MR imaging of the arterial vessel wall: molecular imaging from bench to bedside
Marcus R Makowski1, René M Botnar
1Division of Imaging Sciences, BHF Centre of Excellence, Wellcome Trust and EPSRC Medical Engineering Center, and NIHR Biomedical Research Centre, King's College London, 4th Floor, Lambeth Wing, St Thomas Hospital, London SE1 7EH, England.
Insights
Magnetic resonance (MR) imaging offers advanced characterization of atherosclerotic plaque. Molecular MR imaging shows promise for visualizing vulnerable plaques at a molecular level, improving cardiovascular disease assessment.
Area of Science:
- Cardiovascular Imaging
- Molecular Imaging
- Biomedical Engineering
Background:
- Cardiovascular diseases are a leading cause of death globally.
- Current imaging methods for atherosclerotic lesions are limited to assessing luminal stenosis, failing to distinguish stable from vulnerable plaques.
- Magnetic resonance (MR) imaging provides high spatial resolution and soft-tissue contrast for arterial vessel wall visualization.
Purpose of the Study:
- To review pathophysiologic changes in atherosclerosis.
- To introduce principles of molecular MR imaging contrast agents.
- To discuss advances in preclinical molecular vessel wall imaging and clinical feasibility.
Main Methods:
- Review of pathophysiologic changes in atherosclerosis.
- Introduction to molecular MR imaging contrast agent principles.
- Review of preclinical molecular vessel wall imaging advancements.
- Discussion of clinical feasibility of unenhanced and contrast-enhanced MR imaging for aortic, carotid, and coronary vessel walls.
Main Results:
- Unenhanced and contrast-enhanced MR imaging can differentiate and characterize atherosclerotic plaque components in the carotid artery and aorta.
- Targeted MR contrast agents enable molecular-level visualization of pathologic processes.
- Recent advances show promise in preclinical molecular vessel wall imaging.
Conclusions:
- MR imaging is well-suited for characterizing arterial vessel walls and atherosclerotic plaques.
- Molecular MR imaging holds potential for visualizing vulnerable plaques at a molecular level.
- Further clinical studies are needed to assess the feasibility of advanced MR techniques for cardiovascular disease management.
Abstract:
Cardiovascular diseases remain the leading cause of morbidity and mortality in the Western world and developing countries. In clinical practice, in vivo characterization of atherosclerotic lesions causing myocardial infarction, ischemic stroke, and other complications remains challenging. Imaging methods, limited to the assessment luminal stenosis, are the current reference standard for the assessment of clinically significant coronary and carotid artery disease and the guidance of treatment. These techniques do not allow distinction between stable and potentially vulnerable atherosclerotic plaque. Magnetic resonance (MR) imaging is a modality well suited for visualization and characterization of the relatively thin arterial vessel wall, because it allows imaging with high spatial resolution and excellent soft-tissue contrast. In clinical practice, atherosclerotic plaque components of the carotid artery and aorta may be differentiated and characterized by using unenhanced vessel wall MR imaging. Additional information can be gained by using clinically approved nonspecific contrast agents. With the advent of targeted MR contrast agents, which enhance specific molecules or cells, pathologic processes can be visualized at a molecular level with high spatial resolution. In this article, the pathophysiologic changes of the arterial vessel wall underlying the development of atherosclerosis will be first reviewed. Then basic principles and properties of molecular MR imaging contrast agents will be introduced. Additionally, recent advances in preclinical molecular vessel wall imaging will be reviewed. Finally, the clinical feasibility of arterial vessel wall imaging at unenhanced and contrast material-enhanced MR imaging of the aortic, carotid, and coronary vessel wall will be discussed.
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