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Pregnancies and oral contraceptive therapy in severe (homozygons) FXII deficiency: a study in 12 patients and review of the literature.

Twelve women with severe Factor XII (FXII) deficiency were under observation for an average period of about 16 years. During this time, these women had 19 pregnancies without any bleeding or thrombotic complications. The evaluation of the literature has shown that three patients manifested deep vein thrombosis during pregnancy. Five women also showed mild bleeding at delivery . The significance of these findings is not clear since thrombotic and bleeding complications may occur occasionally even in normal women. Five of our patients took oral contraceptive therapy during their fertile life for a variable period of time (2-10 years). No thrombosis was noted in any of these patients. From the scanty data gathered, in this respect, from the literature, it was shown that only three women with severe FXII deficiency took oral contraceptives and no thrombosis was noted. Altogether these results seem to indicate that the FXII deficiency does not play any significant role in the pathogenesis of bleeding and of thrombotic complications in pregnancy. However, the occurrence of deep vein thrombosis in 3 out of the 64 patients for whom sufficient data could be gathered indicates the need for further studies. This is more so if one considers that 3 out of the 6 cases of venous thromboses described altogether in the literature for females with severe FXII deficiency occurred during pregnancy or puerperium.

Adult↗

Factor XII clotting activity and antigen levels in patients with thromboembolic disease.

Individuals with severe factor XII (FXII) deficiency may be prone to thromboembolic disease and this thrombophilic state may be due to insufficient contact activation dependent fibrinolysis. According to our previous study (Thromb Haemostas 1991; 65: 117-121), however, heterozygous FXII deficiency is not a strong prethrombotic risk factor, only one out of 45 obligatory or possible heterozygotes having sustained a thrombotic event. In the present study, FXII clotting activity (FXII:C) and antigen concentration (FXII:AG) were measured in 200 patients having suffered from idiopathic thromboembolism and compared with the values in 200 healthy controls. Mean FXII levels were not significantly different in thrombophilic patients and controls, and subnormal FXII values were not more frequently encountered in patients than in controls. Specific FXII activity, i.e. the ratio of FXII:C to FXII:AG, showed considerable variation in each of the two groups, but patients and controls had a similar distribution of specific FXII activity. Variations in specific FXII activity were not explained by differences in beta 2-glycoprotein I levels. In conclusion, heterozygous FXII deficiency is not a strong prethrombotic risk factor and subnormal FXII values are not more common in thrombophilic patients than in healthy individuals.

Adolescent↗

Effect of heparin on the inactivation rate of human activated factor XII by antithrombin III.

Human antithrombin III (ATIII) is a plasma inhibitor of several serine proteases of the blood coagulation system. Previous investigations have reported that the presence of heparin has a multifold accelerating effect on the inhibition of factor XIIa and XIIf, the active species derived from factor XII. Recent studies from our laboratories have confirmed that ATIII inactivates factor XIIa and factor XIIf, but only contributes 2% to 3% to the inhibition of activated factor XII species in plasma. The major inhibitor is C1 inhibitor. Therefore, we have reexamined the heparin effect on the rate of inhibition of factor XIIa and factor XIIf in purified systems. We also have studied the effect of heparin on the inactivation of both factor XII-derived active species by various plasmas. Using purified factor XIIa and ATIII, we found that heparin (0.7 to 34.0 U/mL) increased the rate of inhibition of Factor XIIa. However, at heparin concentrations usually achieved during anticoagulant therapy (0.7 U/mL), the inhibition was accelerated only fourfold. This implies only a 6% contribution to the inhibitory effect of plasma. This suggestion was confirmed by the observation that heparin (1.5 U/mL) added to factor XII-deficient plasma and reconstituted with factor XIIa did not produce a detectable enhancement of the rate of inhibition of factor XIIa. Furthermore, using purified factor XIIf and antithrombin III, heparin (3.6 to 57.2 U/mL) increased the inactivation rate constant of factor XIIf by 1.6 to 14.0 times. This small effect was confirmed by the observation that heparin at a concentration greater than that sufficient for anticoagulation (1.4 U/mL) did not modify the inactivation rate of factor XIIf by prekallikrein-deficient plasma, and thus C1 inhibitor remains the major inhibitor even in the presence of heparin. From this study and our previous investigations on the effect of heparin on the inhibition of kallikrein and factor XIa, we conclude that heparin does not significantly affect the protease activity of purified contact activation factors or the activities expressed by these proteases in plasma.

