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Comprehensive Analysis of Procoagulant Platelets Exhibiting Features of Necrosis, Apoptosis and Platelet Activation
Published on: May 23, 2025
Fractalkine promotes platelet activation and vascular dysfunction in congestive heart failure
Steven K Hildemann, Christian Schulz, Daniela Fraccarollo
1Prof. Dr. Andreas Schäfer, Klinik für Kardiologie und Angiologie, Medizinische Hochschule Hannover, Carl-Neuberg-Str. 1, 30625 Hannover, Germany, Tel.: +49 511 532 5240, Fax: +49 511 532 8244,
Insights
Elevated fractalkine in congestive heart failure (CHF) worsens endothelial dysfunction and reduces clopidogrel effectiveness. This chemokine may be a key factor in poor treatment response for CHF patients.
Area of Science:
- Cardiovascular Medicine
- Hematology
- Biochemistry
Background:
- Congestive heart failure (CHF) is linked to endothelial dysfunction and heightened platelet activity, impacting patient prognosis.
- Patients with CHF often show diminished responsiveness to antiplatelet medications like clopidogrel.
- Elevated levels of the chemokine fractalkine, which activates platelets, are observed in CHF.
Purpose of the Study:
- To investigate the relationship between fractalkine, platelet reactivity, and clopidogrel efficacy in both human and rat models of CHF.
- To determine if fractalkine contributes to impaired endothelial function and reduced clopidogrel response in CHF.
Main Methods:
- Fractalkine serum levels were measured using ELISA in CHF patients and rats.
- Immunofluorescence microscopy and molecular analysis were used to assess fractalkine and CX3CR1 expression in rat aortas.
- Platelet reactivity to ADP and P-selectin expression were evaluated in response to fractalkine.
- Clopidogrel responsiveness was assessed by measuring P2Y12 reactivity in human patients.
Main Results:
- Fractalkine levels were significantly increased in both CHF patients and rats compared to controls.
- In CHF rats, fractalkine exacerbated endothelial dysfunction and increased platelet P-selectin expression.
- Platelet CX3CR1 expression was elevated in CHF rats, correlating with impaired clopidogrel response.
- Human CHF patients with high on-treatment platelet reactivity had higher fractalkine levels.
Conclusions:
- Fractalkine is upregulated in the endothelium and serum of CHF patients, with increased platelet CX3CR1 expression.
- Fractalkine worsens endothelial function and is associated with reduced responsiveness to clopidogrel in CHF.
- These findings suggest fractalkine plays a role in the impaired clopidogrel response observed in congestive heart failure.
Unlabelled:
Endothelial dysfunction and enhanced platelet reactivity in congestive heart failure (CHF) contribute to poor prognosis. CHF patients display an impaired responsiveness to clopidogrel. Fractalkine activates platelets and elevated plasma levels of this chemokine are a feature of CHF. We here addressed the interrelation of fractalkine, platelet reactivity and clopidogrel efficacy in humans and rats with CHF. Fractalkine serum levels determined by ELISA were increased in CHF patients (CHF: 1548 ± 650 pg/ml;
Control:
968 ± 575 pg/ml, p<0.01) and following CHF induction in rats (CHF: 1509 ± 753 pg/ml; Sham: 1181 ± 275 pg/ml, p<0.05). Expression of fractalkine and its receptor CX3CR1 was enhanced in aortas of CHF rats as determined by immunofluorescence microscopy and molecular analysis. Fractalkine significantly aggravated endothelial dysfunction and augmented P-selectin expression on platelets from CHF rats. Platelet surface expression of CX3CR1 was increased in CHF rats, who displayed an impaired response to clopidogrel (platelet reactivity to ADP: CHF 30 ± 22%; Sham: 8 ± 5%, p<0.05). Similarly in humans with CHF, elevated fractalkine levels were accompanied by reduced clopidogrel responsiveness. Patients with high on-clopidogrel treatment platelet P2Y12 reactivity displayed higher fractalkine levels (1525 ± 487 pg/ml) than those with sufficient clopidogrel response (684 ± 315 pg/ml, p<0.01). In conclusion, in CHF fractalkine was increased on the endothelium and in blood serum, and platelet surface-expression of CX3CR1 was enhanced. Fractalkine diminished endothelial function beyond the impairment already observed in CHF and was associated with a reduced responsiveness to the platelet inhibitor clopidogrel. These findings may indicate a novel pathophysiological mechanism contributing to impaired clopidogrel responsiveness in CHF.
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