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Assessment of potential thrombogenicity of coagulation factor IX concentrates in an in vitro model of human thrombogenesis.

We have investigated the potential use of perfusion techniques in the evaluation of the thrombogenic profile of factor IX concentrates. Blood from healthy donors was anticoagulated with low molecular weight heparin and incubated with one of the following: (a) diluent (DIL); (b) a prothrombin complex concentrate (PCC); (c) an intermediate-purity concentrate (FIX/X); or (d) a high-purity concentrate (HPFIX). The thrombogenic potential was assessed as: (1) fibrin formation on subendothelium (Baumgartner's perfusion) and (2) prothrombin activation fragment 1+2 (F1+2, nM) determination. The percentage of fibrin deposition on the subendothelium was only significantly increased after incubation with PCC (62.0+/-3.6% vs. DIL 35.0+/-6.1%;p<0.05). None of the FIX concentrates modified platelet interaction versus control blood (DIL: 26.7+/-2.1%). F1+2 baseline values in anticoagulated blood were 0.6+/-0.1 nM. Preperfusion levels of F1+2 reached values of 4.4+/-0.1 nM for PCC and 5.4+/-0.1 nM for FIX/X. After perfusion, F1+2 values were 2.7+/-0.2 nM for DIL, 5.6+/-0.1 nM for PCC and FIX/X, and 3.3+/-0.2 nM for HPFIX. While measurement of F1+2 was influenced by residual contaminants present in the concentrates, the morphometric evaluation of fibrin deposition on perfused vascular surfaces could be more closely related to the net thrombogenic profile of each FIX preparation.

Animals↗

Biochemical and in vivo properties of high purity factor IX concentrates.

The purified factor IX concentrates Nanotiv (Kabi Pharmacia), Immunine (Immuno), Factor IX VHP (Bio-transfusion), Alphanine (Alpha) and Mononine (Armour) have been studied in vitro and compared with the prothrombin complex concentrates (PCCs) Preconativ (Kabi Pharmacia) and Prothromplex TIM4 (Immuno). The measured values for factor IX coagulant activity (IX:C) were in good agreement with the manufacturer's label values. In contrast to the PCCs, most of the purified concentrates were virtually devoid of other vitamin K-dependent coagulation factors, the inhibitors protein C and S as well as fibrinogen, fibronectin and immunoglobulins. Indicators of thrombin generation, namely prothrombin fragments 1 and 2 (F 1 + 2) and thrombin-antithrombin complex (TAT), were present in varying amounts in all preparations. The specific activity in the purified concentrates exceeded that in the PCCs by a factor of 50-100. Some differences in purity were found between the purified concentrates. In vivo, Nanotiv was compared with Preconativ and Immunine with Prothromplex TIM4 in crossover studies in patients with severe hemophilia B, and Mononine was tested in a single drug study. Most of the preparations yielded postinfusion increases in TAT, but not in F 1 + 2. Pharmacokinetic variables were analyzed with non-linear curve-fitting combined with model-independent methods. In retrospective comparisons, there were no apparent differences between Nanotiv, Preconativ and Mononine, whereas in vivo recovery seemed lower and the apparent clearance higher for Immunine and Prothromplex. Purified factor IX concentrates were successfully used as cover for surgery or in immune tolerance induction.

Adult↗

Comparison between two concentrates with factor VIII inhibitor bypassing activity.

Clotting activities as well as thrombogenicity in rabbits of two activated prothrombin complex concentrates, Feiba (Immuno) and Autoplex (Travenol) were compared. When total activities of clotting factors were measured, factor VII was considerably higher in Autoplex than in Feiba. Likewise, a higher concentration of the activated serine proteases VIIa and IXa was found in Autoplex. On incubation with calcium chloride low activities of Xa and IIa appeared in both concentrates. When factor VIII was also added, the increase of these activities was higher in Autoplex but not in Feiba. On addition of phospholipid, the activities of Xa and IIa considerably increased in Autoplex but not in Feiba. There was a rapid diminution of these activities when antithrombin III was in the test system. Factor IXa however, on incubation of the concentrates with antithrombin III disappeared slower from Autoplex than from Feiba. Thrombogenicity in rabbits assayed by the Wessler test varied between different batches of the concentrate but was higher in Autoplex than in Feiba by an average factor of between 12.8 and 17.8.

