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Updated: Aug 9, 2026

Procoagulant Platelet Characterization by Measuring Phosphatidylserine Exposure and Microvesicle Release from Human Purified Platelets
Published on: November 29, 2024
Platelet signaling induced by lipoproteins
S J A Korporaal1, J W N Akkerman
1Thrombosis and Haemostasis Laboratory (G03.647), Department of Haematology, University Medical Center Utrecht, P.O. Box 85500, 3508 GA Utrecht, The Netherlands.
Insights
Lipoprotein interactions, especially LDL, activate platelet signaling pathways, contributing to atherosclerosis and thrombosis. HDL has opposing effects, while other lipoproteins
Area of Science:
- Cardiovascular Biology
- Hematology
- Lipid Metabolism
Background:
- Cardiovascular disease is a leading cause of death, with lipoproteins implicated in atherosclerosis and thrombosis.
- Lipoprotein modification generates atherogenic particles that influence cellular mechanisms.
- Platelet interactions with lipoproteins, particularly LDL, are crucial in disease development.
Purpose of the Study:
- To review signaling pathways activated by platelet-lipoprotein interactions.
- To emphasize the role of these interactions in thrombosis and atherosclerosis.
- To discuss the contrasting effects of different lipoprotein classes and modified constituents.
Main Methods:
- Literature review of studies on platelet-lipoprotein interactions.
- Analysis of signaling pathways, including p38MAPK and p125FAK.
- Investigation of modified lipoproteins and their signaling properties, such as lysophosphatidic acid.
Main Results:
- LDL enhances platelet responsiveness and signaling, leading to hyperreactivity.
- HDL opposes LDL's activating effects on platelets.
- Modified lipoproteins, like oxidized LDL, generate potent platelet activators.
Conclusions:
- Platelet-lipoprotein interactions significantly contribute to atherogenesis and thrombosis.
- Understanding these pathways is key to developing therapeutic strategies.
- Further research is needed to clarify the roles of various lipoproteins and their modifications.
Abstract:
Cardiovascular disease is the main cause of death and disability in the Western society. Lipoproteins play an important role in the development of this disease and affect different cell types involved in atherosclerosis and thrombosis. Based on their density, five classes of lipoproteins have been identified which all influence cells via distinct mechanisms. Modification turns lipoproteins into atherogenic particles with a prominent role in atherogenesis. The interaction of lipoproteins with platelets has been under investigation for a number of years. Especially the role of LDL in platelet signaling has been studied intensively as platelets of hypercholesterolemic patients are hyperreactive and show hyperaggregability in vitro and enhanced activity in vivo, suggesting that LDL enhances platelet responsiveness. Several signaling pathways induced by LDL have been revealed in vitro, such as signaling via p38 mitogen-activated protein kinase (p38MAPK) and p125 focal adhesion kinase (p125FAK). HDL opposes the activating properties of LDL on platelets, whereas the effects of chylomicrons, VLDL or IDL on platelet function are controversial. Modification of lipoproteins is associated with the generation of new constituents with new signaling properties. In particular, the platelet-activating properties of lysophosphatidic acid, which is a constituent of atherosclerotic plaques and is generated upon oxidation of LDL, have been investigated intensively. This review provides a summary of the activation of signaling pathways after platelet-lipoprotein interactions, with special emphasis on the role of these interactions in the development of thrombosis and atherosclerosis.
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