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Published on: February 20, 2019
Effect of intensive atorvastatin therapy on coronary atherosclerosis progression, composition, arterial remodeling,
Parham Eshtehardi1, Michael C McDaniel, Saurabh S Dhawan
1Interventional Cardiology, Emory University School of Medicine, 1365 Clifton Road, Suite F606, Atlanta, GA 30322, USA.
Insights
High-dose atorvastatin altered coronary atheroma composition and plaque phenotype in Western patients with moderate coronary artery disease (CAD). The study observed modest improvements in coronary microvascular function but no significant change in atheroma volume.
Area of Science:
- Cardiology
- Vascular Biology
- Pharmacology
Background:
- Statins effectively reduce adverse cardiovascular events but show modest effects on atheroma regression.
- A discrepancy exists between the clinical benefits of statins and their impact on atherosclerotic plaque volume.
- This study investigated the effects of high-dose atorvastatin on coronary atheroma in a Western population.
Purpose of the Study:
- To determine if high-dose atorvastatin (80 mg) alters coronary atheroma composition and phenotype.
- To assess the impact of high-dose atorvastatin on coronary microvascular function.
- To evaluate serial remodeling patterns in response to high-dose atorvastatin therapy.
Main Methods:
- Twenty patients with moderate coronary artery disease (CAD) received 80 mg of atorvastatin for 6 months.
- Serial coronary radiofrequency intravascular ultrasound (VH-IVUS) was used to assess plaque composition and phenotype.
- Coronary flow reserve (CFR) and hyperemic microvascular resistance (HMR) were measured to evaluate microvascular function.
Main Results:
- A significant decrease in total serum cholesterol was observed.
- Percent atheroma volume did not change significantly; however, plaque composition shifted towards more fibroatheromas and less pathological intimal thickening.
- Trends indicated decreased fibrous and fibro-fatty tissue, with increases in necrotic core and dense calcium, suggesting plaque stabilization.
- Modest, non-significant improvements in CFR and HMR were noted.
Conclusions:
- High-dose atorvastatin significantly altered coronary atheroma composition and plaque phenotype in Western patients with moderate CAD.
- The study suggests a potential for plaque stabilization, despite no significant change in overall atheroma volume.
- Modest improvements in coronary microvascular function were observed, warranting further investigation.
Background:
There is a discrepancy between the marked reduction in adverse events with statins and their modest effect on atheroma regression. We hypothesized that, in a Western population, high-dose atorvastatin will result in alterations in coronary atheroma composition, phenotype, and microvascular function.
Methods:
Serial coronary radiofrequency intravascular ultrasound (VH-IVUS), coronary flow reserve (CFR), and hyperemic microvascular resistance (HMR) were performed at baseline and after 6 months of treatment with 80 mg atorvastatin in 20 patients with moderate coronary artery disease (CAD). For each VH-IVUS frame (n = 2249), changes in total plaque atheroma, composition, and phenotype (pathological intimal thickening, fibrotic plaque, fibroatheroma), and serial remodeling were assessed.
Results:
Total serum cholesterol decreased from 186.0 mg/dL (interquartile range [IQR], 168.0 to 212.5 mg/dL) to 139.0 mg/dL (IQR, 124.3 to 151.3 mg/dL). Percent atheroma volume did not change significantly (-0.5% [IQR, -2.8% to 3.7%]; P=.90) and serial remodeling analysis demonstrated 40% constrictive, 24% incomplete, and 36% expansive patterns. There was a trend toward lower percent fibrous tissue (-3.47 ± 1.78%; P=.07) and percent fibro-fatty tissue (-2.52 ± 1.24%; P=.06) and increase in percent necrotic core (+2.74 ± 1.65%; P=.11) and percent dense calcium (+1.99 ± 0.81; P=.02), which translated into significantly less pathological intimal thickening (4% vs 12%; P<.0001) and more fibroatheromas (67% vs 57%; P<.0001) at follow-up compared to baseline. There were modest non-significant improvements in CFR (+0.26 [IQR, -0.37 to 0.76]; P=.23) and HMR (-0.22 [IQR, -0.56 to 0.28]; P=.12).
Conclusions:
In this pilot study of Western patients with moderate CAD, high-dose atorvastatin resulted in alterations in coronary atheroma composition with corresponding changes in plaque phenotype and modest improvement in coronary microvascular function.
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