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Direct evidence for Hageman factor (factor XII) activation by bacterial lipopolysaccharides (endotoxins).

Purified precursor Hageman factor has been demonstrated to bind to soluble bacterial lipopolysaccharide (LPS, endotoxin) isolated from Escherichia coli 0111:B4, and this complex has been shown to have the capacity to convert prekallikrein to its active form. In addition, LPS-activated Hageman factor substantially reduces clotting times in XII-deficient plasma. The capacity to activate Hageman factor has been demonstrated to reside in the lipid A region of the LPS molecule. Activation of Hageman factor by LPS contrasts with fluid-phase activation (e.g., by kallikrein or trypsin) in that no cleavage to lower molecular weight fragments occurs. High concentrations of LPS inhibit the activity of Hageman factor, probably by a direct LPS-Hageman factor interaction.

Animals↗

Presence of factor-VII and -XIII activity in ultrafiltrate during hemofiltration.

UNLABELLED: Bleeding complications during renal replacement therapies can be attributed to coagulation system and platelet function alterations in uremia, and the application of heparin in extracorporeal circulation. Small protein losses during hemofiltration are always described, however the high molecular weight of coagulation factors should significantly prevent their removal during hemofiltration. To exclude degradation of coagulation factors under conditions of spontaneous ultrafiltration, the hemofiltrate of 40 patients with acute renal failure (treated with continuous veno-venous hemofiltration, CVVH) was sampled from the filtrate line after 1 h from the beginning of treatment and in 5 patients also after 12 and 24 h. Samples were investigated with human factor deficient plasma (VII, X, XI, XII) from donors with a congenital deficiency and with human plasma depleted of factor V, VIII, IX, and protein S and C. Factor XIII was detected photometrically. Subsequently the presence of factor- XIII and -VII activity was investigated in plasma and hemofiltrate from 16 patients treated with intermittent hemofiltration before (plasma) and after (plasma, hemofiltrate) therapy. These patients also suffered from acute renal failure and needed renal replacement therapies. Quality control was carried out with a buffer solution (<1% activity in the assays according to recommended protocols). RESULTS: Factor-V, -VIII, -IX, -X, -XI, and -XII activity, and protein C and S could not be detected in the hemofiltrate from continuous hemofiltration. Factor-VII and -XIII activity was present in the hemofiltrate (mean activity in CVVH: 1.93% for factor VII and 6.9% for factor XIII, mean activity in intermittent hemofiltration: <1% for factor-VII and 7.3% for factor-XIII). Three were no significant differences (Student's t-test) in plasma activity before and after intermittent hemofiltration of factor VII (44 vs. 47%, p = 0.39) and factor XIII (44 vs. 52%, p = 0.24). The presence of factor-VII and -XIII activity in the hemofiltrate cannot influence plasma activities in intermittent hemofiltration. Rapid new synthesis and short half-life should neutralize these effects. Elimination of coagulation factor-XIII activity should be excluded by the next generation of highly permeable membranes and on-line hemodiafiltration.

Acute Kidney Injury↗

Activated partial thromboplastin time reagents: an evaluation.

Nine automated, activated partial thromboplastin time (APTT) reagents were evaluated on an automated coagulometer, in comparison with a manual reagent. The study consisted of three separate stages: 1) to choose a reagent that had a working stability between 4 degrees C and 8 degrees C for seven days and heparin sensitivity between 0 and 0.8 iu/ml; ii) assessment of sensitivity to specific factor deficiencies, particularly factors VIII, IX, XI and XII using standardised plasma serially diluted with factor-deficient plasma; and iii) assessment of sensitivity to the presence of a lupus anticoagulant, from a known positive panel. Only one reagent fulfilled all the essential criteria as an acceptable replacement for the manual reagent.

Blood Coagulation Factors↗

Folate deficiency-induced hyperhomocysteinemia attenuates, and folic acid supplementation restores, the functional activities of rat coagulation factors XII, X, and II.

