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Biomedical subjects

P A Kyrle

Publications and source records attributed to P A Kyrle.

At least 19 recordsLinked to original sources

Prediction of recurrent venous thromboembolism by the activated partial thromboplastin time.

BACKGROUND: Venous thromboembolism (VTE) is a multi-factorial disease. Extensive thrombophilia screening is costly and often inconclusive. Simple laboratory methods are required to predict the risk of recurrence. OBJECTIVE: To assess if measurement of activated partial thromboplastin time (APTT) allows stratification of patients with VTE into high- and low-risk categories with regard to recurrence. PATIENTS AND METHODS: We prospectively followed 918 patients with a first unprovoked VTE and studied the relationship between recurrence and an APTT after discontinuation of anticoagulation. APTT was expressed as a ratio of test to reference coagulation times. Study endpoint was symptomatic recurrent VTE. RESULTS: Venous thromboembolism recurred in 101 (11%) patients. Patients without recurrence had a greater APTT ratio than those with recurrence (0.97 +/- 0.09 vs. 0.93 +/- 0.09, P = 0.001). After 4 years, probability of recurrent VTE was 8.5% (95% CI: 5.5-11.5%) among patients with a ratio equal to or > 0.95 and 15.6% (95% CI: 11.4-19.9%) among patients with a lower ratio (P = 0.005). Compared with patients with an APTT ratio < 0.95, the relative risk (RR) of recurrence among patients with a ratio equal to or > 0.95 was 0.56 (95% CI: 0.38-0.84, P = 0.005) before and 0.58 (95% CI: 0.39-0.87, P = 0.009) after adjustment for sex, age, factor V Leiden, and factor II G20210A. CONCLUSIONS: Measurement of APTT allows stratification of patients with VTE into high- and low-risk categories with regard to recurrence.

Adult↗

Idiopathic venous thrombosis. Long-term anticoagulant therapy? No.

Venous thrombosis is a chronic disease with a recurrence rate of approximately 30% within 5-8 years. The optimal duration of secondary thromboprophylaxis in these patients entails balancing the risk of recurrence against the risk of treatment-associated bleeding. There is agreement that patients with a first idiopathic venous thrombosis should receive vitamin K antagonists for at least 3-6 months. Convincing trials showing a clinical benefit in terms of morbidity or mortality with respect to expansion of anticoagulation beyond 6 months are lacking. Nevertheless, some subgroups of patients with venous thrombosis may benefit from indefinite anticoagulation. Thus, patients with antithrombin deficiency, combined or homozygous defects, more than one unprovoked episode of thrombosis, the lupus anticoagulant or high factor VIII plasma levels are good candidates for long-term prevention.

Anticoagulants↗

Risk of pregnancy-associated recurrent venous thromboembolism in women with a history of venous thrombosis.

BACKGROUND: Limited data exist on the risk of pregnancy-associated venous thromboembolism (VTE) in women with a history of VTE. OBJECTIVE: To evaluate the risk of recurrent pregnancy-associated thrombosis in women with previous VTE in a large retrospective cohort study. PATIENTS AND METHODS: One hundred and fifty-nine women with at least one pregnancy (293 pregnancies in total) after a VTE were included into the study. The patients underwent a standardized interview on their history of thrombosis and pregnancy-associated complications. RESULTS: Eight recurrent events occurred during 197 pregnancies without thrombosis prophylaxis. The probability of VTE during pregnancy without thrombosis prophylaxis was 6.2% (95% confidence interval 1.6-10.9%). The risk was constant over the whole period of pregnancy. Of the eight women with VTE during pregnancy four had heterozygous FV:R506Q, two in combination with hyperhomocysteinemia. No VTE occurred during 87 pregnancies with thrombosis prophylaxis. In the postpartum period 15 VTEs occurred, two of 83 (2.4%) after pregnancy termination, one of 53 (1.9%) after miscarriage, three of 10 (30%) after stillbirth and nine of 138 (6.5%) after live birth. CONCLUSIONS: Without thrombosis prophylaxis the risk for recurrent symptomatic VTE is substantial during the whole period of pregnancy in women with previous VTE. The majority of events occurred after delivery, reflecting the very high risk during the postpartum period. Prospective and comparative trials to ascertain efficacy and safety of prophylactic heparin are urgently needed.

