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Quantification of Monocyte Transmigration and Foam Cell Formation from Individuals with Chronic Inflammatory Conditions
Published on: October 17, 2017
Increased circulating monocyte activation in patients with unstable coronary syndromes
C V Zalai1, M D Kolodziejczyk, L Pilarski
1John P. Robarts Research Institute, University of Western Ontario, London, Ontario, Canada.
Insights
Activated monocytes with increased invasive capacity were found in patients with unstable angina. This suggests systemic inflammation may drive plaque instability in coronary artery disease.
Area of Science:
- Cardiovascular Medicine
- Immunology
- Inflammation Research
Background:
- Systemic inflammation markers are elevated in unstable coronary syndromes.
- The specific activation state and invasive potential of monocytes in these patients remain under-assessed.
Purpose of the Study:
- To evaluate the activation status of circulating monocytes in patients experiencing unstable angina.
- To investigate the invasive capacity of monocytes in relation to coronary artery disease severity.
Main Methods:
- Assessed spontaneous monocyte migration rates using a modified Boyden chamber assay.
- Measured peripheral blood mononuclear cell (MC) membrane fluidity and soluble CD14 (sCD14) levels.
- Correlated MC membrane fluidity with sCD14 as a marker of cellular activation.
Main Results:
- Patients with unstable angina (CCS class IV) exhibited significantly higher spontaneous monocyte migration rates compared to controls, stable angina, and myocardial infarction patients.
- Increased MC membrane fluidity and elevated sCD14 levels were observed in unstable angina patients.
- A reduced MC response to activation stimuli was noted in the unstable angina group.
Conclusions:
- Activated monocytes with enhanced invasive capacity are present in the circulation of unstable angina patients.
- This study provides the first evidence of increased monocyte invasive potential in unstable coronary syndromes.
- Findings suggest that systemic inflammation may not only reflect but also actively contribute to plaque instability.
Objectives:
The primary objective of this research was to assess the activation level of circulating monocytes in patients with unstable angina.
Background:
Markers of systemic inflammatory responses are increased in patients with unstable coronary syndromes, but the activation state and invasive capacity of circulating monocytes have not been directly assessed.
Methods:
Peripheral blood mononuclear cell (MC) activation in blood samples isolated from patients with stable and unstable coronary artery disease was measured in two studies. In study 1, a modified Boyden chamber assay was used to assess spontaneous cellular migration rates. In study 2, optical analysis of MC membrane fluidity was correlated with soluble CD14 (sCD14), a cellular activation marker.
Results:
Increased rates of spontaneous monocyte migration (p < 0.01) were detected in patients with unstable angina (UA) (Canadian Cardiovascular Society [CCS] angina class IV) on comparison to patients with acute myocardial infarction (MI), stable angina (CCS angina classes I to III) or normal donors. No significant increase in lymphocyte migration was detected in any patient category. Baseline MC membrane fluidity measurements and sCD14 levels in patients with CCS class IV angina were significantly increased on comparison with MCs from normal volunteers (p < 0.001). A concomitant reduction in the MC response to activation was detected (p < 0.05).
Conclusions:
Using two complementary assays, activated monocytes with increased invasive capacity were detected in the circulation of patients with unstable angina. This is the first demonstration of increased monocyte invasive potential in unstable patients, raising the issue that systemic inflammation may both reflect and potentially drive plaque instability.
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