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Published on: January 28, 2020
[THE CLINICAL LABORATORY MARKERS OF ATHEROSCLEROSIS IN PATIENTS WITH ATHEROTHROMBOTIC STROKE]
Insights
Biomarkers like asymmetric dimethylarginine (ADMA) and highly sensitive C-reactive protein (hsCRP) can help identify stroke risk in patients with carotid stenosis. These markers, along with pregnancy-associated plasma protein-A (PAPP-A), aid in personalized stroke diagnostics.
Area of Science:
- Biochemistry
- Neurology
- Cardiovascular Medicine
Background:
- Laboratory biomarkers significantly influence treatment decisions for patients with atherosclerotic carotid stenosis and high stroke risk.
- Currently, established laboratory criteria for identifying significant internal carotid artery atherosclerotic disease are lacking.
- Accurate risk stratification is crucial for managing patients with carotid stenosis and preventing stroke.
Purpose of the Study:
- To evaluate the informativeness of various atherosclerosis biomarkers for a clinical molecular expertise system aimed at determining stroke risk in patients with significant carotid stenosis.
- To identify reliable laboratory markers that can aid in the personalized diagnosis of stroke causes.
Main Methods:
- Cross-sectional study comparing patients with 50-90% internal carotid artery stenosis (acute stroke/TIA group and stable stenosis group) and healthy volunteers.
- Serum biomarker analysis (LP-PLA2, PAPP-A, LP(a), ADMA, hsCRP, lipid profile) via ELISA.
- Duplex ultrasound scanning of brachiocephalic arteries.
- Statistical analysis using Mann-Whitney and Kruskal-Wallis tests, and Data Mining techniques.
Main Results:
- Serum levels of asymmetric dimethylarginine (ADMA) and highly sensitive C-reactive protein (hsCRP) were significantly higher in patients during the acute phase of ischemic stroke compared to stable stenosis patients and healthy controls (p < 0.05).
- No statistically significant differences were observed in serum concentrations of pregnancy-associated plasma protein-A (PAPP-A), lipoprotein-associated phospholipase A2 (LP-PLA2), and lipoprotein (a) (LP(a)) among the three groups.
- ADMA and hsCRP levels significantly increase during the acute phase of atherothrombotic stroke.
Conclusions:
- Asymmetric dimethylarginine (ADMA), highly sensitive C-reactive protein (hsCRP), and pregnancy-associated plasma protein-A (PAPP-A) show promise for inclusion in a clinical molecular panel for personalized stroke diagnostics.
- Integrating ADMA, hsCRP, and PAPP-A levels with clinical and anamnestic data can enhance the diagnostic accuracy for determining stroke causes.
- These biomarkers can aid in refining treatment strategies for patients with carotid stenosis and high stroke risk.
Abstract:
The laboratory biomarkers can effect on choice of tactics of treatment in patients with atherosclerotic stenosis ofcarotids and high risk of stroke. However, nowadays there is no established laboratory criteria of significant atherosclerotic affection of internal carotid. The purpose of study was to investigate informativeness of biomarkers of atherosclerosis in clinical molecuIar panel of expertise system of determining risk of stroke in patients with significant stenosis of carotid. The study included patients with 50-90% atherosclerotic stenosis of internal carotid in acute period of atherothrombotic stroke or transitory ischemic attack (group 1), patients with stable 50-90% atherosclerotic stenosis of inner carotid having no vascular events during 30 days before engaging into study (group II) and group of healthy volunteers without atherosclerosis of inner carotid. The examination of patients included anamnesis collection, evaluation of neurological status, analysis of serum level of biomarkers of atherosclerosis (lipoprotein-associatedphospholipase A2 (LP-PL A2), serum protein A associated with pregnancy (PA PP-A), lipoprotein (a) (LP(a)), asymmetric dimethylarginine (ADMA), C-reactive protein detected by highly sensitive technique (hsCRP) and lipid spectrum of blood) using enzyme-linked immunosorbent assay, duplex ultrasound scanning of brachiocephalic arteries. The stroke risk factors of other etiology were chosen as exclusion criteria except atherothrombotic one. The Mann-Whitney and Kruskal-Wallis tests were applied to establish group differences. The Data Mining techniques were applied to establish patterns of analyzing sample. Out of 356 examined patients, 30 patients of group 1, 51 patients of group II and 16 healthy volunteers were included in the study. All patients were comparable by gender and age (50-80 years). The serum level of hsCRP and ADMA in the group of patients of acutest period of ischemic stroke was significantly higher than in groups of patients with stable stenosis and healthy volunteers (p < 0.05). The comparison between three groups established no statistically significant differences in serum concentration of PAPP-A, LP-PL A2 and LP(a). The ADMA, hsCRP and PAPP-A can be recommended for including into clinical molecular panel for personalized diagnostic of causes of stroke along with clinical anamnestic data. The serum level of ADMA and hsCRP significantly increases in acute period of atherothrombotic stroke. The analysis of levels of ADMA, hsCR and PPAPP-A interpreted with regard to clinical anamnestic data can be proposed for enhancing quality of diagnostic of causes of stroke.
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