Adolescent↗

The post-thrombotic syndrome: risk factors and impact on the course of thrombotic disease.

BACKGROUND: The post-thrombotic syndrome (PTS) is a frequent complication of deep vein thrombosis (DVT). Patients with recurrent ipsilateral DVT have an increased risk of PTS; other risk factors are unknown. OBJECTIVES: To establish risk factors of PTS and its impact on venous thrombotic disease. PATIENTS: We prospectively followed 406 patients after a first symptomatic DVT for a median of 60 months. Patients with recurrent DVT, a natural inhibitor deficiency, the lupus anticoagulant, cancer, long-term anticoagulation, an observation time < 18 months and DVT-recurrence prior PTS-assessment were excluded. Study outcomes were occurrence of PTS and recurrent symptomatic DVT. RESULTS: PTS was assessed after 44 +/- 23 months (mean +/- SD) using a clinical classification score. PTS developed in 176 of 406 patients (43.3%). Severe PTS was rare (1.4%). Proximal DVT was the strongest risk factor of PTS [odds ratio (OR) 2.1, 95% confidence interval (CI) 1.3-3.7]. Male gender (OR 1.6, 95% CI 1.0-2.8) and elevated D-dimer levels (OR 1.9, 95% CI 1.0-3.9) were weaker risk factors. Factor V Leiden, factor II G20210A or high factor VIII did not confer an increased risk of PTS. At 4 years, the cumulative probability of recurrence was 7.4% (95% CI 3.2-11.7) among patients with PTS when compared with 1.6% (95% CI 0-3.5; P < 0.02) among patients without PTS. The risk of recurrence was 2.6-fold (95% CI 1.2-5.9) increased when PTS was present. CONCLUSIONS: Proximal DVT, male gender, and high D-dimer levels are independently associated with the development of PTS in patients with a first DVT. Patients with PTS have an increased risk of recurrent venous thromboembolism.

Adult↗

Prevention of deep vein thrombosis in orthopedic surgery.

In the absence of thromboprophylaxis, venous thromboembolism (VTE) affects about 50 to 80% of the patients after total hip replacement (THR), total knee replacement (TKR), or hip fracture surgery. Since stratification of patients in those who will become symptomatic and those who will not, is not possible, primary high risk thromboprophylaxis should be provided to all patients undergoing major orthopedic surgery of the lower extremity. Various non-pharmacologic and pharmacologic thromboprophylactic measures have been evaluated. With regard to pharmacologic thromboprophylaxis unfractionated heparin has now almost completely been replaced by low molecular weight heparin (LMWH) for VTE prophylaxis. The use of acetylsalicylic acid for thromboprophylaxis in patients undergoing major orthopedic surgery of the lower extremities is not recommended. The optimal beginning of LMWH thromboprophylaxis is either 2 hours preoperatively or 6 to 8 hours postoperatively. Extended thromboprophylaxis (beyond 7 to 10 days after surgery) is recommended for high-risk patients. New antithrombotics, such as fondaparinux or (xi)melagatran, significantly reduce the risk of asymptomatic but not of symptomatic VTE compared to LMWH. In the light of other potential side effects (e.g., an increased bleeding risk) and high costs the role of these new drugs in the prophylaxis of VTE in patients undergoing major orthopedic surgery of the lower extremities remains to be established.

Anticoagulants↗

Efficacy and safety of splenectomy in adult chronic immune thrombocytopenia.

