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Long-Term Exposure to High Low-Density Lipoprotein Cholesterol Levels and Clinical Course in Secondary Prevention
Ichiro Matsumoto1, Kagari Mukaida1, Kensaku Wada1
1Cardiovascular Center, KKR Takamatsu Hospital Kagawa Japan.
Insights
High running average of low-density lipoprotein cholesterol (LDL-C) after percutaneous coronary intervention (PCI) predicts cardiovascular events. Managing LDL-C using the running average may help prevent future cardiovascular disease.
Area of Science:
- Cardiology
- Vascular Medicine
- Preventive Cardiology
Background:
- Elevated low-density lipoprotein cholesterol (LDL-C) is linked to arteriosclerosis.
- Percutaneous coronary intervention (PCI) is a common procedure for coronary artery disease.
Purpose of the Study:
- To determine if the running average of LDL-C (Ra-LDL-C) after PCI predicts subsequent cardiovascular events.
- To assess the association between Ra-LDL-C levels and major adverse cardiovascular events (MACE).
Main Methods:
- Retrospective analysis of 1,761 patients who underwent successful PCI.
- Calculation of Ra-LDL-C by averaging consecutive LDL-C measurements over up to 10 years post-PCI.
- Stratification of patients into three groups based on Ra-LDL-C: <70, 70-100, and ≥100 mg/dL.
Main Results:
- Kaplan-Meier analysis showed significantly lower MACE incidence in the Ra-LDL-C <70 mg/dL group.
- Multivariate analysis confirmed a significant correlation between Ra-LDL-C and MACE incidence.
- MACE incidence was lower in patients with Ra-LDL-C below their 3-month post-PCI LDL-C values.
Conclusions:
- High Ra-LDL-C is a predictor of recurrent MACE after PCI.
- Long-term LDL-C management guided by Ra-LDL-C may aid in cardiovascular disease prevention.
Background:
Prolonged exposure to high low-density lipoprotein cholesterol (LDL-C) levels may be associated with arteriosclerosis progression. This study investigated whether the running average of LDL-C (Ra-LDL-C) measured after percutaneous coronary intervention (PCI) was associated with the occurrence of subsequent cardiovascular events.
Methods And Results:
The clinical records of 1,761 patients who underwent successful PCI were examined retrospectively. Ra-LDL-C values were calculated by adding consecutive LDL-C values and averaging them. Based on the Ra-LDL-C over an observation period of up to 10 years after PCI, patients were divided into 3 groups: Ra-LDL-C <70, 70-100, and ≥100 mg/dL. The incidence of major adverse cardiovascular events (MACE; defined as coronary-related death, myocardial infarction, and new coronary stenosis of non-culprit lesions) was investigated in these groups. Kaplan-Meier analysis demonstrated that the incidence of MACE was significantly lower in the Ra-LDL-C <70 mg/dL group than in the other 2 groups. Multivariate analysis indicated that the Ra-LDL-C was significantly correlated with the incidence of MACE. Furthermore, the incidence of MACE was significantly lower among patients with Ra-LDL-C values lower than LDL-C values 3 months after PCI.
Conclusions:
High Ra-LDL-C values are a predictor of increased recurrence of MACE after PCI, and long-term management of LDL-C using Ra-LDL-C values may be useful for preventing cardiovascular disease.
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