Search PubMedSearch

PubMed · 6400746

Coagulation.

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

S C Naiman. 1983. Coagulation.. https://doi.org/10.1007/bf03009972

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

KEEP EXPLORING

Related citations

Extrinsic-pathway activation in cancer with high factor VIIa and tissue factor.

Thromboembolic complications are common in patients with malignant disease. We studied the activation of coagulation in 106 patients with solid tumours and 72 healthy volunteers by measuring plasma levels of tissue factor, factor VIIa, factor XIIa, thrombin-antithrombin complex, and prothrombin fragments 1 + 2. Tissue factor was 67% higher in cancer patients (median 582 vs 349 pg/mL, p = 0.0006) and factor VIIa was 46% higher (100 vs 69 mU/mL, p = 0.0002), indicating extrinsic pathway activation. Modest activation of the intrinsic pathway (elevated factor XIIa) was seen only in patients with advanced disease or those receiving chemotherapy. Excess thrombin generation was manifested by elevations in thrombin-antithrombin complex and prothrombin fragments 1 + 2. Tissue factor pathway is clearly implicated in the hypercoagulable state of cancer.

Blood Coagulation

Mathematical analysis of activation thresholds in enzyme-catalyzed positive feedbacks: application to the feedbacks of blood coagulation.

A hierarchy of enzyme-catalyzed positive feedback loops is examined by mathematical and numerical analysis. Four systems are described, from the simplest, in which an enzyme catalyzes its own formation from an inactive precursor, to the most complex, in which two sequential feedback loops act in a cascade. In the latter we also examine the function of a long-range feedback, in which the final enzyme produced in the second loop activates the initial step in the first loop. When the enzymes generated are subject to inhibition or inactivation, all four systems exhibit threshold properties akin to excitable systems like neuron firing. For those that are amenable to mathematical analysis, expressions are derived that relate the excitation threshold to the kinetics of enzyme generation and inhibition and the initial conditions. For the most complex system, it was expedient to employ numerical simulation to demonstrate threshold behavior, and in this case long-range feedback was seen to have two distinct effects. At sufficiently high catalytic rates, this feedback is capable of exciting an otherwise subthreshold system. At lower catalytic rates, where the long-range feedback does not significantly affect the threshold, it nonetheless has a major effect in potentiating the response above the threshold. In particular, oscillatory behavior observed in simulations of sequential feedback loops is abolished when a long-range feedback is present.

Blood Coagulation

Evidence against hypercoagulability in coronary artery disease.

The strong epidemiological association between elevated plasma clotting factors and coronary artery disease is generally interpreted as evidence that patients with coronary atherosclerosis are in a procoagulant (hypercoagulable) state. A dynamic global test was used to assess the overall coagulation status of 761 patients with coronary artery disease scheduled for coronary artery bypass grafting and compared to healthy matched controls (n = 100). Platelet reactivity to shear-stress was simultaneously measured from identical, non-anticoagulated blood samples. Contrary to expectation, the overall coagulation in cardiac patients did not differ significantly from that of controls. Furthermore, the coagulation status of patients bore no relationship to the severity of coronary atherosclerosis. The latter is in contrast with platelet reactivities, which were significantly increased in patients with > or = 2 vessel disease as compared with single vessel disease. The present results do not necessarily conflict with the finding of elevated plasma clotting factors in cardiac patients. However, they do not support the claim that these markers are a reflection of a hypercoagulable state. Indeed, this study confirms that such patients are in a prothrombotic state, which is related to enhanced platelet reactivities, and not to a prothrombotic imbalance of the coagulation mechanism.

Blood Coagulation