Key result
Statin-induced changes in OxLDL fail to correlate with coronary plaque regression over 18 months.
Why the study?
The relationship between oxidized LDL biomarkers, statin therapy, and atheroma volume in humans is not known.
Does statin therapy affect circulating biomarkers of oxidized LDL, and do these changes predict changes in atheroma volume?
RCT (n=214)
Does statin therapy affect circulating biomarkers of oxidized LDL, and do these changes predict changes in atheroma volume?
While statin therapy significantly alters circulating biomarkers of oxidized LDL, these biomarker changes do not predict changes in coronary atheroma volume or angiographic parameters.
OBJECTIVES: This study was designed to test the hypothesis that circulating biomarkers of oxidized low-density lipoprotein (OxLDL) are affected by statin therapy and predict changes in atheroma volume. BACKGROUND: Oxidative stress is thought to play an important role in atherogenesis but the relationship between OxLDL, statin therapy, and atheroma volume in humans is not known. METHODS: In a subgroup of 214 patients from the REVERSAL (Reversal of Atherosclerosis with Aggressive Lipid Lowering) trial, oxidized phospholipids (OxPL) and malondialdehyde (MDA) epitopes per apolipoprotein B-100 (apoB), immunoglobin (Ig) G and IgM apoB immune complexes, and OxLDL autoantibodies were measured at baseline and after 18 months of treatment with atorvastatin or pravastatin. Relationships between changes of OxLDL biomarkers and quantitative coronary angiography (QCA), total atheroma volume, and percentage atheroma volume were analyzed. RESULTS: There were no differences in QCA parameters or atheroma volume in the 2 groups at baseline. Compared with baseline values, OxPL/apoB and MDA/apoB, and lipoprotein (a) levels increased 21% to 48% (p < 0.001 for all) in response to atorvastatin and 17% to 39% (p < 0.001 for all) in response to pravastatin. In contrast, IgG apoB immune complexes, IgM apoB immune complexes, and IgM OxLDL autoantibodies were significantly reduced by both atorvastatin and pravastatin (p value range 0.003 to <0.001). There were no significant differences between the atorvastatin and pravastatin groups. In the entire cohort, there were no correlations between changes in any OxLDL biomarkers and changes in QCA parameters or atheroma volume. CONCLUSIONS: Statin therapy results in significant increases in OxPL/apoB, MDA/apoB, and lipoprotein (a) levels and decreases in apoB immune complexes and OxLDL autoantibodies. However, these measures did not correlate with changes in QCA parameters or atheroma volume.
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Choi et al. (2008) conducted an RCT in Atherosclerosis (n=214). Atorvastatin or Pravastatin vs. Baseline was evaluated on Correlation between changes in OxLDL biomarkers and changes in quantitative coronary angiography (QCA) parameters or atheroma volume. Statin therapy significantly altered OxLDL biomarkers, but these changes did not correlate with changes in quantitative coronary angiography parameters or atheroma volume over 18 months.
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