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Repair of abdominal aortic aneurysm in severe Factor VII deficiency.

Congenital Factor VII deficiency is a rare disorder associated with reduced levels of Factor VII activity. Replacement therapy is necessary to control hemorrhaging or if surgery is needed. We report operative treatment of one case of chronic abdominal aortic aneurysm in a patient affected by a severe form of congenital Factor VII deficiency (endogenous FVII level <1%). The operation was carried out after the administration of Factor VII concentrate raised the Factor VII concentration to hemostatic levels. The patient continued to receive the concentrate every 6 hrs during the first three postoperative days. Dosage was assessed to obtain Factor VII levels not lower than 25%. No postoperative bleeding or thrombotic events were observed. The patient was discharged in excellent condition.

Aged↗

A new automated method for continuous registration of factor VII activation in vitro. Activation is accelerated by the concentration of factor VII and the activity state of the protein.

When a plasma sample is exposed to tissue factor, single-chain factor VII (FVII) is gradually converted to the active two-chain form (FVIIa). In the present study, we have constructed a measurement system, which allows continuous registration of the activation of FVII to FVIIa in vitro. In this system, FVII activation follows parabolic kinetic after an initial lag-phase. The slope of the linear phase is a measure of the protein concentration of factor VII (FVIItotal), while the length of the non-linear phase represents the velocity of FVII activation. The time required for complete activation of FVII is inversely related to both FVIItotal and the relative amount of FVIIa in the sample. In future studies, this new measurement system will make it possible to study the process of FVII activation in different samples, and to examine how varying concentrations of exogenous added components affect the activation process in vitro.

Amino Acid Sequence↗

Tissue factor interactions with factor VII: measurement and clinical significance of factor VIIa in plasma.

Certain epidemiological studies have implicated elevated factor VII coagulant activity as a risk factor for ischaemia heart disease. However, progress in understanding the clinical significance of elevated plasma factor VII levels has been hampered by: (1) differences between laboratories in the methodology for measuring factor VII; (2) the existence of multiple forms of factor VII in plasma (i.e. factor VIIa, zymogen factor VII, and a possible phospholipase-sensitive form of factor VII); (3) the resulting uncertainty regarding what is actually being measured in factor VII coagulant assays. Recent mutagenesis studies of tissue factor (the obligate protein cofactor for factor VIIa) have led to new assay technologies capable of quantifying trace levels of plasma factor VIIa without interference from zymogen factor VII. This review article focuses on the current status of measurement of plasma factor VII/VIIa levels and the relationship between various plasma forms of factor VII and risk of thrombotic disease.

Blood Coagulation Disorders↗

Coagulation factor VII and plasma triglycerides. Decreased catabolism as a possible mechanism of factor VII hyperactivity.

High circulating levels of coagulation factor VII (FVII) are known to be associated with elevated concentrations of blood lipids. More specifically, hypertriglyceridemia is correlated with raised FVII coagulant activity (FVIIc). Recently, evidence has been described which suggests that elevation in FVIIc might reflect an increase in the total concentration of FVII, as evaluated by quantitation of FVII antigen (FVIIag). It is also known that FVIIc represents a risk factor for cardiovascular death, but the prediction of cardiovascular risk based on triglyceride estimation is the subject of conflicting results. Since dyslipidemia featuring abnormal triglyceride metabolism is pathophysiologically heterogeneous, we analyzed the possible relationships between FVII and triglyceride further and under standardized postprandial conditions. For this purpose we studied FVIIc and FVIIag in relation to triglyceridemia after a standardized test meal. Our results confirm that FVIIc and FVIIag levels are strongly correlated with each other (r = 0.714; p = 0.01). In addition, both were significantly increased (p less than 0.02) in patients who exhibited abnormal triglyceride levels 8 h after a standardized test meal, as compared to those who displayed normal triglyceridemia. Furthermore, we found that apolipoprotein B levels were also increased in such patients. The deficient postprandial catabolism of triglycerides, therefore, appears to be related to an increase in total FVII concentration, suggesting that some association between the metabolism of triglyceride-rich lipoproteins and FVII might underlie the mechanism of the elevation in FVII. Given the important contribution of FVII to hypercoagulability, then our results may be relevant to the understanding of the role of postprandial triglyceride in atherogenesis and in consideration of the circadian prevalence of cardiovascular thrombosis.

Adult↗

Residues Y179 and H101 of a hydrophobic patch of factor VII are involved in activation by factor Xa.

