Key result
Molecular imaging may predict acute MI risk by identifying plaque inflammation and inflammatory cell apoptosis.
Why the study?
Current clinical risk profiling algorithms have reasonable predictive value but face challenges in identifying patients with yearly risk beyond 2% for acute myocardial infarction.
Can molecular imaging of macrophage cell death improve the identification of vulnerable atherosclerotic plaques beyond traditional clinical risk profiling algorithms?
Can molecular imaging of macrophage cell death improve the identification of vulnerable atherosclerotic plaques beyond traditional clinical risk profiling algorithms?
Molecular imaging targeting macrophage apoptosis and inflammation offers a potential biological approach to identify vulnerable atherosclerotic plaques beyond traditional clinical risk scores.
May support research into molecular imaging for plaque vulnerability; leaves open prospective validation before any clinical adoption.
The ability to identify atherosclerotic plaques that are prone to rupture, also called vulnerable plaques, may provide a major step forward in the recognition of patients that have a high risk of developing acute myocardial infarction. Current clinical risk profiling algorithms, such as the Framingham and Procam risk scores, have reasonable predictive value in the assessment of the 10 year risk. These clinical risk profiling scores typically classify patients into low risk (10-year risk, less than 5%), intermediate risk (5% to 20% risk), and high risk (greater than 20%). The challenge to imagers is to identify the risk that is beyond 2% yearly risk. Molecular imaging may help identify plaque inflammation and apoptosis of inflammatory cells, which are obligatory components of the plaque instability. These processes offer specific biological targets that can potentially be exploited to obtain biological information on atherosclerosis development in the individual patient.
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Laufer et al. (2009) conducted a review in Atherosclerotic plaques / Plaque vulnerability. Molecular imaging was evaluated. Molecular imaging may help identify plaque inflammation and apoptosis of inflammatory cells to assess plaque vulnerability and predict acute myocardial infarction risk.
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