Abstract
New imaging methods are urgently needed to identify high-risk atherosclerotic lesions prior to the onset of myocardial infarction, stroke, and ischemic limbs. Molecular imaging offers a new approach to visualize key biological features that characterize high-risk plaques associated with cardiovascular events. While substantial progress has been realized in clinical molecular imaging of plaques in larger arterial vessels (carotid, aorta, iliac), there remains a compelling, unmet need to develop molecular imaging strategies targeted to high-risk plaques in human coronary arteries. We present recent developments in intravascular near-IR fluorescence catheter-based strategies for in vivo detection of plaque inflammation in coronary-sized arteries. In particular, the biological, light transmission, imaging agent, and engineering principles that underlie a new intravascular near-IR fluorescence sensing method are discussed. Intravascular near-IR fluorescence catheters appear highly translatable to the cardiac catheterization laboratory, and thus may offer a new in vivo method to detect high-risk coronary plaques and to assess novel atherosclerosis biologics.
MeSH Terms
Animals
Arteritis/pathology
Catheterization/instrumentation
Contrast Media
Coronary Artery Disease/pathology
Fluorescent Dyes
Humans
Phantoms, Imaging
Rabbits
Spectrometry, Fluorescence/instrumentation,methods
Spectroscopy, Near-Infrared/instrumentation,methods
Chemicals
Contrast Media
Fluorescent Dyes
Authors & Affiliations
4 authors, click to expand affiliations / ORCID
Calfon Marcella A
Massachusetts General Hospital, Cardiovascular Research Center and Cardiology Division, Boston, Massachusetts 02114, USA.
Vinegoni Claudio
Ntziachristos Vasilis
Jaffer Farouc A
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