Search PubMed⌕ Search

PubMed · 5560234

Transfusions today.

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

M Traver. 1971. Transfusions today.. https://pubmed.ncbi.nlm.nih.gov/5560234/

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

KEEP EXPLORING

Related citations

Alterations in tumor necrosis factor-induced endothelial cell procoagulant activity by hyperthermia.

TNF is a cytokine with potent antitumor activity in murine models and when administered clinically via regional perfusion. There is substantial evidence that this antitumor activity depends in large part on TNF's procoagulant effect on tumor neovasculature, which is mediated by induction of endothelial cell tissue factor (TF), a component of the extrinsic clotting cascade. In regional perfusion of a cancer-bearing limb or organ, TNF is always administered under hyperthermic temperatures; however, little is known about the effect of hyperthermia on TNF-mediated procoagulant activity in endothelium. We examined the effects of hyperthermia on TNF-mediated procoagulant activity in human umbilical vein endothelial cells (HUVECs). HUVECs were exposed to TNF at normothermic (37 degrees C) and hyperthermic (41 degrees C) temperatures for 90 min, then assayed for clotting activity, TF protein production and mRNA production of TF and tissue factor pathway inhibitor-2 (TFPI-2), an endogenous inducible inhibitor of TF activity in HUVECs. TNF treatment at 41 degrees C significantly reduced clotting activity, TF protein and mRNA as well as TFPI-2 mRNA compared to treatment at 37 degrees C. These data show that hyperthermia significantly reduces the procoagulant effects of TNF on endothelial tissue compared to normothermia, which may have important clinical implications for the use of TNF in regional perfusion.

Blood Coagulation Factors↗

Absence of association between polymorphisms in the hemostatic factor pathway genes and carotid intimal medial thickness: the Framingham Heart Study.

BACKGROUND AND PURPOSE: Fibrinogen, plasminogen activator inhibitor-1, and other key proteins in the coagulation cascade have been implicated in the origin of cardiovascular disease. Polymorphisms in genes encoding these proteins have been associated with variability in plasma levels of these proteins. Carotid intimal medial thickness (IMT) is a heritable, quantitative measure of atherosclerosis that is predictive of subsequent myocardial infarction and stroke. We sought to test whether carotid IMT is associated with polymorphisms in several well-characterized genes in the hemostatic factor pathways. METHODS: Here, 867 men and 911 women (mean age, 57 years) in the Framingham offspring cohort underwent B-mode carotid ultrasonography to determine the mean internal (ICA) and common carotid artery (CCA) IMT. Age-, sex-, and multivariable-adjusted linear regression was used to estimate the association of the following variants with log-transformed CCA and ICA IMT: factor V Leiden, factor VII Arg/Gln, fibrinogen HindIII beta-148, plasminogen activator inhibitor-1 4G/5G, and the glycoprotein IIIa Pl(A2) polymorphism. RESULTS: Mean ICA IMT was 0.58 mm; mean CCA IMT was 0.60 mm. There were no differences in ICA or CCA IMT by genotype for any of the candidate genes in unadjusted, age- or sex-adjusted, and multivariable-adjusted models. CONCLUSIONS: There is no evidence for an association between well-studied polymorphisms in the hemostatic factor genes and carotid IMT. Whether other common genetic variants in hemostatic factor genes are associated with subclinical atherosclerosis remains to be determined.

Blood Coagulation Factors↗

Foundation and sites of action of antithrombotic agents.

Thromboembolic disorders are a major cause of morbidity and mortality. As knowledge of the complex interactions between the vessel wall, platelets and coagulation and fibrinolytic enzyme systems increases, new avenues for more effective and safer therapies become evident. In this review, we discuss mechanisms of hemostasis in relation to antithrombotic agents and results of clinical trials using these drugs.

Blood Coagulation Factors↗