For patients with adult chronic immune thrombocytopenia (ITP) splenectomy (SE) is a highly effective treatment, but there are still uncertainties regarding the long-term efficacy and safety. We evaluated the long-term efficacy and safety of SE in 48 consecutive adult patients with chronic ITP (26 women, 22 men) who underwent SE between 1990 and 2001 at the General Hospital in Vienna, Austria. All patients had no remission after steroid treatment and were steroid dependent. The median age at the time of SE was 44 years (range: 16-77 years). Of 48 patients, 37 achieved a complete remission (CR, platelet count >100 x 10(9)/l), 8 a partial remission (PR) (platelet count 30-100 x 10(9)/l), and 2 had no response (NR). The probability of the overall survival was 98% at a median postsplenectomy observation time of 3.5 years. Seven patients with CR and four patients with PR relapsed. There were no relapses after 1 year. The probability of continuous complete remission (CCR) at 10 years was 79%. The probability of having a platelet count of >100 x 10(9)/l or >30 x 10(9)/l was 61% and 67%, respectively, at 5 and 10 years after splenectomy. Of the 11 relapsed patients, 5 had a second CR ( n=3) or PR ( n=2). The postoperative platelet count was the best predictor for a long-term remission. All patients with postoperative platelet counts >250 x 10(9)/l remained in CR. Patients aged >45 years had a similar success rate as compared with younger patients. Three patients had infections (one pneumonia and two fever of unknown origin) requiring hospitalization, but none had overwhelming septicemia.

Adolescent↗

The risk of recurrent venous thromboembolism among patients with high factor IX levels.

High factor IX (FIX) is a risk factor of deep vein thrombosis. The impact of high FIX on the risk of recurrent venous thrombosis is unknown. We prospectively followed 546 patients after anticoagulation for a first spontaneous venous thromboembolism. Patients with a natural coagulation inhibitor deficiency, lupus anticoagulant or cancer were excluded. At 3 years, the likelihood of recurrence was 23% among patients with high FIX (exceeding the 75th percentile) compared with 11% among patients with lower levels. Among patients with high FIX, the relative risk of recurrence was 2.2 (95% CI: 1.3-3.6) before and was 1.6 (95% CI: 1.0-2.8) after adjustment for age, gender, duration of anticoagulation, FV Leiden, FII G20210A, high FVIII and hyperhomocysteinemia. Compared with patients with low factor IX (< 138 IU dL(-1)) and low FVIII (</= 234 IU dL(-1)), the relative risk of recurrence was 1.5 among patients with high FIX and low FVIII, 2.7 among patients with low FIX and high FVIII and 6.6 among patients with high FIX and high FVIII. High levels of FIX confer an increased risk of recurrent venous thromboembolism and enhance the risk of recurrence among patients with high FVIII.

Adult↗

The risk of recurrent venous thromboembolism.

Venous thromboembolism (VTE) is a chronic rather than acute disease. After withdrawal of secondary thromboprophylaxis, many patients will experience a subsequent episode of thrombosis. Of these patients, approximately 5% will die from pulmonary embolism. The risk of recurrent VTE depends on the number of risk factors and their severity. High-risk patients, i.e. those with a natural coagulation inhibitor deficiency, recurrent thrombosis, active cancer, the lupus anticoagulant or compound clotting defects most probably benefit from indefinite oral anticoagulation. In these patients the risk of bleeding due to anticoagulant treatment seems to be outweighed by the risk of VTE. Patients with hyperhomocysteinemia or high factor (F) VIII plasma levels are also at an increased risk of recurrence. The optimal duration of secondary thromboprophylaxis in these patients is currently under investigation. Patients with the heterozygous F V Leiden mutation or the G20210A mutation in the F II gene do not require extended anticoagulation since their risk of recurrence is similar as in patients without the aforementioned mutations. Patients with VTE secondary to surgery or trauma have a relatively low risk of recurrence. In these patients short-term secondary thromboprophylaxis (6 to 12 weeks) is justified whereas patients with a first episode of spontaneous VTE should be treated with oral anticoagulants for a longer period of time (3 to 6 months).

Administration, Oral↗

Impact of the factor II: G20210A variant on the risk of venous thromboembolism in relatives from families with the factor V: R506Q mutation.