Animals↗

Acquired factor VIII inhibitors in nonhemophilic patients.

Antibodies against factor VIII occur in about 15-35% of hemophilia A patients and induce refractoriness to factor VIII substitution. In most cases, these antibodies are of the IgG class. Strategies to avoid or to treat such inhibitors are controversial. In very rare cases, factor VIII inhibitors also develop in nonhemophilic patients. Although there are anecdotal reports that these antibodies may disappear spontaneously without occurrence of bleeding tendencies, in the majority of patients the clinical course is characterized by severe hemorrhages. From 1980 to 1995, we observed ten nonhemophilic patients with acquired factor VIII inhibitors at our hospital. In most cases, a sudden bleeding tendency was observed shortly after an injury or surgery. Coagulation tests showed a prolonged aPTT and a decreased F VIII level. Other deficiencies of blood-clotting factors and acquired or hereditary von Willebrand's disease were excluded. Therapy with F VIII concentrates did not produce the expected increase. Measurement of F VIII inhibitor levels in Bethesda units/ml (BU/ml) revealed maximal values in the range of 2-128 BU/ml. Immunosuppressive therapy with azathioprine or cyclophosphamide in combination with methylprednisolone led to complete disappearance of the inhibitor, normalization of the coagulation tests, and complete remission of the bleeding tendency in seven treated patients within 6 weeks. Although the clinical course is not predictable and inhibitors may disappear spontaneously, combined therapy with methylprednisolone and azathioprine or cyclophosphamide is recommended for patients with bleeding tendency. In pregnancy, therapy should be started only with methylprednisolone; post-partum, azathioprine should be used additionally if methylprednisolone as a single drug does not lead to complete remission. In emergency situations, therapy with high doses of human factor VIII concentrate may be used. When bleeding does not cease, the additional use of activated prothrombin-complex concentrates or porcine factor VIII is indicated. Possible side effects may include hepatitis and short-lived intravascular thrombin production.

Adult↗

Properties of a new fibrin glue stable in liquid state.

A pasteurized preparation of fibrin glue composed of two separate stable, liquid components: highly purified human thrombin and fibrinogen concentrate is described. The components are mixed extemporaneously during application. Thrombin was prepared using a prothrombin complex concentrate as starting material which was activated by calcification and then heated in solution during 10 hours at 60 degrees C in the presence of stabilizers. The isolation of thrombin was carried out using a column of benzamidine-Sepharose 6B. The eluate contained thrombin with a high degree of purity (more than 95% assessed by SDS-PAGE) with a specific activity > 2,500 IU/mg protein. The purified liquid thrombin preparation remained stable for at least 6 months. The fibrinogen concentrate was prepared from cryoprecipitate after removal of factor VIII and then virally inactivated by pasteurization in the presence of glucose and sorbitol. After purification the concentrate containing a high level of fibrinogen was formulated with urea 0.5 M or arginine 5% before conditioning. Both components of the fibrin glue kept its biological properties for more than 6 months at +4 degrees C.

Adhesiveness↗

Properties of factor IX concentrates.

