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Platelet SR-PSOX/CXCL16-CXCR6 Axis Influences Thrombotic Propensity and Prognosis in Coronary Artery Disease
Tianyun Guan1, Frederic Emschermann1, Christoph Schories1
1Department of Cardiology and Angiology, University Hospital Tübingen, Otfried Müller Straße 10, 72076 Tübingen, Germany.
Insights
Platelet CXCL16 and its receptor CXCR6 are linked to increased platelet activation and aggregation in coronary artery disease (CAD) patients. Elevated levels of platelet CXCL16 independently predict mortality, suggesting a role in thrombotic risk and prognosis.
Area of Science:
- Biochemistry
- Immunology
- Cardiovascular Research
Background:
- Platelets express the transmembrane chemokine SR-PSOX/CXCL16, which is cleaved to soluble sCXCL16.
- Soluble sCXCL16 binds to CXCR6 on platelets, promoting degranulation, aggregation, and thrombosis.
Purpose of the Study:
- To investigate the pro-thrombotic and prognostic association of the platelet CXCL16-CXCR6 axis in patients with coronary artery disease (CAD).
Main Methods:
- Flow cytometry was used to measure platelet surface expression of CXCL16 and CXCR6.
- Platelet activation markers (CD62P, PAC-1) and collagen-induced aggregation were assessed.
- Association with clinical parameters and prognosis was analyzed using Cox-PH regression.
Main Results:
- Platelet CXCL16 and CXCR6 expression correlated with platelet activation and aggregation.
- Higher platelet CXCL16 levels were associated with worse prognosis and were an independent predictor of mortality.
- Expression levels did not correlate with lipid profiles or troponin I but were linked to CK activity and reduced LVEF.
Conclusions:
- The platelet CXCL16-CXCR6 axis plays a significant role in thrombotic propensity and prognosis in CAD patients.
- Platelet CXCL16 may serve as an independent predictor of mortality in this population.
Abstract:
Platelets express the transmembrane chemokine SR-PSOX/CXCL16, proteolytic cleavage of which generates the sCXCL16 soluble-(s) chemokine. The sCXCL16 engages CXCR6 on platelets to synergistically propagate degranulation, aggregation and thrombotic response. Currently, we have investigated the pro-thrombotic and prognostic association of platelet CXCL16−CXCR6 axis in CAD-(n = 240; CCS n = 62; ACS n = 178) patients. Platelet surface-associated-CXCL16 and CXCR6 surface expression ascertained by flow cytometry correlated significantly with platelet activation markers (CD62P denoting degranulation and PAC-1 binding denoting α2bβ3-integrin activation). Higher platelet CXCL16 surface association (1st quartile vs. 2nd−4th quartiles) corresponded to significantly elevated collagen-induced platelet aggregation assessed by whole blood impedance aggregometry. Platelet-CXCL16 and CXCR6 expression did not alter with dyslipidemia, triglyceride, total cholesterol, or LDL levels, but higher (>median) plasma HDL levels corresponded with decreased platelet-CXCL16 and CXCR6. Although platelet-CXCL16 and CXCR6 expression did not change significantly with or correlate with troponin I levels, they corresponded with higher Creatine Kinase-(CK) activity and progressively deteriorating left ventricular ejection fraction (LVEF) at admission. Elevated-(4th quartile) platelet-CXCL16 (p = 0.023) and CXCR6 (p = 0.030) measured at admission were significantly associated with a worse prognosis. However, after Cox-PH regression analysis, only platelet-CXCL16 was ascertained as an independent predictor for all-cause of mortality. Therefore, the platelet CXCL16−CXCR6 axis may influence thrombotic propensity and prognosis in CAD patients.
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