OBJECTIVES: Factor V: R506Q mutation and the prothrombin G20210A variant (factor II: G20210A variant) are associated with an increased risk of venous thromboembolism (VTE). In cohorts of unrelated patients a cosegregation of both mutations has been shown to be associated with an increased risk of developing VTE. The aim of this study was to investigate the impact of the coinheritance of both mutations on the risk of VTE in relatives of symptomatic carriers of the factor V: R506Q mutation and the factor II: G20210A variant. PATIENTS AND METHODS: Four families with 48 family members were investigated for the presence of the factor V: R506Q mutation and the factor II: G20210A mutation, and their clinical history was evaluated. RESULTS: VTE was more frequent in family members with a combined defect (3/10; 30%) compared to those with a single mutation (1/16; 6%) or without a defect (1/12; 8%). The probability for VTE for 40-yr-old individuals with both mutations, a single mutation and no mutation was 56%, 12% and 20%, respectively. CONCLUSIONS: These data suggest that the G to A transition at position 20210 of the prothrombin gene leads to an increase in the risk of VTE in carriers of the factor V: R506Q mutation. The determination of the factor II: G20210A variant in index patients carrying a factor V: R506Q mutation and, if present, in family members may help to identify individuals who are at high risk for VTE.

Adolescent↗

High plasma levels of factor VIII and the risk of recurrent venous thromboembolism.

BACKGROUND: A high plasma level of factor VIII is a risk factor for venous thromboembolism. We evaluated the risk of a recurrence of thrombosis after an initial episode of spontaneous venous thromboembolism among patients with high plasma levels of factor VIII. METHODS: We studied 360 patients for an average follow-up period of 30 months after a first episode of venous thromboembolism and discontinuation of oral anticoagulants. Patients who had recurrent or secondary venous thromboembolism, a congenital deficiency of an anticoagulant, the lupus anticoagulant, hyperhomocysteinemia, cancer, or a requirement for long-term treatment with antithrombotic drugs or who were pregnant were excluded. The end point was objectively documented, symptomatic recurrent venous thromboembolism. RESULTS: Recurrent venous thromboembolism developed in 38 of the 360 patients (10.6 percent). Patients with recurrence had higher mean (+/-SD) plasma levels of factor VIII than those without recurrence (182+/-66 vs. 157+/-54 IU per deciliter, P=0.009). The relative risk of recurrent venous thrombosis was 1.08 (95 percent confidence interval, 1.04 to 1.12; P<0.001) for each increase of 10 IU per deciliter in the plasma level of factor VIII. Among patients with a factor VIII level above the 90th percentile of the values in the study population, the likelihood of recurrence at two years was 37 percent, as compared with a 5 percent likelihood among patients with lower levels (P<0.001). Among patients with plasma factor VIII levels above the 90th percentile, as compared with those with lower levels, the overall relative risk of recurrence was 6.7 (95 percent confidence interval, 3.0 to 14.8) after adjustment for age, sex, the presence or absence of factor V Leiden or the G20210A prothrombin mutation, and the duration of oral anticoagulation. CONCLUSIONS: Patients with a high plasma level of factor VIII have an increased risk of recurrent venous thromboembolism.

Factor VIII↗

Pregnancy-associated risk for venous thromboembolism and pregnancy outcome in women homozygous for factor V Leiden.