Five purified concentrates--Nanotiv (Kabi Pharmacia), Immunine (Immuno), Factor IX VHP (Biotransfusion), Alphanine (Alpha Therapeutic Corporation), and Mononine (Armour Pharmaceutical Company)--were characterized biochemically and their in vivo pharmacokinetic and thrombogenic properties evaluated. The results were compared with those for two prothrombin complex concentrates (PCCs): Preconativ (Kabi Pharmacia) and Prothromplex TIM4 (Immuno). The measured values for factor IX coagulant activity (FIX:C) generally agreed with the manufacturers' labeled values. The purified concentrates were virtually devoid of other vitamin K-dependent coagulation factors, the inhibitor proteins C and S, and either fibrinogen, fibronectin, or immunoglobulins. Indicators of thrombin generation (i.e., prothrombin fragments F1 + 2 and thrombin-antithrombin complex) were present in varying amounts in all preparations. The level of specific activity in the purified concentrates exceeded that in the PCCs by a factor of 50- to 100-fold. Pharmacokinetic variables were studied in severe hemophilia B patients: Nanotiv was compared with Preconativ; Immunine was compared with Prothromplex TIM4 in crossover studies; and Mononine was tested in a single-drug study. No differences were apparent between Nanotiv, Preconativ, and Mononine, but recovery rates were lower, clearance rates higher, and FIX:C half-life shorter for Immunine and Prothromplex TIM4, although the disparate results might have been attributable to methodologic differences. Purified factor IX concentrates were used successfully as cover for surgery and in immune tolerance induction without observable adverse effects.

Antithrombin III↗

Successful treatment of high titer inhibitors in mild hemophilia A with avoidance of factor VIII and immunosuppressive therapy.

We describe two patients with mild hemophilia A (MHA) who developed high titer inhibitor (HTI) following intensive recombinant factor VIII (rFVIII) concentrate replacement for surgery and trauma. Intranasal desmopressin was instituted shortly following immunosuppressive therapy (IST) and activated prothrombin complex concentrate (APCC) in one case, and following APCC alone in the second case. Avoidance of factor VIII (FVIII) coupled with intranasal desmopressin prophylaxis three times a week resulted in undetectable inhibitor levels. Both patients have had no further bleeding episodes and have been maintained on desmopressin prophylaxis prior to activity for the past 2 to 3 years. Recombinant factor VIIa (rFVIIa) was used successfully prior to a second surgery in one patient without complication.

Adolescent↗

[Recombinant activated Factor VII (Novoseven Novo Nordisk) for hemostasis in acquired Factor VIII-inhibitor hemophilia].

One life threatening mediastinal hemorrhage and two limb threatening hemorrhages, one in the retroperitoneal and thigh muscles and the other in the back of the hand requiring surgical evacuation, were treated with recombinant activated factor VII concentrate (rFVIIa; Novoseven Novó Nordisk) in a patient with a postpartum acquired inhibitor against factor VIII. High dose activated prothrombin complex concentrate (Feiba sTIM4 Immuno), repeatedly administered, had proven to be ineffective; porcine factor VIII concentrate (Hyate C Porton) had become ineffective due to a rise in inhibitor titers against human and porcine factor VIII as well. 90 micrograms rFVIIa per kg body weight was administered as an i.v. bolus injection every 2-3.5 hours. The treatment periods were 22.5 days in the mediastinal and 11 days in each of the two other hemorrhages. Hemostasis was promptly achieved and maintained. All manipulations (bone marrow biopsy, surgical evacuation of the hematoma, change of venous access, withdrawal of drains, change of dressings) were done immediately after rFVIIa administration, without bleeding complications. There were no side effects despite the high dose, frequent and long lasting treatment with a total of 234 x 4.8 and 46 x 3.6 mg rFVIIa. The concentrate was well tolerated, there were no signs of systemic activation of coagulation, either in the coagulation test results or clinically, in spite of patient's factor VII levels up to 60 U/mL and prothrombin times around 6 s. No inhibitors against patient's factor VII, induced by rFVIIa, were detected. Due to its extrinsic factor VIII bypass effect, rFVIIa led to excellent hemostasis even with inhibitor titers of 376 Bethesda units against human and 44 against porcine factor VIII. Nevertheless, immunosuppressive treatment with cyclophosphamide and prednisone was performed, with prompt decrease of the inhibitor titer.(ABSTRACT TRUNCATED AT 250 WORDS)

Adult↗

Large-scale production and properties of a solvent-detergent-treated factor IX concentrate from human plasma.

