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Updated: Aug 15, 2026

Laminar Flow-based Assays to Investigate Leukocyte Recruitment on Cultured Vascular Cells and Adherent Platelets
Published on: April 9, 2018
Clopidogrel inhibits platelet-leukocyte adhesion and platelet-dependent leukocyte activation
Virgilio Evangelista1, Stefano Manarini, Giuseppe Dell'Elba
1Laboratory of Vascular Biology and Pharmacology, Consorzio Mario Negri Sud,Via Nazionale, 8/A 66030, Santa Maria Imbaro, Italy. evangelista@negrisud.it
Insights
Clopidogrel, an anti-platelet drug, reduces platelet activation and interaction with leukocytes. This action may decrease inflammation and pro-atherothrombotic functions, supporting its anti-atherosclerotic properties.
Area of Science:
- Pharmacology
- Cardiovascular Research
- Immunology
Background:
- Clopidogrel is a key anti-platelet medication.
- Platelet activation influences pro-atherothrombotic and inflammatory processes involving leukocytes.
Purpose of the Study:
- To investigate if clopidogrel inhibits platelet adhesion and stimulation of pro-atherothrombotic/inflammatory functions in polymorphonuclear leukocytes (PMN) and monocytes (MN).
- To assess clopidogrel's potential to reduce inflammation in atherosclerosis.
Main Methods:
- Investigated effects of clopidogrel and its active metabolite on ADP/thrombin-induced platelet activation and platelet-leukocyte interactions.
- Used ex vivo mouse models and in vitro human cell/whole blood systems.
- Assessed platelet aggregation, P-selectin expression, platelet-PMN adhesion, ROS production, and tissue factor (TF) expression.
Main Results:
- Clopidogrel inhibited platelet aggregation, P-selectin expression, platelet-PMN adhesion, and ROS production in mouse PMN.
- The active metabolite of clopidogrel inhibited P-selectin expression, platelet-PMN adhesion, and ROS production in human PMN.
- Clopidogrel's active metabolite reduced platelet-induced TF expression in monocytes and inhibited rapid TF exposure on platelets and leukocytes in whole blood.
Conclusions:
- Clopidogrel reduces platelet-leukocyte interactions and associated inflammatory and pro-atherothrombotic functions.
- These effects suggest clopidogrel may mitigate inflammation underlying atherosclerosis and its complications.
Abstract:
Clopidogrel is considered to be an important therapeutic advance in anti-platelet therapy. We investigated whether inhibition by clopidogrel results in a reduced capacity of platelets to adhere and stimulate pro-atherothrombotic and inflammatory functions in polymorphonuclear leukocytes (PMN) and in monocytes (MN). An eventual effect on these processes could further substantiate anti-atherothrombotic properties of this drug. The effects of clopidogrel or of its active metabolite were investigated on ADP or thrombin receptor-induced platelet activation and on platelet-leukocyte interactions ex vivo in the mouse or in vitro in isolated human cells or whole blood, respectively. Clopidogrel inhibited platelet aggregation, expression of P-selectin, platelet-PMN adhesion and platelet-dependent ROS production in mouse PMN. Similarly pretreatment of human platelets with the active metabolite of clopidogrel in vitro resulted in a profound inhibition of platelet P-selectin expression, platelet-PMN adhesion and production of ROS by PMN. Pretreatment with the active metabolite of clopidogrel significantly impaired the ability of platelets to up-regulate the expression of TF procoagulant activity in MN, in a washed cell system. Moreover, the active metabolite of clopidogrel inhibited rapidTF exposure on platelet as well as on leukocyte surfaces in whole blood. By reducing platelet-dependent up-regulation of inflammatory and pro-atherothrombotic functions in leukocytes, clopidogrel may reduce inflammation that underlies the chronic process of atherosclerosis and its acute complications.
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