INTRODUCTION: To evaluate the pregnancy-associated risk of venous thromboembolism and the risk of stillbirth and miscarriage a multicenter, retrospective and controlled study was conducted in women carrying the homozygous factor V Leiden mutation and in an agematched control group of women from the normal population. PATIENTS AND METHODS: In 64 homozygous (median age 44 years, range 21-75 years) and in 52 control women from five different centers data on venous thromboembolism and pregnancy outcome were obtained. RESULTS: The 64 homozygous women had in total 212 pregnancies, the 52 control women had 118 pregnancies. In homozygous women 65% of pregnancies ended with delivery of a viable infant, 15% with fetal loss (3.3% stillbirth, 12% miscarriage) and 20% by pregnancy termination. In the control women 75% of pregnancies ended with delivery of a viable infant, 12% with fetal loss (1.7% stillbirth, 10% miscarriage) and 13% by pregnancy termination. The differences were statistically not significant. Venous thromboembolism occurred significantly more often in the homozygous women, in 4.2% (9/212) during pregnancy and in 4.7% (10/212) after delivery or pregnancy termination. None of the control women had a thromboembolic episode. CONCLUSION: Our data indicate that women with homozygous factor V Leiden have a high probability for a favorable pregnancy outcome. The increased risk for venous thromboembolism during pregnancy and after delivery would favor heparin prophylaxis during and after pregnancy in women homozygous for factor V Leiden.

Adult↗

The Factor V (Leiden) test: evaluation of an assay based on dilute Russell Viper Venom Time for the detection of the Factor V Leiden mutation.

In the present study a new clotting assay for the detection of an increased resistance of coagulation factor V against degradation by activated protein C (Factor V Leiden mutation, FVLM) was evaluated. The Factor V (Leiden) Test (Gradipore, North Ryde NSW, Australia) is based on the dilute Russell Viper Venom Time (DRVVT), which is prolonged when the plasma sample is preincubated with dilute whole Agkistrodon contortrix contortrix venom for activation of protein C (PC). In contrast to the DRVVT based global assay, Protein C Pathway Test (Gradipore, North Ryde NSW, Australia) this new assay is expected to be more specific for FVLM because of optimized amounts of the venom. The test result is expressed as the ratio between the DRVVT with and without addition of the venom. The following precision values were found: intraassay coefficient of variation (CV): 5.53% (n=20) in the normal range, 4.30% (n=20) in the pathological range; interassay CV: 6.90% (n=10) and 7.64% (n=10), respectively. A normal range (5th to 95th percentile) of 2.12 to 3.08 was calculated from 50 healthy controls. A ratio below 2.12 was found in all samples from patients with FVLM (n=21), in 9 of 12 patients with PC, in 0 of 6 with protein S (PS), and in 0 of 4 with antithrombin (AT) deficiency. There was, however, a good discrimination between carriers of the FVLM (highest ratio 1.44) and patients deficient in PC (lowest ratio 1.59), in particular when samples were prediluted with factor V deficient plasma FVDP (1.16 vs. 1.96, respectively). Predilution of samples with FVDP caused a clear discrimination between controls and patients deficient in PC, PS, AT, and FVLM-positive individuals and also in patients on oral anticoagulant treatment. Our data show that the Factor V (Leiden) Test discriminates well between carriers of the FVLM and healthy controls or patients deficient in PC, PS, and AT. Individuals presenting values between the lower cutoff of controls and the range in which FVLM-positive individuals are found are highly suspicious for protein C deficiency.

Antithrombins↗

Clinical significance of lupus anticoagulants in children.

OBJECTIVES: To determine the spectrum of associated clinical manifestations and time course of lupus anticoagulants (LA) in children. STUDY DESIGN: Retrospective study of 95 consecutive children (46 boys and 47 girls), with a median age of 5.3 years (range, 1.7 to 17.1 years), diagnosed with presence of LA at a hemostasis referral center; 83 were followed up over a median of 2.9 years (range, 6 weeks to 21.6 years). RESULTS: At diagnosis, 80 of 95 (84%) children were free of symptoms, and presence of LA was found incidentally. Nine children (10%) had bleeding symptoms, 5 (5%) had thrombotic events, and 1 had systemic lupus erythematosus. Among the patients with bleeding, 5 had transient severe hypoprothrombinemia after adenovirus infections, and 3 had thrombocytopenia. None of the children who were initially free of symptoms had bleeding, thrombotic complications, or autoimmune disease subsequently. At follow-up, 48 of 83 (58%) patients had normal activated partial thromboplastin time values after 1.9 years (5 weeks to 19.1 years). Thirty-two (38%) still had activated partial thromboplastin time elevations but did not fulfill all criteria for presence of LA after 3.2 years (7.4 months to 9.3 years). Three (4%) patients, who had presented with thrombosis, had persistent positive LA, anti-cardiolipin, and antinuclear antibodies after 1.4, 2.8, and 7.5 years, respectively. One of these had recurrent thrombosis. CONCLUSIONS: In most children the presence of LA did not lead to clinical complications and was transient. Bleeding occurred with additional hypoprothrombinemia or thrombocytopenia. Thrombosis was rare and strongly associated with persistently positive LA.

