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Matrix metalloproteinase-2 in platelet adhesion to fibrinogen: interactions with nitric oxide
A Martinez1, E Salas, A Radomski
1Department of Pharmacology, University of Valencia, Valencia, Spain.
Background:
Matrix metalloproteinase-2 (MMP-2) has been shown to activate a non-thromboxane, non-ADP pathway of platelet aggregation. In contrast, nitric oxide (NO) is known to inhibit platelet adhesion and aggregation. Therefore, we have studied the release of MMP-2 during platelet adhesion to fibrinogen, the effects of phenanthrolione, an MMP-2 inhibitor, on adhesion and the interactions of inhibitor with a NO donor, S-nitroso-N-acetyl-D, L-penicillamine (SNAP).
Material And Methods:
Human platelets were isolated from blood of healthy volunteers and platelet adhesion to fibrinogen-coated plates was studied by measuring thrombin-stimulated release of platelet a-granule constituent, platelet factor 4. In addition, the mode of action of phenanthroline and NO on platelets was investigated by assaying the levels of intraplatelet cyclic GMP.
Results:
Thrombin-stimulated platelet adhesion to fibrinogen was associated with increased release of MMP-2 from platelets. Phenanthroline (0.1-100 KM) reduced platelet adhesion to fibrinogen. The adhesion was also inhibited by SNAP (0.1-100 KM), an effect abolished by 1H-[1,2,4] oxadiazolol [4,3,-a] quinoxalin-1-one (ODQ), a selective inhibitor of the soluble guanylate cyclase. Co-administration of phenanthroline and SNAP resulted in a synergistic inhibition of platelet adhesion, an effect that was not associated with enhanced cyclic GMP generation by platelets. Furthermore, ODQ did not reverse the synergistic effect of these compounds on adhesion.
Conclusions:
1. MMP-2 promotes platelet adhesion to fibrinogen. 2. Phenanthroline and NO synergize to inhibit platelet adhesion to fibrinogen acting through a cyclic GMP-independent mechanism(s).
Insights
Matrix metalloproteinase-2 (MMP-2) promotes platelet adhesion. MMP-2 inhibitor phenanthroline and nitric oxide (NO) synergistically inhibit platelet adhesion via a cyclic GMP-independent pathway.
Area of Science:
- Biochemistry
- Hematology
- Pharmacology
Background:
- Matrix metalloproteinase-2 (MMP-2) activates platelet aggregation through a non-thromboxane, non-ADP pathway.
- Nitric oxide (NO) is recognized for its inhibitory effects on platelet adhesion and aggregation.
Purpose of the Study:
- Investigate MMP-2 release during platelet adhesion to fibrinogen.
- Determine the effects of phenanthroline, an MMP-2 inhibitor, on platelet adhesion.
- Examine the interaction between phenanthroline and a nitric oxide donor, SNAP.
Main Methods:
- Isolated human platelets from healthy volunteers.
- Assessed platelet adhesion to fibrinogen by measuring thrombin-stimulated release of platelet factor 4.
- Investigated the mechanism of action of phenanthroline and NO by measuring intraplatelet cyclic GMP levels.
Main Results:
- Thrombin stimulation increased MMP-2 release during platelet adhesion to fibrinogen.
- Phenanthroline and SNAP (NO donor) inhibited platelet adhesion.
- Combined phenanthroline and SNAP showed synergistic inhibition of platelet adhesion, independent of cyclic GMP levels.
Conclusions:
- MMP-2 plays a role in promoting platelet adhesion to fibrinogen.
- Phenanthroline and NO exhibit synergistic inhibition of platelet adhesion through mechanisms not involving cyclic GMP.