Hyperhomocysteinemia (HH) constitutes a risk marker for thrombosis, but the pathophysiological mechanisms in thrombus formation are still unresolved. We investigated the influence of HH on single coagulation factor functions and evaluated the platelet GpIIb/IIIa receptor function in HH-induced changes in whole-blood coagulation profiles (WBCP). Three groups of 12 rats were investigated: control rats, folate deficient-HH (FD-HH) rats, and treated rats. Plasma total homocysteine was 7.1 micromol/L in controls, 31.3 micromol/L in FD-HH rats, and 7.6 micromol/L in treated rats. Factor (F) II:C, FX:C, and FXII:C were reduced in FD-HH rats compared with controls and normalized in treated rats (P < 0.05). FVII:C activity did not differ among the groups. Factor VIII:C activity was greater in FD-HH rats than in controls (P < 0.05). Blockage of the platelet GpIIb/IIIa receptor by Integrilin (Schering-Plough A/S) did not abolish the FD-HH-induced increase in whole-blood coagulation velocity, irrespective of the dosage of Integrilin. In conclusion, FD-HH reduced the functional activities of FXII:C, FX:C and FII:C, whereas FVII:C was unchanged and FVIII:C increased. These findings may partially explain the prolonged initiation phase of WBCP in FD-HH rats. The changes in single coagulation factor functions and WBCPs in FD-HH rats were reversed by treatment with folic acid.

Animals↗

Autoantibodies to contact proteins in patients with recurrent pregnancy losses.

The kallikrein-kinin system or plasma contact system consists of three essential plasma proteins. These are coagulation factor XII, prekallikrein and high molecular weight kininogen. Deficiencies of these proteins are not associated with clinical bleeding despite marked prolongation of in vitro surface-activated coagulation time. Paradoxically, studies suggest that contact proteins have anticoagulant, profibrinolytic functions in a physiologic millieu, on endothelial cells. Recently, evidence has accumulated for the presence of the kallikrein-kinin system or plasma contact system in the fetoplacental unit. Kinins which are released within the placenta may play a role in regulating placental blood flow. This suggests that the plasma contact system may also have an important role in pregnancy. Several studies have reported the presence of autoantibodies to the contact proteins in patients with recurrent early pregnancy losses. Disruption of this system may be a risk factor for early gestational losses.

Abortion, Habitual↗

Cranial neuropathy and bone involvement in primary systemic amyloidosis.

Bone involvement in primary systemic amyloidosis is rare. Intracranial involvement in primary amyloidosis has not been reported so far. We report two cases of bone involvement in primary amyloidosis. The first patient also had combined deficiencies of factor IX and XII, while the second patient had associated intracranial involvement and XIIth cranial nerve palsy. Both these cases are unique in that, destructive bone lesions with intracranial involvement and combined factor deficiencies have not been reported in primary amyloidosis previously.

Adult↗

Effects of coagulation factor deficiency on plasma coagulation kinetics determined via thrombelastography: critical roles of fibrinogen and factors II, VII, X and XII.

BACKGROUND: Thrombelastography (TEG) is used to assess coagulopathy. However, a comprehensive characterization of the effects of specific coagulation factor deficiencies and mode of activation on TEG data does not exist. METHODS: Thrombelastography was performed for 15 min with control plasma and plasmas deficient (<1% activity) in Factors II, V, VII, VIII, IX, X, XI, XII, or XIII activated with celite (0.28 mg ml(-1)) or tissue factor (TF, 0.1%) (n = 6 per condition). Additional fibrinogen concentration activity (75-345 mg dl(-1)) and Factor II, VII, X and XII activity-response relationships (1%, 6.25%, 12.5%, 25%, 50% and 100% activity) were obtained (n = 8 per condition). Thrombelastography parameters included reaction time (R), angle (alpha), and clot strength (A, amplitude; G, elastic modulus). RESULTS: Celite activation of FXII-deficient plasma, TF activation of FVII-deficient and FX-deficient plasma, and celite or TF activation of FII-deficient plasma resulted in an almost undetectable clot. Compared to control values, celite activation of plasmas deficient in FXI, FIX and FVIII resulted in prolonged R and decreased alpha values, whereas TF activation resulted in decreased alpha values. Celite and TF activation of FV-deficient plasma resulted in prolonged R and decreased alpha values, whereas FXIII-deficient plasma had decreased alpha, A and G-values compared to control values. CONCLUSIONS: The fundamental finding of this study is that coagulation factor deficiencies affect TEG parameters in both a factor-dependent and activation-dependent fashion. Utilizing both celite and TF activation improves the diagnostic power of TEG. Based on such TEG data, more targeted administration of blood products could potentially help improve perioperative hemostatic outcomes.

