[Association of lipoprotein (a) with ischemic stroke and stenotic carotid atherosclerosis]
N A Tmoyan1, M V Ezhov1, O I Afanasieva1
1National Medical Research Center of Cardiology, Moscow, Russia.
Insights
Elevated Lipoprotein(a) [Lp(a)] levels are linked to a higher risk of ischemic stroke and carotid artery atherosclerosis. This study confirms Lp(a) as a significant risk factor in these conditions.
Area of Science:
- Cardiovascular Medicine
- Neurology
- Genetics
Background:
- Lipoprotein(a) [Lp(a)] is a genetically determined risk factor for coronary heart disease.
- The role of Lp(a) in the development of ischemic stroke remains controversial.
- Understanding Lp(a)'s association with atherothrombotic events is crucial for risk stratification.
Purpose of the Study:
- To investigate the association between elevated Lp(a) levels and atherothrombotic ischemic stroke.
- To examine the relationship between Lp(a) and stenotic (≥50%) atherosclerosis of carotid arteries.
- To clarify the controversial role of Lp(a) in ischemic stroke pathogenesis.
Main Methods:
- A study involving 490 patients, including those with ischemic stroke, isolated carotid atherosclerosis, and a control group.
- Serum levels of Lp(a) and lipids were measured in all participants.
- Logistic regression analysis was used to adjust for various risk factors including age, sex, hypertension, diabetes, and smoking.
Main Results:
- Significantly higher Lp(a) concentrations were observed in patients with ischemic stroke and carotid atherosclerosis compared to controls.
- Hyperlipoproteinemia(a) (Lp(a) ≥30 mg/dl) was more frequent in stroke and carotid atherosclerosis groups (43%, 40%) vs. control (22%).
- Hyperlipoproteinemia(a) was associated with a 2.7-fold increased odds of ischemic stroke and a 2.3-fold increased odds of carotid atherosclerosis.
Conclusions:
- Elevated Lp(a) levels are significantly associated with both ischemic stroke and isolated stenotic atherosclerosis of the carotid arteries.
- In patients with carotid atherosclerosis, higher Lp(a) concentrations were found in those who also experienced ischemic stroke.
- Lp(a) is confirmed as an independent risk factor for atherothrombotic ischemic stroke and carotid artery disease.
Introduction:
Lipoprotein(a) [Lp(a)] is a genetically determined risk factor of coronary heart disease and its complications. Meanwhile data about the role of Lp(a) in development of ischemic stroke are controversial.
Aim:
To investigate the association of Lp(a) with atherothrombotic ischemic stroke and stenotic (≥50%) atherosclerosis of carotid arteries.
Material And Methods:
The study included 490 patients (mean age 60 years, 53% male). The first group comprised 157 patients with ischemic stroke, the second group 68 patients with isolated stenotic atherosclerosis of carotid arteries, but without significant lesion of coronary and low limbs arteries. The control group included 265 patients without stroke, myocardial infarction, stenotic atherosclerosis of coronary, carotid and low limbs arteries according to instrumental examinations. The levels of Lp(a) and lipids were measured in blood serum of all patients.
Results:
Lp(a) concentration was significantly higher in patients of the first and second groups in comparison with the control group (median [interquartile range]): 24 [9; 48], 20 [8; 55] vs 13 [5; 27] mg/dl, respectively (p<0,05 in both cases). Hyperlipoproteinemia(a) (Lp(a) ≥30 mg/dl) was more frequent in the group with stroke, stenotic atherosclerosis of carotid arteries, than in the control group: 43%, 40% vs 22% (p<0.01 in all cases). In patients with hyperlipoproteinemia(a), odds ratio (OR) for ischemic stroke was 2.7 (95% confidence interval (CI) 1.7-4.1), and OR for stenotic atherosclerosis of carotid arteries was 2.3 (95% CI 1.3-4.0) compared to the patients with Lp(a) level <30 mg/dl (p<0.01 in both cases). In logistic regression analysis adjusted for age, sex, hypertension, type 2 diabetes, smoking and Lp(a) concentration, the hyperlipoproteinemia(a) was associated with ischemic stroke and isolated stenotic carotid atherosclerosis. In the group with severe carotid atherosclerosis, 16 patients (24%) had ischemic stroke. Lp(a) concentration in these patients was higher 36 [20; 59] mg/dl, than in the patients with isolated carotid atherosclerosis without stroke 15 [7; 54] mg/dl (p=0.04). Other risk factors of atherosclerosis did not differ in patients with or without ischemic stroke.
Conclusion:
The study shows the association of elevated level of Lp(a) with ischemic stroke and isolated stenotic atherosclerosis of carotid arteries. In the presence of isolated stenotic carotid atherosclerosis, the median of Lp(a) concentration was significantly higher in patients with ischemic stroke than in patients without stroke.
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