A human solvent-detergent (SD)-treated factor IX concentrate has been produced from cryoprecipitate-poor plasma using DEAE-Sepharose CL-6B and heparin-Sepharose CL-6B chromatography. The DEAE eluate was incubated with an SD mixture [0.3% tri(n-butyl) phosphate-1% Tween 80, 6-h at 24 degrees C] which was found to inactivate, in less than 1 h, more than 3.8 log10 of vesicular stomatitis virus and more than 4.8 log10 of Sindbis virus; the SD was removed by a subsequent heparin adsorption step. The specific activity of the concentrate was 10.9 +/- 1.3 IU factor IX: c/mg protein (n = 15). The factor IX coagulant to antigen ratio was 0.7 +/- 0.1. The concentrate was essentially free of factors II, VII and X, and protein C. The usual major contaminants of prothrombin complex concentrate (PCC) were absent: the concentrate contained about 94% alpha-1 proteins, and only 4 major proteins were resolved by SDS-PAGE (respective apparent molecular weight: 130, 86, 76 and 69 kilodaltons), and by crossed immunoelectrophoresis against an anti-PCC serum. The nonactivated partial thromboplastin time was equivalent to that of PCC; the product was devoid of factor IXa, of other activated procoagulant factors and of coagulant-active phospholipids (removed with SD in the heparin breakthrough fraction). Animal studies using the Wessler test and acute-toxicity test in rabbits revealed no adverse side effects. SD treatment could thus be used to inactivate viruses in factor IX concentrate and improve the safety of replacement therapy in hemophilia B.

Adsorption↗

Diagnosis and treatment of homozygous protein C deficiency. Report of the Working Party on Homozygous Protein C Deficiency of the Subcommittee on Protein C and Protein S, International Committee on Thrombosis and Haemostasis.

This report summarizes the documented cases of homozygous protein C deficiency in the United States and Europe. Procedures for diagnosing and treating this disorder (both initially and over the long term) have been compiled by a working party on homozygous protein C deficiency of the Subcommittee on Protein C of the International Committee on Thrombosis and Haemostasis. Homozygous protein C deficiency is an autosomal recessive disorder that usually manifests itself by purpura fulminans and, less commonly, by massive large vein thrombosis; severe diffuse intravascular coagulation also develops in these infants, and there is evidence of intrauterine thrombosis. For confirmation of homozygous protein C deficiency in a neonate with purpura fulminans or massive venous thrombosis, the infant should have undetectable protein C activity and both parents should be heterozygous for protein C deficiency. At the onset of symptoms, the initial treatment should be plasma (8 to 12 ml/kg every 12 hours) until all lesions have healed. Two modalities for long-term treatment are accepted as useful in these children: oral anticoagulant therapy or protein C replacement (fresh frozen plasma or prothrombin complex concentrate). Liver transplantation has been performed in only one child, with success. Oral anticoagulation (vitamin K antagonists, maintaining the prothrombin time from one and one-half to two times control values or at the International Normalized Ratio of 2.5 to 4.4) is our recommendation of choice for long-term treatment. With appropriate care, these children are able to be free of coagulopathy and live relatively normal lives.

Anticoagulants↗

Immunopurified clotting factor concentrates.

Monoclonally purified factor concentrates have been available for hemophilia treatment since the late 1980's. They are biochemically characterized by a high-degree of clotting factor (FVIII or FIX) purification and by the virtual lack of contaminants (immunoglobulins, fibrinogen and fibronectin). The purification procedure sharply reduces the viral load and increases the safety of the concentrate because of the viral inactivation procedures. Viral safety is demonstrated by prospective studies in previously untreated patients as well as by the huge amount of concentrates produced and used so far without reports of untoward side effects. Monoclonal concentrates are also safe in terms of inhibitor production: they do not elicit the appearance of inhibitors to either FVIII or FIX with increased frequency, as shown by data in published prospective studies. Prospective studies have recently demonstrated that the long-term administration of these high purity concentrates does not exert any side effects on the immune system in HIV-positive hemophiliacs. The FIX concentrate is also extremely safe in terms of thrombotic complications: the highly pure FIX does not activate blood coagulation. It has been shown that the monoclonally purified FIX concentrate caused no thrombotic events in high-risk surgical patients who had previously experienced such complications while on Prothrombin Complex Concentrates.

