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Monocyte Subsets and Related Chemokines in Carotid Artery Stenosis and Ischemic Stroke
Gerrit M Grosse1, Walter J Schulz-Schaeffer2, Omke E Teebken3
1Department of Neurology, Hannover Medical School, 30625 Hannover, Germany. grosse.gerrit@mh-hannover.de.
Insights
Monocyte subsets, like intermediate monocytes (Mon2), were elevated in carotid stenosis (CS) patients and correlated with stroke risk. However, they did not reliably predict vulnerable plaques, limiting their use as clinical biomarkers for CS plaque vulnerability.
Area of Science:
- Cardiovascular Research
- Immunology
- Neurology
Background:
- Carotid stenosis (CS) is a significant cause of ischemic stroke.
- Identifying vulnerable carotid plaques remains a challenge.
- Monocyte subsets are implicated in atherosclerosis and plaque rupture.
Purpose of the Study:
- To investigate monocyte subsets and chemokines as biomarkers for carotid stenosis (CS) plaque vulnerability.
- To assess the role of monocyte subsets in symptomatic and asymptomatic CS.
Main Methods:
- Quantitative flow cytometry to measure peripheral blood monocyte subsets.
- Histological analysis of plaque specimens.
- Measurement of plasma monocyte chemotactic protein 1 (MCP-1) and fractalkine levels.
- Quantification of cardiovascular risk using the Essen Stroke Risk Score (ESRS).
Main Results:
- Intermediate monocytes (Mon2) were elevated in CS patients compared to controls.
- Mon2 counts positively correlated with the Essen Stroke Risk Score (ESRS).
- Monocyte chemotactic protein 1 (MCP-1) levels were higher in symptomatic CS patients.
Conclusions:
- Monocyte subsets show potential involvement in CS pathology but have limited usability as clinical markers for plaque vulnerability due to multifactorial influences.
- Further research is needed to understand the precise role of monocyte subsets in CS plaque rupture.
Abstract:
Carotid stenosis (CS) is an important cause of ischemic stroke. However, reliable markers for the purpose of identification of high-risk, so-called vulnerable carotid plaques, are still lacking. Monocyte subsets are crucial players in atherosclerosis and might also contribute to plaque rupture. In this study we, therefore, aimed to investigate the potential role of monocyte subsets and associated chemokines as clinical biomarkers for vulnerability of CS. Patients with symptomatic and asymptomatic CS (n = 21), patients with cardioembolic ischemic strokes (n = 11), and controls without any cardiovascular disorder (n = 11) were examined. Cardiovascular risk was quantified using the Essen Stroke Risk Score (ESRS). Monocyte subsets in peripheral blood were measured by quantitative flow cytometry. Plaque specimens were histologically analyzed. Furthermore, plasma levels of monocyte chemotactic protein 1 (MCP-1) and fractalkine were measured. Intermediate monocytes (Mon2) were significantly elevated in symptomatic and asymptomatic CS-patients compared to controls. Mon2 counts positively correlated with the ESRS. Moreover, stroke patients showed an elevation of Mon2 compared to controls, independent of the ESRS. MCP-1 levels were significantly higher in patients with symptomatic than in those with asymptomatic CS. Several histological criteria significantly differed between symptomatic and asymptomatic plaques. However, there was no association of monocyte subsets or chemokines with histological features of plaque vulnerability. Due to the multifactorial influence on monocyte subsets, the usability as clinical markers for plaque vulnerability seems to be limited. However, monocyte subsets may be critically involved in the pathology of CS.
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