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The effect of simvastatin on progression of coronary artery disease. The Multicenter coronary Intervention Study
H P Bestehorn1, U F Rensing, H Roskamm
1Herz-Zentrum Bad Krozingen, Germany.
Insights
Higher doses of simvastatin (40 mg) significantly slow coronary artery disease progression in men with hypercholesterolemia. This lipid-lowering therapy reduces LDL cholesterol and demonstrates efficacy within a shorter treatment period compared to lower doses.
Area of Science:
- Cardiology
- Pharmacology
- Medical Research
Background:
- HMG-CoA reductase inhibitors, like simvastatin, have demonstrated benefits in managing coronary artery disease (CAD) progression.
- Previous studies with 20 mg simvastatin required up to 4 years to show significant CAD reduction.
- Higher simvastatin dosages may offer greater efficacy and faster results in treating CAD.
Purpose of the Study:
- To evaluate the efficacy of 40 mg simvastatin in slowing CAD progression in men with hypercholesterolemia.
- To compare the effects of 40 mg simvastatin versus placebo on angiographic measures of CAD.
- To determine the time interval required for higher-dose simvastatin to demonstrate treatment efficacy.
Main Methods:
- A multicenter, randomized, double-blind, placebo-controlled study (Coronary Intervention Study - CIS) involving 254 men.
- Patients received either 40 mg simvastatin or placebo after a lipid-lowering diet, for an average of 2.3 years.
- Primary endpoints included global change score (visual evaluation) and mean change in minimum lumen diameter (quantitative coronary angiography).
Main Results:
- Simvastatin treatment (mean 34.5 mg/day) resulted in a 35% decrease in LDL cholesterol compared to placebo.
- CAD progression was significantly slower in the simvastatin group (mean global change score +0.20) versus placebo (+0.58) (P=0.02).
- Quantitative analysis showed less lumen diameter loss in the simvastatin group (-0.02 mm) compared to placebo (-0.10 mm) (P=0.002).
Conclusions:
- Forty milligrams of simvastatin daily effectively reduces serum cholesterol and significantly slows coronary artery disease progression.
- The observed retardation of CAD progression is inversely correlated with achieved therapeutic LDL cholesterol levels.
- Higher-dose simvastatin demonstrates significant efficacy within a shorter treatment duration.
Background:
In several angiographic trials, HMG-CoA reductase inhibitors have shown a beneficial effect on the progression of coronary artery disease. Using 20 mg simvastatin, day-1, a treatment period of up to 4 years was necessary to show a significant reduction in coronary artery disease progression. The question remains however whether higher dosages of simvastatin would be more advantageous in respect to the magnitude of the effect and the required time interval to demonstrate treatment efficacy.
Methods And Results:
In the Coronary Intervention Study (CIS), a multicentre randomized double-blind placebo-controlled study, the effects of lipid-lowering therapy with simvastatin on progression of coronary artery disease in 254 men with documented coronary artery disease and hypercholesterolaemia were investigated. Following a period of lipid-lowering diet, treatment with 40 mg simvastatin or placebo was maintained for an average of 2.3 years. Two primary angiographic endpoints were chosen: the global change score (visual evaluation according to the method of Blankenhorn) and the per patient mean change of minimum lumen diameter (evaluated by the CAAS I system). The mean simvastatin dose was 34.5 mg day-1. In the placebo group, the serum lipids remained unchanged; in comparison to the placebo group the simvastatin group showed a 35% LDL-cholesterol decrease. Coronary angiography was repeated in 205 patients (81%) and 203 film pairs (80%,) were evaluable by quantitative coronary angiography. In the simvastatin and placebo groups, the mean global change scores were +0.20 and +0.58 respectively, demonstrating a significantly slower progression of coronary artery disease in the treatment group (P = 0.02). The change in minimum lumen diameter assessed by computer-assisted quantitative evaluation with the CAAS I system was -0.02 mm in the simvastatin group and -0.10 mm in the placebo group (P = 0.002). In the simvastatin group, there was a significant correlation between the LDL cholesterol levels achieved therapeutically and the per patient mean loss of minimum lumen diameter (r = 0.29; P = 0.003). During the study period, there was no significant difference in the incidence of serious cardiac events (15 of 129 patients in the simvastatin group and 19 of 125 patients in the placebo group, ns).
Conclusion:
Treatment with 40 mg simvastatin day-1 reduces serum cholesterol and slows the progression of coronary artery disease significantly within a short period of treatment time. In the treatment group, retardation of progression is inversely correlated to the LDL-cholesterol levels achieved.
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