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Updated: May 1, 2026

Ferric Chloride-induced Murine Thrombosis Models
Published on: September 5, 2016
Platelet-derived S100 family member myeloid-related protein-14 regulates thrombosis
Abstract:
Expression of the gene encoding the S100 calcium-modulated protein family member MRP-14 (also known as S100A9) is elevated in platelets from patients presenting with acute myocardial infarction (MI) compared with those from patients with stable coronary artery disease; however, a causal role for MRP-14 in acute coronary syndromes has not been established. Here, using multiple models of vascular injury, we found that time to arterial thrombotic occlusion was markedly prolonged in Mrp14⁻/⁻ mice. We observed that MRP-14 and MRP-8/MRP-14 heterodimers (S100A8/A9) are expressed in and secreted by platelets from WT mice and that thrombus formation was reduced in whole blood from Mrp14⁻/⁻ mice. Infusion of WT platelets, purified MRP-14, or purified MRP-8/MRP-14 heterodimers into Mrp14⁻/⁻ mice decreased the time to carotid artery occlusion after injury, indicating that platelet-derived MRP-14 directly regulates thrombosis. In contrast, infusion of purified MRP-14 into mice deficient for both MRP-14 and CD36 failed to reduce carotid occlusion times, indicating that CD36 is required for MRP-14-dependent thrombosis. Our data identify a molecular pathway of thrombosis that involves platelet MRP-14 and CD36 and suggest that targeting MRP-14 has potential for treating atherothrombotic disorders, including MI and stroke.
Insights
Platelet protein MRP-14 (S100A9) plays a key role in arterial thrombosis. Targeting MRP-14 and its interaction with CD36 may offer new treatments for heart attack and stroke.
Area of Science:
- Biochemistry
- Hematology
- Cardiovascular Research
Background:
- Elevated MRP-14 (S100A9) in platelets is linked to acute myocardial infarction (MI).
- The precise role of MRP-14 in acute coronary syndromes remains unclear.
Purpose of the Study:
- To investigate the causal role of MRP-14 in vascular injury and arterial thrombosis.
- To elucidate the molecular pathway involving platelet-derived MRP-14 in thrombosis.
Main Methods:
- Utilized multiple models of vascular injury in mice.
- Assessed thrombus formation in wild-type (WT) and Mrp14-deficient mice.
- Investigated the effect of platelet infusion and purified MRP-14/MRP-8/MRP-14 heterodimers.
- Examined the role of CD36 in MRP-14-dependent thrombosis.
Main Results:
- Mrp14-deficient mice exhibited prolonged time to arterial thrombotic occlusion.
- Platelet-derived MRP-14 and MRP-8/MRP-14 heterodimers were identified and secreted by platelets.
- Infusion of WT platelets, MRP-14, or MRP-8/MRP-14 heterodimers reduced occlusion time in Mrp14-deficient mice.
- CD36 was found to be essential for MRP-14-mediated thrombosis.
Conclusions:
- Platelet-derived MRP-14 directly regulates thrombosis.
- A molecular pathway involving platelet MRP-14 and CD36 in thrombosis has been identified.
- Targeting MRP-14 presents a potential therapeutic strategy for atherothrombotic disorders like MI and stroke.
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