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Association of Low Ficolin-Lectin Pathway Parameters with Cardiac Syndrome X
Z Horváth1,2, D Csuka3, K Vargova2
1Research Group for Inflammation Biology and Immunogenomics of Hungarian Academy of Sciences and Semmelweis University, Budapest, Hungary.
Insights
Cardiac Syndrome X (CSX) patients show elevated terminal complement complex (TCC) levels, suggesting complement activation. However, reduced ficolin-lectin pathway components indicate complement consumption in CSX.
Area of Science:
- Immunology
- Cardiology
- Complement System
Background:
- Cardiac Syndrome X (CSX) is characterized by angina with normal coronary arteries.
- Elevated terminal complement complex (TCC) levels are observed in CSX patients.
- Classical and alternative complement pathways are not activated in CSX.
Purpose of the Study:
- To investigate the role of the ficolin-lectin pathway in the pathogenesis of CSX.
- To compare lectin pathway parameters in CSX patients, coronary heart disease (CHD) patients, and healthy controls (HC).
Main Methods:
- Serum levels of ficolin-2, ficolin-3, ficolin-3/MASP-2 complex, and ficolin-3-mediated TCC deposition (FCN3-TCC) were measured.
- Plasma TCC levels were determined.
- Patients with CSX (n=18), CHD (n=37), and HC (n=54) were analyzed.
Main Results:
- Plasma TCC levels were significantly higher in CSX patients compared to HC and CHD groups.
- Serum ficolin-2 and ficolin-3 levels were significantly lower in CSX patients versus HC and CHD groups.
- Ficolin-3/MASP-2 complex and FCN3-TCC deposition were significantly lower in CSX patients compared to HC and CHD groups.
Conclusions:
- CSX patients exhibit reduced levels of ficolin-lectin pathway components, suggesting complement activation and consumption.
- The ficolin-lectin pathway may play a role in the complex pathophysiology of Cardiac Syndrome X.
Abstract:
In patients with typical angina pectoris, inducible myocardial ischaemia and macroscopically normal coronaries (cardiac syndrome X (CSX)), a significantly elevated plasma level of terminal complement complex (TCC), the common end product of complement activation, has been observed without accompanying activation of the classical or the alternative pathways. Therefore, our aim was to clarify the role of the ficolin-lectin pathway in CSX. Eighteen patients with CSX, 37 stable angina patients with significant coronary stenosis (CHD) and 54 healthy volunteers (HC) were enrolled. Serum levels of ficolin-2 and ficolin-3, ficolin-3/MASP-2 complex and ficolin-3-mediated TCC deposition (FCN3-TCC) were determined. Plasma level of TCC was significantly higher in the CSX than in the HC or CHD group (5.45 versus 1.30 versus 2.04 AU/ml, P < 0.001). Serum levels of ficolin-2 and ficolin-3 were significantly lower in the CSX compared to the HC or CHD group (3.60 versus 5.80 or 5.20 μg/ml, P < 0.05; 17.80 versus 24.10 or 26.80 μg/ml, P < 0.05). The ficolin-3/MASP-2 complex was significantly lower in the CSX group compared to the HC group (92.90 versus 144.90 AU/ml, P = 0.006). FCN3-TCC deposition was significantly lower in the CSX group compared to the HC and CHD groups (67.8% versus 143.3% or 159.7%, P < 0.05). In the CSX group, a significant correlation was found between TCC and FCN3-TCC level (r = 0.507, P = 0.032) and between ficolin-3/MASP-2 complex level and FCN3-TCC deposition (r = 0.651, P = 0.003). In conclusion, in patients with typical angina and myocardial ischaemia despite macroscopically normal coronary arteries, low levels of several lectin pathway parameters were observed, indicating complement activation and consumption. Complement activation through the ficolin-lectin pathway might play a role in the complex pathomechanism of CSX.
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