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November 19, 2024Seminars in Thrombosis and Hemostasis9 citationsOpen Access

The Role of Platelets in Atherosclerosis: A Historical Review

SMStefania MomiPGPaolo Gresele

Key Result

Platelets actively participate in all phases of atherogenesis, from initial endothelial damage to plaque unstabilization, highlighting their potential as therapeutic targets for preventing atheroprogression.

Key Points

  • The research aims to clarify the role of platelets in atherosclerosis beyond thrombotic events.
  • Literature review of studies linking platelets to atherogenesis across different phases
  • Analysis of platelet interactions with endothelial cells and leukocytes
  • Evaluation of platelet-mediated mechanisms in promoting inflammatory responses
  • Platelets contribute to initial endothelial damage and plaque development
  • Platelet release of matrix metalloproteinases enhances leukocyte adhesion and migration
  • Current antiplatelet therapies do not prevent platelet involvement in atherosclerosis progression

PICO

P
Population
Atherosclerosis
I
Intervention / Comparator
Platelets

Limitations

  • Animal models used to study atherosclerosis have limitations in translatability to human disease due to genetic, environmental, and comorbidity differences.

Abstract

Atherosclerosis is a chronic, multifactorial inflammatory disorder of large and medium-size arteries, which is the leading cause of cardiovascular mortality and morbidity worldwide. Although platelets in cardiovascular disease have mainly been studied for their crucial role in the thrombotic event triggered by atherosclerotic plaque rupture, over the last two decades it has become clear that platelets participate also in the development of atherosclerosis, owing to their ability to interact with the damaged arterial wall and with leukocytes. Platelets participate in all phases of atherogenesis, from the initial functional damage to endothelial cells to plaque unstabilization. Platelets deposit at atherosclerosis predilection sites before the appearance of manifest lesions to the endothelium and contribute to induce endothelial dysfunction, thus supporting leukocyte adhesion to the vessel wall. In particular, platelets release matrix metalloproteinases, which interact with protease-activated receptor 1 on endothelial cells triggering adhesion molecule expression. Moreover, P-selectin and glycoprotein Ibα expressed on the surface of vessel wall-adhering platelets bind PSGL-1 and β2 integrins on leukocytes, favoring their arrest and transendothelial migration. Platelet-leukocyte interactions promote the formation of radical oxygen species which are strongly involved in the lipid peroxidation associated with atherosclerosis. Platelets themselves actively migrate through the endothelium toward the plaque core where they release chemokines that modify the microenvironment by modulating the function of other inflammatory cells, such as macrophages. While current antiplatelet agents seem unable to prevent the contribution of platelets to atherogenesis, the inhibition of platelet secretion, of the release of MMPs, and of some specific pathways of platelet adhesion to the vessel wall may represent promising future strategies for the prevention of atheroprogression.

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Cite This Study

Momi et al. (2024) conducted a review in Atherosclerosis. Platelets was evaluated. Platelets actively participate in all phases of atherogenesis, from initial endothelial damage to plaque unstabilization, highlighting their potential as therapeutic targets for preventing atheroprogression.

synapsesocial.com/papers/6a23f3e896b50e6ae79f26c3https://doi.org/10.1055/s-0044-1795097
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