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Updated: Aug 6, 2026

Establishment of a Minimally Invasive Rat Model of Pulmonary Embolism Using Autologous Blood Clots
Published on: October 25, 2024
Platelets inhibit the lysis of pulmonary microemboli
Juan-Carlos Murciano1, David Harshaw, David G Neschis
1Institute for Environmental Medicine, University of Pennsylvania, Philadelphia, Pennsylvania 19104, USA.
Abstract:
Using tracings of (125)I-labeled fibrin(ogen) in rodents, we examined the hypothesis that platelets impede the lysis of pulmonary emboli. (125)I-Microemboli (ME, 3-10 micron diameter) lodged homogeneously throughout the lungs after intravenous injection in both rats and mice (60% of injected dose), caused no lethality, and underwent spontaneous dissolution (50 and 100% within 1 and 5 h, respectively). Although lung homogenates displayed the most intense fibrinolytic activity of all the major organs, dissolution of ME was much slower in isolated perfused lungs (IPL) than was observed in vivo. Addition of rat plasma to the perfusate facilitated ME dissolution in IPL to a greater extent than did addition of tissue-type plasminogen activator alone, suggesting that permeation of the clot by plasminogen is the rate-limited step in lysis. Platelet-containing ME injected in rats lysed much more slowly than did ME formed from fibrin alone. (125)I-Thrombi, formed in the pulmonary vasculature of mice in response to intravascular activation of platelets by injection of collagen and epinephrine, were essentially resistant to spontaneous dissolution. Moreover, injection of the antiplatelet glycoprotein IIb/IIIa antibody 7E3 F(ab')(2) facilitated spontaneous dissolution of pulmonary ME and augmented fibrinolysis by a marginally effective dose of Retavase (10 microg/kg) in rats. These studies show that platelets suppress pulmonary fibrinolysis. The mechanism(s) by which platelets stabilize ME and utility of platelet inhibitors to facilitate their dissolution deserves further study.
Insights
Platelets were found to hinder the natural breakdown of blood clots in the lungs. Inhibiting platelets may help dissolve pulmonary emboli more effectively.
Area of Science:
- Biochemistry
- Hematology
- Pulmonary Medicine
Background:
- Pulmonary emboli (PE) are a significant cause of morbidity and mortality.
- The spontaneous dissolution of PE is a complex process involving fibrinolysis.
- The role of platelets in the resolution of pulmonary emboli is not fully understood.
Purpose of the Study:
- To investigate the hypothesis that platelets impede the lysis of pulmonary emboli.
- To elucidate the mechanisms by which platelets affect fibrinolysis in the pulmonary vasculature.
Main Methods:
- Utilized (125)I-labeled fibrin(ogen) microemboli (ME) in rodent models (rats and mice).
- Compared ME dissolution rates in vivo versus in isolated perfused lungs (IPL).
- Assessed the impact of plasma, tissue-type plasminogen activator, and antiplatelet agents on ME lysis.
Main Results:
- Pulmonary ME underwent spontaneous dissolution in vivo, but lysis was slower in IPL.
- Plasma addition enhanced ME dissolution in IPL more than tissue-type plasminogen activator alone.
- Platelet-containing ME lysed significantly slower than fibrin-only ME.
- Antiplatelet glycoprotein IIb/IIIa antibody 7E3 F(ab')(2) facilitated ME dissolution and augmented fibrinolysis.
Conclusions:
- Platelets play a suppressive role in pulmonary fibrinolysis.
- Platelets appear to stabilize pulmonary emboli, hindering their spontaneous dissolution.
- Platelet inhibitors show potential as adjunctive therapies to enhance PE resolution.
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