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Updated: Jul 11, 2025

Ferric Chloride-induced Thrombosis Mouse Model on Carotid Artery and Mesentery Vessel
Published on: June 29, 2015
Increased platelet mitochondrial function correlates with clot strength in a rodent fracture model
James Blake Littlejohn1, Emily Evans Grenn, Kristen T Carter
1From the Department of Surgery (J.B.L., E.E.G., A.C.P., F.T.S., M.E.K.), University of Mississippi Medical Center, Jackson, Mississippi; Department of Critical Care Medicine (K.T.C.), University of Pittsburgh, Pittsburgh, Pennsylvania; Department of Cell and Molecular Biology (J.P.H.), and Department of Pharmacology and Toxicology (N.H.H., K.S.E.), University of Mississippi Medical Center, Jackson, Mississippi, September 22, 2023.
Platelet mitochondrial respiration increases after injury, correlating with clot strength. This finding may help develop new antithrombotic therapies for trauma patients.
Area of Science:
- Biomedical Engineering
- Physiology
- Mitochondrial Biology
Background:
- Elevated clot strength post-injury increases thromboembolic risks.
- Assessing platelet function is crucial but clinically limited.
- Platelet mitochondrial respirometry offers potential insights into platelet function.
Purpose of the Study:
- To investigate the correlation between platelet mitochondrial function and clot strength after orthopedic injury.
- To establish a preclinical model for evaluating platelet function in trauma.
Main Methods:
- Wistar rats underwent orthopedic injury or sham procedures.
- High-resolution respirometry measured platelet mitochondrial respiration.
- Thromboelastography (TEG) assessed clot strength.
Main Results:
- Trauma rats showed increased clot strength (TEG maximal amplitude) 24 hours post-injury.
- Platelet basal respiration was significantly higher in injured rats.
- Platelet basal respiration positively correlated with TEG maximal amplitude.
Conclusions:
- Increased platelet mitochondrial basal respiration is linked to enhanced clot strength after injury in a rodent model.
- This model can evaluate mitochondrial-targeted therapeutics for antithrombotic therapy.
- Further research into platelet mitochondrial function may reveal novel therapeutic targets.

