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Comparison between CoaguChek S- and Owren-type prothrombin time assay for monitoring anticoagulant therapy.

INTRODUCTION: Anticoagulation therapy with warfarin is monitored by the prothrombin time (PT) assay. The PT is standardized using international normalized ratios (INRs). By keeping the INR within specific values, it is possible to reduce potential complications from the treatment. To facilitate the PT monitoring, point-of-care devices suitable for capillary whole blood measurements have been developed. The aims of this study were to compare the INR values obtained by such a device, CoaguChek S, with those obtained from the Owren-type PT assay and to evaluate the differences seen. MATERIALS AND METHODS: In 351 consecutive warfarin-treated patients, INR was measured in capillary whole blood samples with CoaguChek S and was compared to venous plasma samples analyzed with the Owren PT method. Sixty-nine of these patients, including those deviating the most between the methods, were further evaluated according to levels of factor II (prothrombin), factor V, factor VII, factor X, fibrinogen, activated partial thromboplastin time (aPTT) and antiphospholipid antibodies. RESULTS: The results from CoaguChek S produced a correlation coefficient of 0.81 to the Owren-type PT assay and a concordance of 85.2%. Factor V and fibrinogen correlated significantly (p<0.05) to the degree of deviation between the methods. The presence of antiphospholipid antibodies did not influence the degree of deviation between the two methods. CONCLUSIONS: INR analysis of whole blood with CoaguChek S is comparable with INR measured in plasma with Owren chemistry. The activities of factor V and fibrinogen contribute to the deviation seen between the methods. Differences in sensitivity to antiphospholipid antibodies could not be demonstrated.

Anticoagulants↗

Prothrombin complex concentrate versus recombinant factor VIIa for reversal of coumarin anticoagulation.

INTRODUCTION: Prothrombin complex concentrate (PCC) is recommended for emergency reversal of oral coumarin anticoagulation. Recently, recombinant factor VIIa (rFVIIa) has also been investigated for this purpose, although no direct comparison of PCC and rFVIIa has been reported. This study was designed to compare the effectiveness of PCC and rFVIIa for reversal of both acute and sustained coumarin anticoagulation. MATERIALS AND METHODS: In the acute model, rats received 2.5 mg.kg(-1) phenprocoumon, and reversal of anticoagulation by 4.88 mL.kg(-1) saline, 100 microg.kg(-1) rFVIIa (NovoSeven) or 50 U.kg(-1) PCC (Beriplex P/N) was assessed at 16 h. For the sustained model, a second phenprocoumon dose was administered at 24 h and anticoagulation reversal evaluated at 48 h. Study endpoints were activated partial thromboplastin time (aPTT), prothrombin time (PT) and tail tip bleeding. RESULTS: Acute anticoagulation raised median PT to 4.3 fold the normal level. This elevation was nearly completely reversed both by rFVIIa and PCC. aPTT increase was minor. Effects of sustained anticoagulation were more severe and pervasive, with aPTT, PT and blood loss increasing to 7.7, 51 and 30 fold the control levels, respectively. In the sustained model, rFVIIa substantially reduced and PCC fully normalized PT. In this model, PCC also diminished aPTT (p<0.01), fully normalized blood loss (p<0.01) and shortened bleeding time (p=0.008), while rFVIIa was without significant effect on these endpoints. CONCLUSIONS: In a sustained anticoagulation animal model designed to simulate standard long-term oral coumarin therapy in patients, PCC was more effective than rFVIIa in restoring hemostatic function.

Animals↗

The interval between prothrombin time tests and the quality of oral anticoagulants treatment in patients with chronic atrial fibrillation.