Antibodies, Monoclonal↗

A fully recombinant partial prothrombin complex effectively bypasses fVIII in vitro and in vivo.

The development of inhibitory antibodies is a serious complication in hemophilic patients, severely compromising therapeutic success. Bleeding episodes in affected patients are controlled by treatment with a plasma-derived prothrombin complex concentrate (PCC), activated PCC (APCC) or recombinant activated factor VII. We hypothesized that a recombinant two-component agent consisting of recombinant prothrombin (rfII) and activated factor X (rfXa) would have substantial fVIII bypassing activity and could be a safe alternative therapeutic option. To test this hypothesis we assembled an agent in vitro solely consisting of rfII and rfXa at a molar ratio of 37,500:1. These factors are believed to be responsible for the activity of APCC preparations. Recombinant fX, used as the source for fXa generation, and rfII were purified from serum-free and protein-free conditioned media of stably transfected CHO and BHK tissue culture cells, respectively. Activation of rfX to rfXa was accomplished by the plant protease ficin, obviating the need for a protease derived from a human or animal source. We found that in vitro the complex reduced the abnormally prolonged activated partial thromboplastin time (APTT) of a high-titer fVIII inhibitor plasma similar to an APCC preparation. Furthermore, addition of increasing amounts of rfII/rfXa to inhibitor plasma resulted in a linear dose-dependent increase in the rate of thrombin generation. In a rabbit fVIII inhibitor model, treatment with rfII/rfXa statistically significantly reduced the intensity of the abnormal cuticle bleeding. In the Wessler test, rfII/rfXa showed no thrombogenicity. These data show that a well-defined, particularly safe and efficacious agent with fVIII bypassing activity can be generated from recombinant fII and fXa.

Animals↗

High-purity factor IX concentrates for treatment of hemophilia B: relative purity and thrombogenic potential.

Constituents other than factor IX have been implicated as etiologic agents for thrombotic complications in patients receiving prothrombin complex concentrates (PCCs). In vitro studies, in vivo animal models, and clinical evaluations in patients with hemophilia B indicate that high-purity factor IX concentrates contain significantly fewer potentially thrombogenic contaminants than PCCs. A recent in vitro study from our laboratory used highly sensitive assays to analyze the relative purity of these newer products. The following products were studied using sodium dodecyl sulfate-polyacrylamide gel electrophoresis (SDS-PAGE) analysis and immunoblotting: Aimafix, AlphaNine-SD, Factor IX VHP, Immunine, Mononine, Nanotiv, and 9MC (now known as Replinine). The mean specific activity of the high-purity factor IX products ranged from 68 IU factor IX/mg (Aimafix) to 246 IU factor IX/mg (Mononine). SDS-PAGE analysis under reducing and nonreducing conditions showed that Mononine had the fewest contaminating bands. The immunoblot to detect factor IX showed a dominant factor IX band for all products, visible light chain of factor IX for all products except Aimafix, and another contaminating band visible at 49,500 daltons for all products except 9MC. High molecular weight contaminants were apparent for some products. Factor VIIa was detected in some lots of Immunine, Nanotiv and 9MC. Factor X and prothrombin contaminated Aimafix, AlphaNine-SD, Factor IX VHP, Immunine, Nanotiv and 9MC. Thus, Mononine, Nanotiv and 9MC demonstrated the highest purity but no product was totally free of contaminants.

Blood Coagulation Factors↗

Soluble HLA class I and class II concentrations in factor VIII and PCC preparations.

Soluble HLA class I (sHLA-CI) and class II (sHLA-CII) molecules were quantitated in 11 commercially available factor VIII and prothrombin complex concentrate (PCC) preparations by enzyme-linked immunosorbent assays (ELISA). In 4 preparations, we detected traces of sHLA-CI (0.01-0.07 mg/l), and in 7 hemostatic preparations small amounts of sHLA-CII molecules (0.02-0.28 mg/l). The concentrations of these contaminant molecules are unequivocally below the mean values of sHLA in human plasma (sHLA-CI: 1.01 +/- 0.72 mg/l; sHLA-CII: 1.53 +/- 2.44 mg/l). Based on the total amount of chronically administered factor VIII or PCC, contaminating sHLA molecules may be in principle able to exert immunomodulatory effects in patients treated with such preparations.