Adolescent↗

No evidence for an increased risk of venous thrombosis in patients with factor V Leiden by the homozygous 677 C to T mutation in the methylenetetrahydrofolate-reductase gene.

Hyperhomocysteinemia is an established risk factor for arterial and venous thrombosis. Recently, it has been shown that a C to T mutation at nt position 677 in the methylenetetrahydrofolate-reductase (MTHFR) gene is a common cause of moderately elevated levels of plasma homocysteine in adults. In order to investigate whether the newly recognized genetic alteration in the MTHFR gene potentiates the thrombotic tendency in patients with factor V Leiden, we studied 81 unrelated patients with a history of venous thrombosis and a heterozygous factor V Leiden mutation. In addition, we analyzed 111 family members of 34 families in which the proband had a heterozygous factor V Leiden mutation. In all individuals, factor V Leiden and the MTHFR mutation were tested and the occurrence of venous thrombotic events was evaluated retrospectively. Seventy-seven healthy subjects without the factor V Leiden mutation or any other known thrombotic risk factor served as a control group. The prevalence of the homozygous MTHFR mutation was similar in index patients (10 of 81, 12%) and in the control group (10 of 77, 13%). The median age at first thrombosis in index patients was 32 years (range 22-69 years) in 10 patients with heterozygous factor V Leiden and T/T MTHFR mutation, and 34 years (range 6-72 years) in 71 patients with the factor V Leiden mutation only. In the family members, the prevalence of thrombosis was not higher in patients with factor V Leiden and +/+ MTHFR genotype than in those with only the heterozygous factor V Leiden mutation. We conclude from these data that the 677 C to T mutation in the MTHFR gene does not represent a significant additional risk factor for venous thrombosis in patients with factor V Leiden mutation.

Adolescent↗

Large amounts of vascular endothelial growth factor at the site of hemostatic plug formation in vivo.

Vascular endothelial growth factor (VEGF) is important for the proliferation, differentiation, and survival of microvascular endothelial cells. It is a potent angiogenic factor and a specific endothelial cell mitogen that increases fenestration and extravasation of plasma macromolecules. Recently, large quantities of VEGF were detected in human megakaryocytes. Incubation of human platelets with thrombin in vitro resulted in the release of large amounts of VEGF. To investigate whether VEGF is released from platelets during coagulation activation in vivo, we measured in human subjects VEGF at the site of plug formation, ie, in blood emerging from a standardized injury made to determine bleeding time (shed blood). VEGF was also determined in the same volunteers after treatment with the specific thrombin inhibitor recombinant hirudin (r-hirudin). In a double-blind, randomized, crossover study, 17 healthy male volunteers (aged 20 to 35 years) were investigated. VEGF concentrations were measured in venous blood and in shed blood by the use of an immunoassay 10 minutes after intravenous administration of r-hirudin (0.35 mg/kg of body weight) or physiological saline. Prothrombin fragment f1.2 (f1.2) and beta-thromboglobulin (beta-TG) were determined as indicators of coagulation and platelet activation, respectively. Concentrations of VEGF, f1.2, and beta-TG in shed blood 4 minutes after injury were significantly higher than in venous blood (VEGF, 55.8+/-9.2 versus <20 pg/mL, P<0.001; f1.2, 71.3+/-10.4 versus 0.78+/-0.03 nmol/L, P<0. 001; beta-TG, 2290+/-170 versus 53.2+/-14.0 ng/mL, P<0.001). Administration of r-hirudin caused a >50% inhibition of the beta-TG and f1.2 levels in shed blood. In a similar manner, much lower amounts of VEGF were detectable at the site of plug formation after r-hirudin treatment (69.0+/-9.5 versus 37.8+/-2.6 pg/mL per minute; P=0.0015). Our data indicate that substantial quantities of VEGF are released from platelets during the interaction with the injured vessel wall in vivo. This finding may be relevant with respect to wound healing and tissue repair, tumor vascularization, or arterial thrombus formation.