BACKGROUND: The incidence of stroke in patients with atrial fibrillation (AF) can be significantly reduced with warfarin therapy especially if optimally controlled. OBJECTIVES: To evaluate the effect of the interval between consecutive prothrombin time measurements on the time in therapeutic range (INR 2-3) in a cohort of patients with AF on chronic warfarin treatment in the community. METHODS: All INR measurements available from a relatively large cohort of patients with chronic AF were reviewed and the mean interval between consecutive INR tests of each patient was correlated with the time in therapeutic range (TTR). RESULTS: Altogether 251,916 INR measurements performed in 4408 patients over a period of seven years were reviewed. Sixty percent of patients had their INR measured on average every 2 to 3 weeks and most others were followed at intervals of 4 weeks or longer. A small proportion (3.6%) had their INR measured on average every week. A significant decline in the time in therapeutic range was observed as the intervals between tests increased. At one to three weeks interval the TTR was 48%, at 4 weeks interval 45% and at 5 weeks 41% (P<0.0005). A five percent increment in TTR was observed if more tests were performed at multiplications of exactly 7 days (43% vs 48% P<0.0001). CONCLUSIONS: A better control with an increase in the TTR was observed in patients with atrial fibrillation if prothrombin time tests are performed at regular intervals of no longer than 3 weeks.

Administration, Oral↗

Genetic susceptibility to pregnancy-related venous thromboembolism: roles of factor V Leiden, prothrombin G20210A, and methylenetetrahydrofolate reductase C677T mutations.

OBJECTIVE: This study's objective was to evaluate the association between venous thromboembolism during pregnancy and the postpartum period and the factor V Arg 506 Gln (factor V Leiden), the prothrombin G20210A, and methylenetetrahydrofolate reductase C677T polymorphisms. STUDY DESIGN: In this case-control study 42 case patients and 213 control subjects (parous age-matched women without history of thrombosis) were genotyped for all the polymorphisms. Moreover, antiphospholipid antibodies and protein C, protein S, and antithrombin III deficiencies were investigated in each case. RESULTS: Ten case patients (23.8%) and 4 control subjects (1.9%; odds ratio 16.3, 95% confidence interval 4.8-54.9) carried the factor V Leiden mutation; 13 case patients (31.0%) and 9 control subjects (4.2%; odds ratio 10.2, 95% confidence interval 4.0-25.9) were carriers of the prothrombin G20210A allele. Finally, 12 case patients (28.6%) and 34 control subjects (16.0%; odds ratio 2.1, 95% confidence interval 1.0-4.5) were homozygotes for methylenetetrahydrofolate reductase C677T. Overall, mutations were found in 25 case patients (59.5%) and 47 control patients (22.2%; odds ratio 5.2, 95% confidence interval 4.9-19.6). One patient carried the antithrombin III deficiency and 1 the protein S deficiency, whereas 2 women had a primary antiphospholipid syndrome. CONCLUSIONS: The significant risk estimates of having a pregnancy-related venous thromboembolism in the presence of the prothrombotic genetic risk factors analyzed suggest to screen for these mutations women with a personal history of thromboembolic events during pregnancy or the postpartum period.

Adult↗

The determination of a calcium-dependent binding constant of the bovine prothrombin Gla domain (residues 1-45) to phospholipid vesicles.

Calcium-mediated binding of the radioiodinated peptide representing residues 1-45 of bovine prothrombin to single bilayer phospholipid vesicles composed of phosphatidylserine from bovine brain and synthetic 1-palmitoyl-2-oleoyl-phosphatidylcholine (25:75 PS/PC) has been studied over peptide concentrations from 0.33 microM to 3.75 microM and at a calcium concentration of 1.0 mM. The binding isotherm for the interaction between the radioiodinated peptide and PS/PC vesicles fits a model in which there is noncooperative binding of the peptide to non-interacting sites on the phospholipid bilayer. A dissociation constant determined at these conditions is 11.8 microM compared to 1.0 microM for prothrombin fragment 1.

1-Carboxyglutamic Acid↗

Prevalence of the prothrombin 20210 G-to-A variant in blacks: infants, patients with venous thrombosis, patients with myocardial infarction, and control subjects.