We studied factor Xa activation of human factor VII in hopes of identifying factor VII residues, not adjacent to the cleavage site, involved in this interaction. We made eight factor VIIs with single mutations (N100A, H101A, D102Q, L144A, R147A, Y179A, D186A, and F256A) and two factor VIIs with multiple mutations [MM3 (L144A/R147A/D186A) and MM4 (N100A/H101A/Y179A/F256A)]. Residues in MM3 have previously been identified as affecting factor X activation, and the residues of MM4 are located at a hydrophobic patch of factor VII on the opposite side of the catalytic domain from those in MM3. Only H101A, Y179A, and MM4 were activated significantly more slowly than the wild type. Results of our kinetic analyses showed that the catalytic efficiency of factor Xa for activation of factor VII was 176- and 234-fold higher than that for H101A andY179A, respectively. All the mutants with measurable activity had affinities for tissue factor similar to those of the wild type. The activated hydrophobic patch residues, except N100A, which is adjacent to one of the catalytic residues, had normal activities toward both a small peptide substrate and factor X. The rest of the activated mutants (except D102Q with no activity) had reduced activities toward the small substrate (except R147A) and factor X. We conclude that factor VII activation by factor Xa and factor VIIa's catalytic interaction with factor X involve different regions in the catalytic domain, and residues H101 and Y179, part of an aromatic hydrophobic patch, are specifically involved in factor Xa activation of factor VII.

Amino Acid Sequence↗

Molecular and clinical aspects of factor VII deficiency.

Factor VII (FVII) plays an important role in the initiation of blood coagulation, forming a complex with tissue factor (TF) which activates FIX and FX and FVII zymogen. FVII deficiency displays considerable phenotypic and molecular heterogeneity and there are inconsistencies between the clinical picture observed and the underlying clotting and molecular defects. We have reviewed the data available in the literature on FVII-deficient patients. Clinically, cases range from asymptomatic to patients with severe haemorrhagic tendencies. Asymptomatic patients typically have FVII activity levels of >20% and are heterozygotes, double heterozygotes or homozygotes. Mild FVII-deficient patients, with FVII activity levels >2%, may be double heterozygotes or homozygotes for FVII gene missense mutations. Undetectable FVII levels in severely affected patients are often due to severe gene defects such as frameshifts or mutations affecting the splice sites. The analysis of structure-function relationships in FVII deficiency is difficult due to the complexity of the interactions involving FVII. Also, assays using different reagents may give different results with a given plasma sample, and are not very accurate at low levels of FVII which, although relatively low, may be clinically significant, adding complexity to the analysis of FVII deficiency. The sensitivity of our methods for phenotypic evaluation of FVII deficiency remains inadequate.

Factor VII Deficiency↗

Cells and the activation of factor VII.

Binding of factor VII to tissue factor (TF) present on or released from cells initiates TF-dependent coagulation in vivo. Earlier data obtained with relipidated TF suspensions led to the hypothesis that all factor VII bound to limiting TF sites exposed after tissue injury could be rapidly activated to VIIa/TF complexes by low concentrations of factor Xa, IXa, and VIIa. However, newer data on the activation of factor VII bound to TF expressed on cultured cell monolayers support the hypothesis that not all VII/TF complexes formed at a site of tissue injury are readily activated to VIIa/TF complexes during hemostasis. This is possibly related to why recombinant factor VIIa can bypass impaired IXa/VIIIa/phospholipid complex function in hemostasis.

Blood Cells↗

Association of fibrinogen and coagulation factors VII and VIII with cardiovascular risk factors in the elderly: the Cardiovascular Health Study. Cardiovascular Health Study Investigators.

The cross-sectional correlates of three hemostatic factors--fibrinogen, factor VII, and factor VIII--were examined in the Cardiovascular Health Study, a population-based cohort study of 5,201 subjects over age 65 years. Subjects were recruited in 1989-1990 in Forsyth County, North Carolina; Sacramento County, California; Washington County, Maryland; and Pittsburgh, Pennsylvania. In multivariate linear regression models, cardiac risk factors significantly associated with fibrinogen were current smoking, race, lipids, and white blood count. In women, alcohol use, obesity, physical activity, and insulin level were also significant, while in men hypertension was correlated. The significant correlates of factor VII were lipids and white blood count in men and estrogen use, alcohol use, race, lipids, insulin level, white blood count, and obesity in women. The independent correlates of factor VIII were insulin, glucose, and race in both sexes; low density lipoprotein cholesterol, white blood count, and diuretic use in men; and alcohol use in women. In multivariate models, factors known to be modifiable risk factors for cardiovascular disease accounted for more of the population variance of these hemostatic factors in women than in men, especially for factor VII. The hemostatic factors may mediate some effects of risk factors on disease, and this should be considered in longitudinal studies.

