PubMed HealthSearch

PubMed · 7414551

Platelet antithrombin activity.

Abstract

The source did not provide an abstract. Follow the original record for more information.

Explore related subjects

Keep this discovery

Explore connections, maps & timelines

BibTeXRIS

E E Czapek, H C Kwaan. 1980-06-01. Platelet antithrombin activity.. https://doi.org/10.1016/0049-3848(80)90217-0

Cite the original work for its findings. Save a collection to share your selection of sources.

KEEP EXPLORING

Related citations

Endothelial cell and hemostatic activation in relation to cytokines in patients with sepsis.

Sepsis is commonly associated with disturbances of the hemostatic balance. Most of the pathophysiological changes in sepsis are caused by endotoxin acting directly through endothelial injury or indirectly through release of cytokines with procoagulant effects. The relation between cytokines and hemostatic parameters was assessed in 32 patients with sepsis. Prothrombin fragment 1+2 (F1+2), thrombin-antithrombin III complexes (TAT), tissue type plasminogen activator (t-PA) functional and antigen, plasminogen activator inhibitor-1 (PAI-1), plasminalpha2-antiplasmin complexes (PAP), D-Dimer, thrombomodulin (TM) and von Willebrand factor (vWF) were measured in patients and in 30 healthy subjects. The levels of cytokines TNF-alpha and interleukin-6 (IL-6) also were determined. A significant increase of F1+2, TAT, PAI-1, PAP, and D-Dimer was observed in septic patients as compared with controls (p<0.0001), whereas t-PA activity was significantly reduced (p<0.01). The markers of endothelial cell activation TM, vWF, and t-PA antigen also were elevated significantly as compared with the control group (p<0.01). Finally, we found a marked increase of TNF-alpha and IL-6 (p<0.0001). Whereas the increase of cytokine levels could be partially responsible for the hemostatic activation, it did not correlate with markers of endothelial activation in patients with sepsis.

Antithrombin III

Prothrombin fragments F1+2, thrombin-antithrombin III complexes, fibrin monomers and fibrinogen in patients with coronary atherosclerosis.

We determined the plasma levels of prothrombin fragment F1+2, thrombin-antithrombin III complexes (TAT), fibrin monomers (FM), D-dimers (DD) and fibrinogen in 57 patients with angiographically verified graded coronary artery disease (CAD) free of concomitant peripheral atherosclerosis, cerebrovascular disease or diabetes mellitus and a group of 21 apparently healthy controls. Blood was collected from the antecubital vein through atraumatic venipuncture prior to the angiographic procedure. Plasma levels of hemostatic markers were related to the presence and graded severity of CAD. The levels of prothrombin fragment F1+2 (1.74+/-0.11 vs. 1.0+/-0.07 nmol/l, P<0.001), FM (41.6+/-5.5 vs. 7.42+/-3.05 nmol/l, P<0.001), TAT (15.6+/-2.7 vs. 2.96+/-0.32 microg/l, P<0.001) and fibrinogen (3.64+/-1.3 vs. 3.08+/-0.33 g/l, P<0.01) were significantly higher in patients with CAD compared to controls, while there was no difference regarding the fibrinolytic system represented by DD (441.6+/-58.9 vs. 337.4+/-42.05 microg/l, n.s.). Within the CAD group, patients with extensive coronary atherosclerosis (> or =2 vessel disease) had significantly higher values for prothrombin fragment F1+2 (1.89 vs. 1.57 nmol/l, P = 0.04), FM (50.7 vs. 29.8 nmol/l, P = 0.03), and a trend to significance was noted for fibrinogen (3.9 vs. 3.3 g/l, P = 0.07) suggesting that blood coagulability was related to the severity of the disease and that hemostatic markers of thrombin activity represent a useful tool to identify patients with a latent hypercoagulable state with a higher susceptibility to sustain coronary thrombosis.

Antithrombin III

Protein disulfide isomerase catalyzes the formation of disulfide-linked complexes of thrombospondin-1 with thrombin-antithrombin III.

The recent demonstration of a protein disulfide isomerase (PDI) on the surface of and secreted from blood platelets raises the possibility that proteins involved in hemostasis and wound healing are also substrates of this enzyme. In this study purified preparations of platelet PDI, thrombospondin-1 (TSP), alpha-thrombin, and antithrombin III (AT) were used to demonstrate that PDI catalyzes formation of a TSP-thrombin-AT complex consistent with previous results with supernatant platelet activation. Concentrations of 1.25 microg/ml of PDI were sufficient to convert almost 50% of thrombin to TSP-thrombin-AT complex. Complex formation requires low concentrations of a reduced thiol and the reaction can be prevented by N-ethymaleimide. The complex is dissociated by reducing agents such as mercaptoethanol. Absence of Ca2+ and the addition of EDTA increased the rate of complex formation, indicating that TSP in the Ca2+-free form is most effective. In the absence of AT a small amount of TSP-thrombin complex formed which was only 0-13% of maximal complex formation in the presence of AT. This result, in combination with kinetic studies showing rapid formation of thrombin-AT complex followed by conversion to ternary complex, suggests that the thrombin-AT complex is an obligatory intermediate in the reaction. Under optimal conditions over 70% of the thrombin is incorporated into the complex in 60 min. Heparin accelerated the reaction largely by enhancing formation of thrombin-AT complexes and had little effect on TSP. PDI coprecipitated with TSP from the supernatant solution of activated platelets, suggesting an association between PDI and its substrate. In summary, these data are consistent with a role for PDI-catalyzed formation of disulfide-linked complexes of TSP with other proteins.

Antithrombin III