Blood Coagulation↗

Immunoblotting studies of coagulation factor XII, plasma prekallikrein, and high molecular weight kininogen.

Immunoblotting techniques for the qualitative and quantitative analysis of FXII, PK, and HMWK in whole plasma are presented. Sensitive, specific, and quantitative immunodetection of FXII and PK can be achieved by developing the blots with polyclonal antiserum followed by radiolabeled FXII or PK, respectively. This approach is based on the assumption that bivalent antibodies bind monovalently to the NC-bound antigen and have available binding sites to bind radiolabeled antigen derived from the fluid phase. This radiolabeled antigen overlay principle may be generally useful for immunodetection of any trace protein in complex mixtures, provided that the radiolabeled purified antigen is available. Immunoblotting may also be helpful for the partial characterization of the structural or functional abnormalities of CRM-positive variant molecules. For example, earlier studies of a FXII-variant molecule that had been purified and characterized were supported by immunoblotting studies of the CRM-positive deficient plasma. Quantitative measurement of HMWK is possible using a monoclonal antibody directed against the light chain of HMWK followed by radiolabeled secondary antibody. Quantitation of cleaved and single-chain HMWK is possible using dilutions of dextran sulfate-activated NHP on unreduced SDS-PAGE and dilutions of unactivated NHP with reduced SDS-PAGE as standards. These assays allow assessment of the degree of in vivo activation of the contact system in various disease states.

Antibodies, Monoclonal↗

Novel anticoagulant from salivary glands of Simulium vittatum (Diptera: Simuliidae) inhibits activity of coagulation factor V.

Anticoagulant activity was detected in fractions of a reversed phase-high-performance liquid chromatography (RP-HPLC) of salivary gland lysate from Simulium vittatum Zetterstedt. Using a plasma recalcification time assay, these fractions did not inhibit factor Xa or thrombin. HPLC-purified fractions showing the anticoagulant property were pooled and examined using the activated partial thromboplastin time test conducted on normal plasma and plasmas deficient in factors V, VIII, IX, XI, and XII. The anticoagulant prolonged the clotting time of all the plasmas, except plasma deficient in factor V. The detection of antifactor V activity, together with other anticoagulants reported from Simulium spp. indicates a feeding strategy that targets enzymes in the terminal portion of the coagulation cascade.

Animals↗

Fletcher factor deficiency (Report of a new case).

A new case of Fletcher factor (prekallikrein) deficiency is described. The patient did not have any abnormal bleeding tendency, but showed defective intrinsic thromboplastin production and reduced fibrinolytic system activity; he had no factor VIII, IX, XI and XII deficiencies. His plasma did not contain any detectable prekallikrein levels.

Adult↗

Properties of sulfatides in factor-XII-dependent contact activation.

Incubation of normal human plasma with low amounts of sulfatides resulted in the initiation of intrinsic coagulation and the appearance of kallikrein activity. The optimal initiation of procoagulant and kallikrein amidolytic activity was dependent on the presence of factor XII, high molecular weight kininogen, and prekallikrein. Since the activated partial thromboplastin clotting times in prekallikrein-deficient plasma approach normal values upon prolonged incubation with kaolin, this phenomenon of autocorrection was studied and found to be even more pronounced in the presence of sulfatides. Autocorrection was essentially completed in 5 min in the presence of sulfatides, whereas a preincubation of 15-20 min was required in the presence of kaolin. The limited proteolysis of 125I-factor XII in plasma during incubation with activating material or during clotting was determined. Cleavage of factor XII was more rapid and more extensive in the presence of sulfatides than in the presence of kaolin. In prekallikrein-deficient plasma, factor XII cleavage was completed within 5 min in the presence of sulfatides and within 15 min in the presence of kaolin. Thus, the appearance of factor-XII-dependent coagulant activity correlates with the limited proteolysis of factor XII when normal or prekallikrein-deficient plasma is activated by sulfatides or kaolin.

Blood Coagulation↗

Effect of heparin on the activation of factor XI by fibrin-bound thrombin.

