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Published on: January 7, 2019
Vasodilator-stimulated phosphoprotein (VASP) phosphorylation assay for platelet response to cilostazol
Jun Yamanouchi1, Takaaki Hato, Toshiyuki Niiya
1Department of Bioregulatory Medicine, Ehime University Graduate School of Medicine, Ehime, Japan.
Insights
A new platelet VASP assay effectively measures the response to cilostazol, an antiplatelet drug used for preventing atherothrombosis. This assay shows high sensitivity and specificity for clinical use in monitoring treatment effectiveness.
Area of Science:
- Cardiovascular Pharmacology
- Clinical Assay Development
- Thrombosis Research
Background:
- Cilostazol is effective in preventing atherothrombosis but lacks a reliable assay to monitor platelet response.
- Existing methods like platelet aggregometry are insufficient for detecting cilostazol's in vivo effects.
Purpose of the Study:
- To establish a sensitive and specific clinical assay for detecting platelet response to cilostazol.
- To validate the assay's performance using VASP phosphorylation as a biomarker.
Main Methods:
- Modification of a platelet VASP assay kit for cilostazol-dependent VASP phosphorylation detection.
- Assay validation using in vitro and in vivo samples, with ROC analysis for sensitivity and specificity.
- Verification of results using immunoblotting and comparison with light transmission platelet aggregometry.
Main Results:
- The modified VASP assay effectively detected cilostazol's platelet response under optimal conditions (50 nM PGE1).
- ROC analysis revealed 97% sensitivity and 75% specificity for samples drawn 3-9 hours post-cilostazol ingestion.
- Standard aggregometry failed to detect significant inhibition of platelet aggregation by cilostazol.
Conclusions:
- The developed platelet VASP assay is a sensitive and specific tool for monitoring cilostazol's pharmacological effect.
- This assay offers a reliable method for clinical use in managing patients treated with cilostazol for atherothrombosis.
Abstract:
Recent clinical trials have demonstrated that cilostazol, an antiplatelet drug competent to inhibit phosphodiesterase 3, is effective in secondary prevention of atherothrombosis including ischemic stroke, myocardial infarction, and peripheral arterial disease. However, there is no reliable assay for detection of the platelet response to cilostazol. We attempted to establish such an assay for clinical use. Phosphorylation of vasodilator-stimulated phosphoprotein (VASP) subsequent to the pharmacological action of cilostazol was measured by a platelet VASP assay kit that has been widely used for monitoring platelet response to ADP receptor antagonists in clinical settings. We modified the kit and found the optimal conditions for detection of cilostazol-dependent VASP phosphorylation. The assay could detect the in vitro and in vivo platelet responses to cilostazol effectively in the presence of 50 nM PGE1. ROC analysis showed that our assay had 97% sensitivity and 75% specificity when blood drawn between 3 and 9?h after cilostazol ingestion was subjected to the assay. The assay results were verified by immunoblotting specific for VASP phosphorylation. Standard light transmission platelet aggregometry could not detect significant inhibition of agonist-induced platelet aggregation by cilostazol except for the in vitro effect of high concentrations of cilostazol. These results demonstrate that the platelet VASP assay can detect the platelet response to cilostazol with high sensitivity and specificity.
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