Antithrombin III↗

Part of prekallikrein removed from human plasma together with IgG--immunoblot experiments and functional tests.

With the present study, evidence is provided that prekallikrein (PK) in human plasma might be present in two different states, one of them removed along with IgG on Protein G columns. At a plasma dilution of 1 + 2.5, small amounts of an IgG fraction were left in plasma along with all of the PK. At a dilution of 1 + 11, nearly all IgG was removed. The removal in parallel of part of the PK was shown in immunoblot experiments and confirmed in amidase assays. One monoclonal antibody against PK (13G11) and two preparations of polyclonal antibodies were used for the immunoblot experiments. Different peptide substrates (S-2302, S-2222, Bz-Pro-Phe-Arg-pNA), along with protease inhibitors (soybean trypsin inhibitor, corn trypsin inhibitor, lima bean trypsin inhibitor) were used for the amidase assays. The amidase assays indicated that factors XII and XI were reduced by Protein G columns. In all experiments with extensive removal of IgG, protein recognized by the factor XII light chain mAb C6B7 was removed at the same time. This antibody preparation did not detect purified contact factors, but it did recognize a preparation of purified beta-FXIIa, and also significant amounts of protein present in plasma deficient in factor XII and not detectable in plasma deficient in PK. This protein accordingly seems to be connected with the PK fraction removed with IgG.

Adult↗

Defective thrombus formation in mice lacking coagulation factor XII.

Blood coagulation is thought to be initiated by plasma protease factor VIIa in complex with the membrane protein tissue factor. In contrast, coagulation factor XII (FXII)-mediated fibrin formation is not believed to play an important role for coagulation in vivo. We used FXII-deficient mice to study the contributions of FXII to thrombus formation in vivo. Intravital fluorescence microscopy and blood flow measurements in three distinct arterial beds revealed a severe defect in the formation and stabilization of platelet-rich occlusive thrombi. Although FXII-deficient mice do not experience spontaneous or excessive injury-related bleeding, they are protected against collagen- and epinephrine-induced thromboembolism. Infusion of human FXII into FXII-null mice restored injury-induced thrombus formation. These unexpected findings change the long-standing concept that the FXII-induced intrinsic coagulation pathway is not important for clotting in vivo. The results establish FXII as essential for thrombus formation, and identify FXII as a novel target for antithrombotic therapy.

Animals↗

Childhood stroke at three years of age with transient protein C deficiency, familial antiphospholipid antibodies and F. XII deficiency--a family study.

The unusual case of a boy with a stroke occurring at three years of age, transient reduction in protein C activity and high concentrations of antiphospholipid antibodies (APA) is described. APA or Lupus Anticoagulant (LA) were found in 7 of 11 relatives studied out of three different generations. In addition, antigenic Factor (F) XII deficiencies or borderline values were found in the propositus and 2 relatives. Evidence for F. XII inhibitors was found in the propositus, one of his brothers and both of his parents. Whether F. XII inhibitors in patients with APA and/or LA are pathophysiologically relevant in vivo or if they are only an in vitro phenomenon remains to be elucidated. It is reasonable to believe that the main laboratory pathology (APA and/or LA activity) in antiphospholipid syndrome is related to the clinical picture of a hypercoagulable state. There is evidence from the literature that deficiency or inhibition of F. XII might contribute to a prothrombotic state through impairment of the fibrinolytic system. There is also evidence that APA are able to reduce protein C activation. From a clinical point of view, it seems that hypercoagulability in our patient was controlled by low-dose aspirin therapy (75 mg/d). In conclusion, this case seems to support the idea of a genetic predisposition for the development of APA and/or LA. The related disturbances of the coagulatory, anticoagulatory and fibrinolytic systems might contribute in different ways to the prothrombotic state seen in patients with "antiphospholipid syndrome", eventually resulting in possible venous thrombosis or arterial thrombosis with corresponding ischaemic lesions.(ABSTRACT TRUNCATED AT 250 WORDS)

Antibodies, Antiphospholipid↗

Assay of Fletcher factor (plasma prekallikrein) using an artificial clotting reagent and a modified chromogenic assay.