Fibrin-bound thrombin is protected from inactivation by antithrombin III, while its coagulant potential is retained. In the presence of heparin, ternary complexes between thrombin, fibrin and heparin are formed. In these complexes the coagulant activity of thrombin is retained, whereas the anticoagulant activity of fibrin-bound heparin is neutralized. The limited effectiveness of heparin in the prevention of both venous thrombosis and coronary reocclusion is probably related to the protective effect of fibrin on the inactivation of thrombin by anti-thrombin III. Recently, it has been shown that factor XI can be activated by thrombin, resulting in the generation of additional thrombin via the intrinsic pathway. This additional thrombin is capable of stabilizing the clot by protecting it from fibrinolysis. We studied the effect of heparin on the activation of factor XI by fibrin-bound thrombin. First, we used fibrin monomers coupled to Sepharose to which thrombin and unfractionated heparin (UFH) were bound. Factor XI activation by thrombin was the same in the presence of fibrin-Sepharose or control-Sepharose. The addition of heparin (0.1 U/ml) resulted in a 91 and 15-fold enhancement in the presence of control-Sepharose and fibrin-Sepharose, respectively. Next, we added complexes of heparin, thrombin and fibrin monomer to factor XII and XI double-deficient plasma in the presence or absence of a reconstituting amount of factor XI. In the presence of factor XI, additional fibrin formation was observed indicating that factor XI activation by thrombin in complex with fibrin and heparin can take place in plasma. We then studied the effect of other heparin-like anticoagulants on the thrombin-mediated factor XI activation. UFH enhanced thrombin-mediated factor XI activation 68-fold, LMWH (low molecular weight heparin, Fragmin) 12-fold, danaparoid (Orgaran) 3-fold, while the pentasaccharide ORG 31540 did not result in an enhancement. Binding studies of these anticoagulants to fibrin-Sepharose showed that LMWH bound with approximately the same affinity as UFH, while danaparoid and the pentasaccharide did not bind to fibrin. We conclude that fibrin-bound thrombin is capable of factor XI activation. Furthermore, heparin bound in a complex with fibrin can act as a cofactor for this activation. This factor XI activation capacity may play a role in the limited effectiveness of heparin. Provided that thrombin-mediated factor XI activation plays an important role in vivo, danaparoid and especially the pentasaccharide may be better anticoagulants than UFH and LMWH.

Blood Coagulation↗

Hereditary angioedema.

PURPOSE OF REVIEW: Hereditary angioedema is an autosomal-dominant deficiency of C1 inhibitor--a serpin inhibitor of kallikrein, C1r, C1s, factor XII, and plasmin. Quantitative or qualitative deficiency of C1 inhibitor leads to the generation of vasoactive mediators, most likely bradykinin. The clinical syndrome is repeated bouts of nonpruritic, nonpitting edema of the face, larynx, extermities, and intestinal viscera. Recently, investigators, physicians, and industry have demonstrated a renewed interest in the biology and treatment of hereditary angioedema. RECENT FINDINGS: Investigators have generated a C1INH-/- mouse model that has demonstrated the importance of the contact activation system for hereditary angioedema-related vascular permeability. An interactive database of mutations is available electronically. Investigators have continued exploration into mRNA/protein levels. The proceedings of a recent workshop have been impressive in the scope and depth. Clinicians have produced consensus documents and expert reviews. The pharmaceutical industry has initiated clinical trails with novel agents. SUMMARY: Hereditary angioedema is often misdiagnosed and poorly treated. Diagnosis requires careful medical and family history and the measurement of functional C1 inhibitor and C4 levels. Attenuated androgens, anti-fibrinolytics, and C1 inhibitor concentrates are used for long-term and preprocedure prophylaxis, but have significant drawbacks. C1 inhibitor concentrates and fresh frozen plasma are available for acute intervention. The mainstays of supportive care are airway monitoring, pain relief, hydration, and control of nausea. New agents such as recombinant C1 inhibitor, kallikrein inhibitors, and bradykinin inhibitors may offer safer and more tolerable treatments.

Angioedema↗

Rheological properties of fibrin clots. Effects of fibrinogen concentration, Factor XIII deficiency, and Factor XIII inhibition.

