammation, smooth muscle cell migration, and extracellular matrix production.
- Von Willebrand factor plays a key role in early thrombosis and subsequent inflammation.
- Transforming growth factor-beta 1 (TGF-β1) overexpression drives smooth muscle cell modulation.
Conclusions:
- Early pathological mechanisms initiated by stenting can lead to coronary restenosis.
- Further research is needed on apoptosis, mTOR signaling, microRNA, and drug-coated stent dynamics.
- Studying dynamic morphological and molecular changes, including on autopsy material, is vital for assessing thrombosis and restenosis risk.
Abstract:
This review addresses morphological changes in coronary arteries following stenting, which result from damage to the vascular wall. These changes include 1) formation of a thrombus in the site of intimal injury; 2) inflammation; 3) proliferation and migration of smooth muscle cells; 4) formation of extracellular matrix. Each of these pathological processes has specific morpho-biological features. The review shows the role of von Willebrand factor in development of early thrombosis after intimal injury, which provokes activation of the inflammatory response followed by proliferation of smooth muscle cell that synthetize the extracellular matrix. These cellular and intercellular changes are based on overexpression of TGF-β1 protein, which facilitates modulation of various types of smooth muscle cells, including contractile and secretory ones. Issues of fine regulation of cellular and intercellular interactions by apoptosis, activation of mTOR signaling molecules, and microRNA are still understudied. Dynamic changes in drug-coated stents during development of neoatherosclerosis and late thrombosis remain not elucidated. Current reports show that initial mechanisms triggering pathological regenerative and hyperplastic processes that result in coronary restenosis in the area of implanted stents may form early (first hours or days) after stenting. Most studies were performed on experimental rather than on autopsy material, which does not allow fully unbiased interpretation of obtained data. Studying dynamics of morphological and molecular changes in coronary arteries after stenting, including on autopsy material, will allow one to express an opinion on the risk of postoperative thrombosis and restenosis.
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