An artificial clotting reagent lacking in Fletcher factor (plasma prekallikrein, PPK) was made by mixing human plasma, activated by 5 mg/ml of celite, then kept 16 hours at 37 degrees to destroy most of the plasma kallikrein, plus rabbit plasma (which is devoid of XII and Fletcher activity). Chromogenic assay using a tripeptide substrate was also modified to exclude the interference of the endogenous contact factors. Celite eluate was used instead of kaolin or dextran sulphate for the activation. Using both these methods, it is possible to distinguish between Fletcher trait (PPK deficiency) and other contact factors such as factor XII and HMWK deficiencies, which do not activate with kaolin or dextran sulphate. These simple clotting and enzymatic assays give specific and well correlated results for PPK estimation.

Animals↗

Participation of Hageman factor dependent pathways in human disease states.

Abnormalities of Hageman factor dependent pathways have been described in a wide variety of human disease states. Congenital deficiencies of factor XII (Hageman trait) prekallikrein (Fletcher trait) and high molecular weight kininogen (Williams, Fitzgerald and Flaujeac traits) although resulting in profound in vitro changes, do not cause in vivo difficulties. In contrast, deficiency of C1 esterase inhibitor (hereditary angioedema) results in significant morbidity and mortality. Acquired diseases may exhibit decreased synthesis of these three proteins in cirrhosis and dengue fever. In vivo activation of factor XII initiated pathways occur in septic shock, disseminated or localized intravascular coagulation, typhoid fever, polycythemia vera, hyperbetalipoproteinemia, coronary artery disease, nephrotic syndrome, transfusion reactions, hemodialysis and extracorporeal bypass. Activation of both the intrinsic system and tissue mediators contribute to the vasomotor phenomena in carcinoid syndrome and postgastrectomy dumping. Roles for factor XII, prekallikrein and kininogen have been suggested in gouty arthritis, allergic disorders and cystic fibrosis but the evidence is not yet convincing in these disorders.

Angioedema↗

Procainamide-induced circulating anticoagulants in a congenitally-deficient factor XI patient.

A 70 year old male patient admitted for coronary bypass surgery presented with a procainamide-induced lupus syndrome. This syndrome included a LLAC with a positive IgM ACA titer as well as a factor XII inhibitor. These drug-induced inhibitors were superimposed upon the patient's congenital deficiency of factor XI. The methods used to identify these abnormalities are described together with the replacement therapy employed to cover the surgical procedure. The long-term withdrawal of procainamide was associated with correction of all coagulation abnormalities except the factor XI deficiency.

Aged↗

Are hemostasis and thrombosis two sides of the same coin?

Factor XII (FXII), a clotting enzyme that can initiate coagulation in vitro, has long been considered dispensable for normal blood clotting in vivo because hereditary deficiencies in FXII are not associated with spontaneous or excessive bleeding. However, new studies show that mice lacking FXII are protected against arterial thrombosis (obstructive clot formation) and stroke. Thus, FXII could be a unique drug target that could be blocked to prevent thrombosis without the side effect of increased bleeding.

Animals↗

Prekallikrein deficiency: the characteristic normalization of the severely prolonged aPTT following increased preincubation time is due to autoactivation of factor XII.

Hereditary plasma prekallikrein (PK) deficiency was diagnosed in a 71-year-old man with an 8-year history of osteomyelofibrosis. PK deficiency was suspected in view of a severely prolonged activated partial thromboplastin time (aPTT) that nearly normalized following prolonged preincubation (10 min) of patient plasma with kaolin-inosithin reagent. Hereditary PK deficiency was demonstrated by very low PK values in the propositus (PK clotting activity 5%, PK amidolytic activity 5%, PK antigen 2% of normal plasma, respectively) and half normal PK values in his children. Normalization of a severely increased aPTT (>120 s) after prolonged preincubation with aPTT reagent occurred in plasma deficient in PK but not in plasma deficient in factor XII (FXII), high-molecular-weight kininogen (HK), factor XI (FXI), factor IX, factor VIII, Passovoy trait plasma or plasma containing lupus anticoagulant. Autoactivation of FXII in PK-deficient plasma in the presence of kaolin paralleled the normalization of aPTT. Addition of OT-2, a monoclonal antibody inhibiting activated FXII, prevented the normalization of aPTT. We conclude that the normalization of a severely prolonged aPTT upon increased preincubation time (PIT), characteristic of PK deficiency, is due to FXII autoactivation.