The effect of fibrinogen concentration, Factor XIII deficiency, and Factor XIII inhibition, utilizing hydroxylamine, on the formation of clot structure in vitro was studied in human platelet-free plasma systems. Rheological and biochemical techniques were employed to relate changes in clot elasticity and viscosity to clot structure formation following recalcification of citrate anticoagulated samples. Classical theories of linear viscoelasticity for swollen crosslinked materials were shown to give an excellent estimate of the number of covalent crosslinks per fibrin monomer, which is directly attainable from rheological data. SDS gel electrophoresis was utilized to show qualitatively that decreases in maximum clot elasticity, at constant fibrinogen concentration, are directly related to a decrease in Factor XIII-mediated intermolecular crosslinking. The use of the technique to investigate both kinetic and equilibrium crosslinking (or structure formation) abnormalities in plasma systems is discussed.

Blood Coagulation↗

The role of endothelial cells and subendothelial components in the initiation of blood coagulation.

The effect of collagen on isolated platelets, platelet-rich plasma and whole blood has been studied. Collagen failed to generate factor XIa-like activity in mixtures of isolated platelets, collagen and Ca++. Moreover, collagen added to whole blood or platelet-rich plasma containing 125I-factor IX and Ca++, also failed to form cleaved (activated) factor IX. In preliminary studies, lysed endothelial cells were found to enhance the formation of factor Xa and thrombin and to induce cleavage of 125I-factor IX in normal plasma, factor XII and factor-XI-deficient plasma even in the presence of antibody to tissue factor.

Blood Coagulation↗

Plasmin-mediated activation of contact system in response to pharmacological thrombolysis.

BACKGROUND: Thrombin activity increases in patients treated with coronary thrombolysis for acute myocardial infarction, but the mechanisms are not well defined. We have shown that thrombin activity increases in plasma and whole blood incubated with plasminogen activators and appears to be plasmin mediated and dependent on activity of the factor VIIIa/IXa complex. METHODS AND RESULTS: In the present study, increases in thrombin activity induced by incubation of recalcified citrated plasma with 0.16 to 0.5 mumol/L plasmin at 37 degrees C were markedly attenuated in recalcified citrated plasma deficient in factors XI or XII, prekallikrein, or high molecular weight kininogen, as well as in plasma incubated with plasmin in the presence of 3.5 mumol/L corn trypsin inhibitor, a specific factor XIIa inhibitor. Increases in thrombin activity also occurred in nonanticoagulated whole blood incubated with pharmacological concentrations of plasminogen activators and were markedly attenuated in the presence of corn trypsin inhibitor. Plasmin-mediated (0.25 mumol/L) activation of purified factor XII occurred in 0.05 mol/L Tris-HCl and 0.012 mol/L NaCl (pH 7.8) at 37 degrees C, resulting in equimolar quantities of two fragments that corresponded to cleavage of factor XII at Arg353-Val354, the site involved in kallikrein-mediated activation of factor XII, and cleavage at Lys346-Ser347, an apparently novel site of plasmin-mediated hydrolysis of factor XII. Contact activation was also demonstrated in plasma samples from patients after treatment with fibrinolytic agents for myocardial infarction, by demonstrating cleavage of high molecular weight kininogen from its one-chain to its two-chain form by ligand blotting with 125I-prekallikrein. CONCLUSIONS: Plasmin-mediated activation of the contact system of coagulation appears to account, at least in part, for increases in procoagulant activity in patients treated with fibrinolytic agents. It may also explain hypotension, by release of bradykinin from high molecular weight kininogen, and complement activation, by activated factor XII, that has been demonstrated in these patients.

Biomarkers↗

Isolation from human plasma of a plasminogen activator identical to urinary high molecular weight urokinase.

Two different plasmatic plasminogen activators (PA) can be demonstrated after sodium dodecyl sulfate polyacrylamide gel electrophoresis of plasma freshly collected from resting volunteers, followed by transfer of the gels onto plasminogen-rich fibrin-agarose plates. These two PA are also present in plasmas deficient in coagulation Factor XI, Factor XII, prekallikrein, or high molecular weight-kininogen. The slower-moving PA has an apparent 85,000 Mr and is immunologically unrelated to urokinase (UK). The faster moving PA was isolated by immunoadsorption of plasma on anti-UK IgG coupled to Sepharose 4B and appears to be identical to urinary high molecular weight-UK.

Endopeptidases↗