A genetic variation in the prothrombin gene is located in the 3-untranslated region at position 20210 where a G-->A transition occurs. The prevalence of the mutation is 1% to 2% in white populations, and the mutation is associated with an increased risk of venous thrombosis and myocardial infarction. We report the prevalence of the A allele in blacks at birth; in black control subjects with no history of heart attack, stroke, or blood clots; in black patients with venous thrombosis; and in black patients with myocardial infarction. Among 318 infants, the prevalence of the A allele was 0.2% (1 heterozygote), with an exact, one-sided upper 95% confidence limit of 0.7%. Among 185 control subjects the variant was absent, yielding an exact, one-sided upper 95% confidence limit of 0.8% for the A allele. The heterozygous genotype was found in 2 of 91 subjects with deep vein thrombosis and in none of 123 subjects with myocardial infarction. The very low prevalence of the A allele indicates that the prothrombin variant is not a major cause of venous thrombosis or myocardial infarction in blacks.

3' Untranslated Regions↗

Prothrombin G20210A mutation in a child with spinal cord infarction.

Prothrombin G20210A is a newly described common mutation that is associated with an increased risk of arterial and venous thrombosis. We describe a healthy child heterozygous for this prothrombin mutation who had a spinal cord infarct with no other prothrombotic risk factors.

Family↗

Markers of activated coagulation in patients with factor V Leiden and/or G20210A prothrombin gene mutation.

The activated protein C (APC) resistance phenotype associated with an abnormal factor V Leiden (FVL), and the G20210A prothrombin gene mutation are the most common findings in patients with venous thromboembolism (VTE). In a group of 210 patients, we compared the levels of markers of coagulation activation in carriers of FVL (71 heterozygous, 30 homozygous), G20210A prothrombin mutation (88 heterozygous) or both mutations combined (21 heterozygous), in order to assess whether these markers allow identification of a group of patients with a higher risk of thrombosis; they were also compared to normal values. A total of 143 patients had a personal history of VTE and 67 were asymptomatic. None of them had other hereditary causes of thrombophilia or an antiphospholipid syndrome. None were currently treated with either anticoagulant or hormonal treatment. Pregnant women were excluded. No significant difference between the four groups of patients could be found in the levels of F1+2, TAT and DDI. Levels were all significantly higher than the control values (p<0.05). The levels of F1+2 and TAT were similar in patients with or without a history of VTE, regardless of the type of mutation. DDI levels were significantly higher in patients with a history of VTE than in asymptomatic subjects (443+/-248 vs. 333+/-222 ng/ml, p=0.02) but with only 57% sensitivity and specificity. In conclusion, our study confirms the hypercoagulable state found in mutation carriers and points out the inability of F1+2 and TAT assays to identify a group of subjects at higher risk of thrombosis, within carriers of genetic risk factors. Although the sensitivity and specificity of DDI assay are low, high DDI concentrations tend to be associated with the risk of VTE.

Adult↗

Variations of prothrombin time and international normalized ratio in patients treated with warfarin.

Prothrombin time is a standard screening test to monitor patients treated with oral anticoagulants. We hypothesize that INR measurements will not vary a lot within a given day in a given patient. The present study was thus conducted to compare the change of the international normalized ratio (INR) of prothrombin time (PT) within 1 day in patients treated with warfarin. Thirty such patients and nineteen healthy controls were enrolled into this study. PT was performed in four time points of a day in all subjects, two in the morning and two in the afternoon. The four INR values obtained were compared with each other to find little change in the series of time either in patients or in healthy controls. Neither were they affected by renal function, liver function, sex, age, hemoglobin, white cell count, platelet, treatment duration of warfarin, or alcoholic drinking. INR could be measured in any time of a day to have values equally valuable in clinical use.

Aged↗

Increased prevalence of a polymorphism in the gene coding for human prothrombin in patients with coronary heart disease.