Enzyme-Linked Immunosorbent Assay↗

Safety of high doses of a monoclonal antibody-purified factor IX concentrate. The Mononine Study Group.

This report summarizes safety and efficacy information among patients treated with high doses (> 75 U/kg) of a monoclonal antibody-purified factor IX concentrate [coagulation factor IX (human) monoclonal antibody purified)] in two clinical trials. One hundred infusions of this factor IX concentrate at doses > 75 U/kg were administered to 35 patients, six of whom had experienced thrombotic complications during previous treatment with prothrombin complex concentrate. Hemostasis in all patients was rated as "excellent," and there were no thrombotic complications.

Adult↗

Current opinion on inhibitor treatment options.

Inhibitor development in patients with hemophilia complicates hemostatic management. Currently, high doses of factor concentrates are used to override low-titer, low-responding inhibitors during acute bleeding episodes. Bypassing agents, such as the activated prothrombin complex concentrate (aPCC), Factor Eight Inhibitor Bypassing Activity, Anti-Inhibitor Coagulant Complex, Vapor Heated (FEIBA; Baxter AG, Vienna, Austria), and activated recombinant factor VII (rFVIIa; NovoSeven, Novo Nordisk A/S, Bagsvaerd, Denmark), are commonly used to treat acute bleeding episodes in patients with high-titer, high-responding inhibitors, whereas long-term therapeutic options include inhibitor eradication using immune tolerance induction. Neither FEIBA nor rFVIIa can be monitored with a laboratory assay, making it difficult to establish optimal dosages. Comparative studies evaluating the efficacy of FEIBA and rFVIIa for bleed control have been sparse, prompting investigators to initiate crossover comparison studies to assess the efficacy and cost of aPCC and rFVIIa in the treatment of joint hemorrhages. Both the cost of therapy and the outcome of therapy will need to be considered in the development of future hemostatic agents for patients with inhibitors.

Blood Coagulation Factor Inhibitors↗

Myocardial infarction after FEIBA therapy in a hemophilia-B patient with a factor IX inhibitor.

A case of myocardial infarction (MI) in a hemophilia B patient with a factor IX (FIX) inhibitor (6 BU) is described. MI occurred after two infusions of FEIBA concentrate. Unexpectedly, these infusions resulted in a neutralization of the inhibitor and a consistent plasma FIX activity which may have increased the thrombotic risks. Four days later, a psoas hematoma was suspected. At that time the inhibitor remained undetectable, allowing a therapy with purified FIX concentrates. No recurrence of thrombotic complication was observed. This is an additional illustration of the thrombotic risks associated with the use of activated prothrombin complex concentrates, especially in patients having pre-existing risk factors for thrombosis. The management of bleeding episodes in hemophilia B patients with inhibitor represents an especially difficult challenge.

Adult↗

Clinical experience of a new monoclonal antibody purified factor IX: half-life, recovery, and safety in patients with hemophilia B.

Highly purified factor IX, produced by a monoclonal antibody immunoaffinity technique, contains a high concentration of factor IX with negligible amounts of other vitamin K-dependent coagulation factors. When infused in patients with hemophilia B, monoclonal factor IX concentrate yielded a mean half-life of 34.6 +/- 13.1 (+/- SD) hours and in vivo recovery of 0.67 +/- 0.14 U/dL rise per each U/kg of factor IX infused. Unlike prothrombin complex concentrate (PCC) infusion, monoclonal IX infusion was not associated with rises in factors II, VII, and X, but achieved in vivo recovery and half-life at least comparable to PCC. Long-term use of monoclonal IX as a home-care product provided excellent response in the control of bleeding episodes and was equivalent to previous patient experience with PCC. The results indicate that monoclonal IX concentrate raises factor IX levels effectively, while avoiding extraneous thrombogenic components.

Adult↗