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Updated: Sep 16, 2026

Ferric Chloride-induced Murine Thrombosis Models
Published on: September 5, 2016
Antithrombotic effect of PMC, a potent alpha-tocopherol analogue on platelet plug formation in vivo
1Graduate Institute of Medical Sciences, Taipei Medical University, No. 250 Wu-Hsing Street, Taipei 110, Taiwan.
Abstract:
Platelet thrombi formation was induced by irradiation of mesenteric venules with filtered light in mice pretreated intravenously with fluorescein sodium. PMC (2, 2, 5, 7, 8-pentamethyl-6-hydroxychromane; 20 microg/g, i.v.) significantly prolonged the latent period of inducing platelet plug formation in mesenteric venules. When fluorescein sodium was given at 10 microg/kg, PMC (20 microg/g) delayed occlusion time by about 1.7-fold. Furthermore, aspirin (250 microg/g) also showed similar activity in delaying the occlusion time. On a molar basis, PMC was about 14-fold more potent than aspirin at delaying the occlusion time. PMC was also effective in reducing the mortality of ADP-induced acute pulmonary thromboembolism in mice when administered intravenously at doses of 5 and 10 microg/g. In addition, intravenous injection of PMC (5 microg/g) significantly prolonged bleeding time by about 1.6-fold compared with normal saline in severed mesenteric arteries of rats. Continuous infusion of PMC (1 microg/g/min) significantly increased the bleeding time by about 1.6-fold and the bleeding time was also significantly prolonged for up to 90 min after cessation of PMC infusion. These results suggest that PMC has an effective antiplatelet effect in vivo and may be a potential therapeutic agent for arterial thrombosis, but must be assessed further for toxicity.
Insights
PMC, a novel compound, demonstrates significant antiplatelet effects in vivo, delaying thrombus formation and reducing mortality from thromboembolism. Further research is needed to assess its therapeutic potential and toxicity.
Area of Science:
- Pharmacology
- Thrombosis Research
- Vascular Biology
Background:
- Platelet aggregation is a key factor in arterial thrombosis.
- Developing effective antiplatelet agents is crucial for managing thrombotic disorders.
Purpose of the Study:
- To investigate the in vivo antiplatelet activity of PMC (2, 2, 5, 7, 8-pentamethyl-6-hydroxychromane).
- To compare the potency of PMC with aspirin in preventing platelet thrombi formation.
Main Methods:
- Platelet thrombi formation was induced in mice via mesenteric venule irradiation.
- The effects of PMC and aspirin on occlusion time were measured.
- Mortality from ADP-induced pulmonary thromboembolism was assessed.
- Bleeding time was evaluated in rats following PMC administration.
Main Results:
- PMC significantly prolonged the latent period and delayed occlusion time in platelet plug formation.
- PMC was approximately 14-fold more potent than aspirin on a molar basis.
- PMC reduced mortality in a murine model of acute pulmonary thromboembolism.
- PMC administration prolonged bleeding time in rats.
Conclusions:
- PMC exhibits potent in vivo antiplatelet effects.
- PMC shows promise as a potential therapeutic agent for arterial thrombosis.
- Further toxicological assessment of PMC is warranted.
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