A number of genetic risk factors for the development of coronary heart disease has been identified in the past. Some of these represent polymorphisms in genes of proteins which are associated with the process of blood clotting. We investigated the distribution of a recently described G/A polymorphism in the 3'untranslated region of the human prothrombin gene (nt 20210) in 98 patients (19 female age: 53 + 12 SD years and 79 male, age: 49 + 8.5 SD years) with coronary heart disease and in 102 healthy newborns by enzymatic amplification of the genomic DNA carrying the polymorphic site and by subsequent restriction digest. The diagnosis of coronary heart disease was established by coronary angiography in all patients. The frequency of the A allele in the healthy newborns was 0.98% (0.2%-3.5%; CI 0.95) with the G/A genotype occurring in 1.96% (0.24%-6.9%; CI 0.95). In the group of patients with coronary heart disease the G/A genotype was found in 5.1% (1.7%-11.4%; CI 0.95). 94.9% of the patients studied showed a G/G genotype. The A/A genotype was neither detected in the newborns nor in the patients with coronary heart disease. This preliminary study strongly suggest that the presence of the G/A polymorphism in the 3'untranslated region of the gene coding for human prothrombin is associated with the occurrence of coronary heart disease.

Adult↗

Rational, high quality laboratory monitoring before, during, and after infusion of prothrombin complex concentrates.

Prothrombin complex concentrates (PCCs) have been used for over thirty years to treat or prevent bleeding due to hemophilia B, vitamin K deficiency, warfarin overdose, liver disease, or deficiency of one of the prothrombin complex factors. This article tries to answer the questions of which profile of laboratory assays is required for the establishment of the diagnosis; what are indications of replacement therapy with PCCs; how to monitor the therapeutic effect; and how to monitor a possible prethrombotic state after PCC infusion. After proposing basic, standard, and optimal profiles of hemostaseological assays, the basic principal characteristics of a quality management satisfying the requirements of good laboratory practice are discussed.

Blood Coagulation Factors↗

The use of prothrombin complex concentrates in the treatment of hemorrhages induced by oral anticoagulation.

Bleeding events are a common adverse effect in oral anticoagulation that frequently depend on the duration and intensity of treatment. Major bleeding events, particularly intracerebral hemorrhages, are a serious complication in cases that require the rapid reversal of anticoagulation. Urgent correction of the coagulation defect is also indicated when major emergency surgery is necessary. In addition to vitamin K supplementation, the administration of prothrombin complex concentrates is the most effective measure for the rapid reversal of anticoagulation. Due to the time-consuming administration and increased risk of volume overload, the administration of fresh frozen plasma is less advisable in such instances. The application of prothrombin complex concentrates requires a precautious risk-benefit evaluation, including an estimation of contraindications and repeated laboratory monitoring for dose adjustment.

Administration, Oral↗

The prothrombin nt20210 A allele as a risk factor for venous thromboembolism: detection of heterozygous and homozygous carriers by alternative methods.

The A allele of a G/A dimorphism at position nt20210 in the 3'-untranslated region of the prothrombin gene has been recently identified as a common risk factor for venous thrombosis. It is detected mostly by PCR amplification using a mutagenic primer and subsequent restriction analysis. We have applied two alternative methods--DGGE and SSCP-to analyse the nt20210 dimorphism in a series of 383 consecutive patients with deep venous thrombosis and in 144 controls. Both screening methods resulted in the unambiguous identification of carriers of the nt20210 A allele not only in heterozygotes but in two cases as well in homozygous state. The frequency of the A allele was 0.7% in the control group but 3.7% in the patient group, demonstrating a substantial increase in risk for venous thrombosis in carriers of the 20210 A allele. Both methods have the potential to detect other DNA sequence variations in the vicinity of the 20210 G/A dimorphism. This was demonstrated by the identification of a new mutation T20122G in the 3'-untranslated region of the prothrombin gene in a single patient.

Alleles↗

Use of factor-VII-rich prothrombin complex concentrate in liver disease.

A prothrombin complex concentrate rich in factor VII has been used in the management of the clotting defect in thirteen patients with liver disease. Adequate correction of coagulation was achieved immediately after infusion in all cases. Within 4 hours there was some deterioration and by 24 hours the results approximated to pre-fusion values. Liver biopsies were performed without haemorrhagic complication in the immediate post-infusion period. There was no evidence of induced intravascular coagulation. Since other prothrombin complex concentrates have proved disappointing, both in their failure to correct the clotting defect and in their production of disseminated intravascular coagulation, this factor-VII-rich concentrate may be the treatment of choice in patients with liver disease who require temporary correction of their coagulation defect.