Adult↗

The risk of early recurrent venous thromboembolism after oral anticoagulant therapy in patients with the G20210A transition in the prothrombin gene.

A G20210A transition in the prothrombin gene is a common risk factor of venous thrombosis. The risk of recurrent venous thromboembolism in carriers of the 20210A allele is unknown and guidelines for secondary thromboprophylaxis in these patients are not available. In a prospective multicenter trial, 492 patients with a history of objectively documented venous thromboembolism were followed for a mean observation time of 24+/-16 months after discontinuation of oral anticoagulants. Forty-two patients (8.5%) were carriers of the 20210A allele. Three of the 42 patients with the G20210A mutation (7%) and 54 of 450 patients without the mutation (12%) experienced recurrent venous thrombosis. At 24 months, the probability of recurrence was 8% (95% CI 0-16.7) in patients with the mutation and was 12.2% (95% CI 8.8-15.6) in patients without the mutation. In conclusion, the risk of early recurrent venous thromboembolism is not higher in patients with the G20210A mutation than in those without the mutation. Therefore, long-term secondary thromboprophylaxis with oral anticoagulants in heterozygous carriers of the 20210A allele is not justified.

Administration, Oral↗

Prospective evaluation of hemostatic system activation and thrombin potential in healthy pregnant women with and without factor V Leiden.

Normal pregnancy is associated with alterations of the hemostatic system towards a hypercoagulable state and an increased risk of venous thromboembolism. The risk of venous thrombosis is higher in pregnant women with factor V Leiden (FVL) than in those with wildtype factor V. Routine laboratory assays are not useful to detect hypercoagulable conditions. A prospective and systematic evaluation of hemostatic system activation in women with and without FVL during an uncomplicated pregnancy employing more sensitive markers of hypercoagulability, such as prothrombin fragment 1+2 (F1+2), thrombin-antithrombin complex (TAT), D-Dimer, or the endogenous thrombin potential (ETP), an indicator of the plasma's potential to generate thrombin, has not been performed. We prospectively followed 113 pregnant women with (n = 11) and without (n = 102) FVL and measured F1+2. TAT, D-Dimer and the ETP at the 12th, 22nd and 34th gestational week as well as 3 months after delivery (baseline) in each subject. None of the women developed clinical signs of venous thromboembolism during pregnancy or postpartum. Pregnant women with and without FVL exhibited substantial activation of the coagulation and fibrinolytic system as indicated by a gradual increase of F1+2, TAT and D-Dimer throughout uncomplicated pregnancy up to levels similar to those found in acute thromboembolic events (p < 0.0001 by analysis of variance for each parameters). Levels of F1+2 and TAT were comparable between women with and without FVL, but levels of D-Dimer were significantly higher in women with FVL than in those without the mutation (p = 0.0005). The ETP remained unchanged in both women with and without FVL at all timepoints. Our data demonstrate a substantial coagulation and fibrinolytic system activation in healthy women with and without FVL during uncomplicated pregnancy. An elevated F1+2, TAT or D-Dimer level during pregnancy is not necessarily indicative for an acute thromboembolic event. The normal ETP in both women with and without FVL suggests that the capacity of the plasma to generate thrombin after in vitro activation of the clotting system is not affected by pregnancy. Higher levels of D-Dimer in women with FVL than in women with wildtype factor V at baseline as well as during pregnancy indicate increased fibrinolytic system activation in carriers of the mutation.

Adult↗