Age Distribution↗

Multiple intracranial hemorrhages at the time of a transiently prolonged activated partial thromboplastin time in an infant with congenital factor VII deficiency.

Factor VII (FVII) deficiency is a rare autosomal recessive hereditary disorder characterized by a normal partial thromboplastin time and a prolonged prothrombin time. For definitive diagnosis, the specific FVII level should be investigated. We report on a 7-month-old boy with congenital FVII deficiency suffering from convulsions and intracerebral hemorrhage. Hematologic tests revealed prolonged prothrombin time associated with a decreased FVII level of 1.7%. Computerized tomography of the brain revealed multifocal hemorrhagic lesions. To our knowledge, multifocal intracranial hemorrhages at the time of a transiently prolonged partial thromboplastin time of unknown origin in a child with congenital FVII deficiency of about 2% has not been reported so far.

Cerebral Hemorrhage↗

Structure of human coagulation activated factor VII.

Activated factor VII (FVIIa) is a trypsin-like serine protease that plays a key role in the initiation of the blood coagulation cascade. FVIIa, which comprises a light chain (152 residues) and a heavy chain (254 residues) linked by a disulphide bond, is generated by the cleavage of the Arg152-Ile153 peptide bond in factor (F)VII. While a corresponding internal peptide bond cleavage unleashes the activity of other trypsin-like enzymes, FVIIa is unusual in that it remains in a zymogen-like state after cleavage and only becomes an efficient catalyst when associated with tissue factor, its protein cofactor and allosteric regulator. We have determined the structure of free FVIIa lacking the gamma-carboxyglutamic acid (Gla) domain as a means to elucidate the molecular reasons for its poor activity when not bound to tissue factor and the conformational changes induced by its association with tissue factor.

Allosteric Regulation↗

Impact of weight loss on plasminogen activator inhibitor (PAI-1), factor VII, and other hemostatic factors in moderately overweight adults.

Based on previous cross-sectional findings, we hypothesized that weight loss could improve several hemostatic factors associated with cardiovascular disease. In a randomized controlled trial, moderately overweight men and women were assigned to one of four weight loss treatment groups or to a control group. Measurements of plasminogen activator inhibitor-1 (PAI-1) antigen, tissue-type plasminogen activator (t-PA) antigen, D-dimer antigen, factor VII activity, fibrinogen, and protein C antigens were made at baseline and after 6 months in 90 men and 88 women. Net treatment weight loss was 9.4 kg in men and 7.4 kg in women. There was no net change (p > 0.05) in D-dimer, fibrinogen, or protein C with weight loss. Significant (p < 0.05) decreases were observed in the combined treatment groups compared with the control group for mean PAI-1 (31% decline), t-PA antigen (24% decline), and factor VII (11% decline). Decreases in these hemostatic variables were correlated with the amount of weight lost and the degree that plasma triglycerides declined; these correlations were stronger in men than women. These findings suggest that weight loss can improve abnormalities in hemostatic factors associated with obesity.

Adult↗

Factor VIIa replacement therapy in factor VII deficiency.

Factor (F)VII deficiency is an autosomal recessive disorder for which a replacement therapy is not universally available; recombinant FVIIa has been utilized as a therapeutic substitute. As FVII competes with FVIIa for binding to tissue factor in initiating the extrinsic pathway of blood coagulation, a lower dose of FVIIa replacement in cross-reacting material-negative (CRM-) individuals can achieve hemostasis. Three coagulation models (computational, synthetic and in vitro whole blood) were used to predict the FVIIa levels needed to provide apparent hemostasis in a non-bleeding state. Our whole blood results show that a 'normalized' coagulation profile for FVII-deficient individuals has an initiation phase that ends at 5.8 +/- 0.5 min (clot time) and the propagation phase of thrombin generation (thrombin-antithrombin III) yields a maximum concentration of 380 +/- 29 nmol L(-1). When CRM- FVII-deficient subjects were infused with a prophylactic dose of 23 micro g kg(-1) of recombinant FVIIa, 6-8 h postinfusion resulted in a comparable normalized whole blood profile. This FVIIa concentration (0.3-0.7 nmol L(-1)/equivalent dose: 0.8-1.8 micro g kg(-1)) is approximately 1/10 that currently used in treating FVII-deficient individuals and suggests that therapies should be altered relative to the concentration of the FVII zymogen.

Adolescent↗