Blood Coagulation Disorders↗

Ca++ binding properties of human prothrombin.

The binding of Ca++ to human prothrombin has been investigated by equilibrium dialysis. The protein exhibited a positive cooperativity phenomenon for the first three Ca++ bound. Eleven to twelve Ca++ binding sites have been found. They could be differentiated in terms of two classes of sites with respect to their Ca++ affinity: 5 strong binding sites (log Kassoc = 3.9) and 7 weak binding sites (log Kassoc = 2.9). We attempted to determine the Hill coefficient of the strong binding sites responsible for cooperativity. Results have been compared to data previously reported for bovine prothrombin.

Animals↗

Factor V Leiden, prothrombin 20210G --> A, methylenetetrahydrofolate reductase 677C --> T and plasminogen activator inhibitor 4G/5G polymorphism in women with pregnancy-related venous thromboembolism.

OBJECTIVE: To establish the prevalence of inherited and acquired risk factors for development of venous thromboembolism (VTE) in pregnancy and the puerperium. STUDY DESIGN: In a retrospective study, 30 women with a history of objectively confirmed venous thromboembolism during pregnancy or the puerperium were studied. Fifty-six women with normal pregnancies were included as controls. Antithrombin, protein C, protein S, lupus anticoagulants, homocysteine, factor V Leiden mutation, prothrombin 20210G-->A polymorphism, methylenetetrahydrofolate reductase (MTHFR) 677C-->T polymorphism and the -675 (4G/5G) polymorphism in plasminogen activator inhibitor 1 gene were analysed. RESULTS: At least one thrombophilic defect was observed in 16 (53.3%) cases and in 12 (21.4%) controls (P=0.003); factor V Leiden in 8 (26.7%) cases and 3 (5.7%) controls (P=0.009); prothrombin 20210G-->A polymorphism in 8 (26.7%) cases and 4 (7.5%) controls (P=0.021) and antithrombin deficiency in 4 (13.3%) cases and in 1 (1.8%) control (P=0.029). Other inherited and acquired risk factors were similarly distributed among cases and controls. CONCLUSION: Women with pregnancy-related venous thromboembolism have an increased prevalence of inheritable thrombophilic defects predisposing them to an increased risk of thrombosis.

Alleles↗

Small for gestational age infant in association with maternal prothrombin gene variant (nt 20210A).

Most of disproportionate infants born small for gestational age (SGA) have an history of placental dysfunction with no explained cause. We report a case of an unexplained SGA infant with placental infarctions and thrombosis. Maternal thrombophilic disorder tests revealed that the patient was heterozygous for the A20210 prothrombin gene variant a newly identified thrombotic risk factor. It may be suggest that prothrombin gene variant, as factor V Leiden, could be a genetic risk factor for placental insufficiency.

Adult↗

Evidence for multiple enzyme site involvement in the modulation of thrombin activity by products of prothrombin proteolysis.

Kinetic evidence is presented for the interaction of prothrombin with several distinctive topological regions of the thrombin molecule. Modulations of thrombin catalytic activity on the protein substrates prothrombin and prethrombin 1 are demonstrated that involve the fragment 1 and fragment 2 portions. The inhibitory effects are demonstrably non-competitive. In addition to exhibiting non-competitive inhibition, fragment 2 is capable of enhancing proteolysis by thrombin; and therefore to react with a second region of the enzyme. On the basis of the crystallographic studies of the complex between fragment 2 and thrombin (Arni et al., Biochemistry 32 (1992) 4727), this activating site is proposed to be associated with exosite II. The allosteric switch between procoagulant and anticoagulant activities identified from studies by Di Cera (Dang et al., Proc. Natl. Acad. Sci USA 92 (1995) 5977) could be 'thrown' by a macromolecular effector that is generated during thrombin formation--a plausible mechanism for switching that deserves further investigation.

Allosteric Site↗