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Updated: Nov 11, 2025

An In Vitro Assay to Study Platelet Migration Using RGD-Functionalized Avidin-Biotin Tethers
Published on: November 8, 2024
Endothelial transmigration of platelets depends on soluble factors released by activated endothelial cells and
Ricardo Huilcaman1, Natalia Veliz-Olivos1, Whitney Venturini1,2
1Department of Clinical Biochemistry and Immunohematology, Faculty of Health Sciences, University of Talca, Talca, Chile.
Insights
Platelets can migrate through blood vessel linings, especially when interacting with monocytes. This finding sheds light on the role of platelets in atherosclerosis beyond just clot formation.
Area of Science:
- Cardiovascular biology
- Immunology
- Hematology
Background:
- Cardiovascular diseases (CVDs) are a leading global cause of death.
- Platelet-mediated thrombus formation is critical in CVDs, but their role in earlier atherosclerosis stages is unclear.
- Platelets have been found within atherosclerotic plaque cores.
Purpose of the Study:
- To investigate the conditions enabling platelet migration toward atherosclerotic lesions.
- To understand platelet-monocyte interactions in the context of atherosclerosis.
Main Methods:
- An in vitro co-culture model was developed using platelets and monocytes.
- Transwell inserts with confluent endothelium were used to assess migration.
- Platelets were exposed to conditioned media from co-cultures to evaluate soluble factor effects.
Main Results:
- Co-culturing platelets and monocytes significantly increased platelet transmigration.
- A notable number of transmigrated platelets were independent of monocytes.
- Conditioned media from co-cultures enhanced platelet transmigration and aggregation, indicating monocyte-secreted factors.
Conclusions:
- Platelets possess the mechanisms for migrating through activated endothelium.
- This migration is facilitated by soluble factors released during monocyte-platelet interactions.
- These findings highlight a novel role for platelets in atherogenesis, involving migration and interaction with monocytes.
Abstract:
Cardiovascular diseases (CVDs) remain leading causes of death worldwide. While platelet-mediated thrombus formation following the rupture of an atherosclerotic plaque is one of the key pathophysiologic events in CVDs, the role of platelets in previous or more advanced stages of atherosclerosis is less known. Interestingly, the presence of platelets has been observed at the core of the atherosclerotic plaque.In order to study the conditions necessary for platelets to migrate toward an atherosclerotic lesion, we designed an in vitro co-culture model. Platelets were co-cultured with monocytes in Transwell inserts covered with a confluent endothelium and the number of migrating platelets and/or monocytes was determined under different conditions. Platelets were also exposed to media conditioned obtained from co-cultures prior to migration assays.Here we show that coculturing platelets and monocytes increased platelet transmigration, with a considerable number of transmigrated platelets found not associated to monocytes. Interestingly, conditioned media from platelet-monocyte co-cultures also increased platelet transmigration and aggregation, suggesting the existence of soluble factors secreted by monocytes that enhance the migratory and pro-aggregating capabilities of platelets.We conclude that platelets have the machinery to migrate through an activated endothelium, a response that requires the interaction with secreted factors produce in the context of the interaction with monocytes under atherogenic conditions.
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