Aged↗

Activation of human factor VII during clotting in vitro.

We have studied factor VII activation by measuring the ratio of factor VII clotting to coupled amidolytic activity (VIIc/VIIam) and cleavage of 125I-factor VII. In purified systems, a low concentration of Xa or a higher concentration of IXa rapidly activated 125I-factor VII, yielding a VIIc/VIIam ratio of 25 and similar gel profiles of heavy and light chain peaks of VIIa. On further incubation, VIIa activity diminished and a third 125I-peak appeared. When normal blood containing added 125I-factor VII was clotted in a glass tube, the VIIc/VIIam ratio rose fivefold, and 20% of the 125I-factor VII was cleaved. Clotting normal plasma in an activated partial thromboplastin time (APTT) system yielded a VIIc/VIIam ratio of 25 and over 90% cleavage of 125I-factor VII. Clotting factor XII-deficient plasma preincubated with antibodies to factor X in an APTT system with added XIa yielded a VIIc/VIIam ratio of 19 and about 60% cleavage, which indicates that IXa, at a concentration achievable in plasma, can effectively activate factor VII. Clotting normal plasma with undiluted tissue factor yielded a VIIc/VIIam ratio of 15 to 20 and 60% cleavage of 125I-factor VII, whereas clotting plasma with diluted tissue factor activated factor VII only minimally. We conclude that both Xa and IXa can function as significant activators of factor VII in in vitro clotting mixtures but believe that only small amounts of factor VII may be activated in vivo during hemostasis.

Animals↗

The role of factor IX in tissue thromboplastin induced coagulation.

Tissue thromboplastin apoprotein was partially purified from human brain. The apoprotein was recombined with mixed phospholipids to yield active thromboplastin. The recombined thromboplastin induced proteolytic activation of isolated human factor IX in the presence of factor VII and Ca2+. The clotting times of various deficient plasmas were determined as a function of apoprotein concentration, keeping the phospholipid concentration constant. The clotting times of a factor XII-deficient plasma were the same as those of a factor XII/factor IX-deficient plasma, except at very low apoprotein concentrations. However, under those conditions the difference in clotting times was independent of the presence of anti-factor VII serum. Similar observations were made for factor XI-deficient plasma in comparison with factor XI/factor IX-deficient plasma. These results indicate that activation of factor IX by factor VII/tissue thromboplastin does not significantly contribute to plasma coagulation.

Apoproteins↗

Role of contact system activation in hemodialyzer-induced thrombogenicity.

BACKGROUND: The contact system is generally believed to be the main trigger of the coagulation cascade during extracorporeal circulation. However, the extent of contact activation, its role for intradialytic thrombin generation as well as the influence of different dialyzer membranes have not been well established. METHODS: In a novel full-scale ex vivo recirculation dialysis model, we investigated the thrombogenicity of three widely used hemodialyzers (Cuprophan Renak RA15-U, Polysulfone F6HPS and AN69XT Nephral 200). The activation of the contact system was evaluated using a newly developed ELISA for factor XIIa-C1-inhibitor complexes. Additionally, we determined free FXIIa (ELISA), thrombin-antithrombin (TAT) complexes, platelet factor 4 (PF4), complement activation (C5a), granulocyte elastase and blood cell counts. The findings in blood from normal volunteers were compared with factor XII-deficient blood. RESULTS: With normal blood AN69 exhibited the highest thrombogenicity in comparison to Cuprophan and Polysulfone, as assessed by TAT generation and platelet consumption. AN69 caused a rapid increase of the FXIIa-C1-inhibitor complexes and of free FXIIa. Despite significant TAT generation with Cuprophan and Polysulfone free FXIIa remained unchanged and the FXIIa-C1-inhibitor complexes stayed below the detection limit. With factor XII-deficient blood Polysulfone exhibited the same TAT generation, whereas the thrombogenicity of AN69 was greatly reduced. CONCLUSIONS: Our data challenge the common assumption that activation of the contact system with generation of FXIIa is the main trigger for coagulation and thrombus formation in hemodialysis. Only the negatively charged AN69 membrane with enhanced thrombogenicity strongly induced contact activation.

Adult↗

The binding and cleavage characteristics of human Hageman factor during contact activation. A comparison of normal plasma with plasmas deficient in factor XI, prekallikrein, or high molecular weight kininogen.

The ability of human Hageman factor (coagulation factor XII) to bind to a glass surface and its susceptibility to limited proteolytic cleavage during the contact activation of plasma have been studied using normal human plasma and plasmas genetically deficient in factor XI, prekallikrein, or high molecular weight kininogen (HMWK). When diluted normal plasma containing (125)I-Hageman factor was exposed to a glass surface for varying times, the Hageman factor was found to bind to the surface, and within 5 min became maximally cleaved from its native 80,000 mol wt to yield fragments of 52,000 and 28,000 mol wt. Hageman factor in factor XI-deficient plasma behaved similarly. In prekallikrein-deficient plasma, the binding of Hageman factor to the glass surface occurred at the same rate as in normal plasma but the cleavage was significantly slower, and did not reach maximum until 60 min of incubation. Cleavage of Hageman factor in HMWK-deficient plasma occurred at an even slower rate, with greater than 110 min of incubation required for maximal cleavage, although the rate of binding to the glass was again the same as in normal plasma. Normal rates of cleavage of Hageman factor were observed for the deficient plasmas after reconstitution with purified human prekallikrein or HMWK, respectively. These observations suggest that normal contact activation in plasma is associated with proteolytic activation of surfacebound Hageman factor. The cleavage of the surface-bound Hageman factor molecule responsible for the formation of the 52,000-and 28,000-mol wt fragments occurred at two closely situated sites, one of which was within a disulfide loop. Cleavage at the site external to the disulfide bond resulted in the release from the surface of the 28,000-mol wt fragment. Cleavage at the site within the disulfide loop resulted in the formation of a 28,000-mol wt fragment which remained surface bound, presumably by virtue of the disulfide linkage to the larger fragment.

Blood Coagulation Disorders↗

Prorenin-renin conversion by the contact activation system in human plasma: role of plasma protease inhibitors.

Acid-pretreated normal human plasma generates renin activity at 0 degree C and neutral pH by the activation of prorenin. The activation is caused by kallikrein generated from prekallikrein by activated factor XII. Nonacidified plasma also generates renin at 0 degree C, but at a lower rate (cold-promoted activation). In normal plasma, 14% +/- 1% of prorenin (mean +/- SEM, n = 30) was activated during incubation at 0 degree C for 7 days (range 6% to 26%). Cold-promoted activation of prorenin was within the normal range in plasma deficient in factor XI, X, IX, VIIIC, VII, V, prothrombin, or high mol wt kininogen. Cold-promoted activation of prorenin was less than or equal to 1% in plasma deficient in factor XII or prekallikrein. Reconstitution of these plasmas with highly purified factor XII or prekallikrein restored normal prorenin activation. Correction of high mol wt kininogen deficiency had no effect. Thus cold-promoted activation of prorenin depends on the presence of factor XII and prekallikrein, whereas the other clotting factors are not essential. The influence of the inhibitors C1 esterase-inhibitor, alpha 2-macroglobulin, antithrombin III, and alpha 1-antitrypsin on the activation of prorenin was studied in factor XII-deficient plasma from which one or more of these inhibitors had been selectively removed by immunoadsorption. Factor XII was subsequently added, and the generation of renin at 37 degrees C was observed after complete factor XII-high mol wt kininogen-mediated activation of prekallikrein induced by dextran sulfate. No activation of prorenin was observed at 37 degrees C after depletion of C1 esterase inhibitor, alpha 2-macroglobulin, antithrombin III, or alpha 1-antitrypsin. When prekallikrein was activated in plasma depleted of both C1 esterase-inhibitor and alpha 2-macroglobulin, 6% of prorenin was activated in 2 hours at 37 degrees C. After additional depletion of antithrombin III, the activation increased to 47%. These results indicate that the contact activation system is capable of activating prorenin in plasma at physiologic pH and temperature when the three most important kallikrein inhibitors, C1 esterase-inhibitor, alpha 2-macroglobulin, and antithrombin III, are absent.

Binding Sites↗