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Rabbit antibodies against the procoagulant activity (VIII:C) of human factor VIII. Some theoretical and practical considerations on the human factor VIII molecule using heterologous antibodies.

The procoagulant activity VIII:C was separated from factor VIII antigen (VIIIR:Ag) by gel filtration in the presence of 0.25 mol/l calcium chloride. Antibodies (anti-VIII:C) were obtained by immunization of rabbits with VIII:C. The last step of the purification procedure of antibodies consists of an adsorption on VIIIR:Ag-Sepharose 2 BCL as immunoadsorbent to remove contaminating traces of antibodies against VIIIR:Ag. The anti-VIII:C titer remains unchanged during this adsorption (29 Bethesda units per mg). In solution, anti-VIII:C neutralizes factor VIII activity (in plasma, cryoprecipitate or in purified form) and the fragment VIII:C without reacting with VIIIR:Ag. Once immobilized on a solid matrix, i.e. 2% agarose, it loses over 95% of its inhibitory capacity. The immobilized anti-VIIIR:Ag binds stoichiometrically the antigen and the activity of plasma factor VIII. These results together suggest that factor VIII is composed of 2 different entities, but undissociated under physiological conditions. Immunophysical analyses as a function of pH and temperature of anti-VIII:C and its complex with factor VIII show properties similar to those of homologous antibodies. The antigen determinants of VIII:C (VIII:CAg) are destroyed at low pHs or high temperatures, and VIII:C can no more form a complex with anti-VIII:C. Purified anti-VIII:C is also used in a two-stage assay to detect VIII:CAg or cross-reacting material in some severe haemophiliacs.

Animals↗

Prophylactic dosing of factor VIII and factor IX from a clinical pharmacokinetic perspective.

The high cost and limited availability of factor concentrates make dosing of factor VIII (FVIII) or factor IX (FIX) a crucial issue in the prophylactic treatment of haemophilia. It has often been recommended that this treatment should aim to maintain a minimum plasma level of 1% of normal coagulation factor activity (FVIII:C or FIX:C). The dosage needed is commonly given as 25-40 U kg(-1) three times weekly for FVIII or twice weekly for FIX. However, these guidelines are valid only with several qualifications. First, the actual trough levels required may vary considerably between patients. The clinical severity of haemophilia may depend on more factors than the endogenous level of FVIII:C or FIX:C. Secondly, interindividual variations in dose requirements are also due to variance in the pharmacokinetics of the coagulation factors. Pharmacokinetic calculations are useful to design optimal dosing schedules to achieve required trough levels of FVIII:C or FIX:C. Moreover, tailoring of the dosing of FVIII or FIX according to their disposition in the individual patient can markedly improve the cost-effectiveness of prophylactic treatment. However, the usefulness of in vivo recovery as a guide for prophylactic dosing seems questionable. It should be clearly understood that maintaining a certain trough level of FVIII:C or FIX:C is not an end in itself. Clinical outcome, not the achieved trough level, determines whether a dosage is adequate. Chiefly for economic reasons, the minimum effective dosage of coagulation factor should be determined and used in every patient. The dose requirement should also be re-evaluated at appropriate times.

Drug Administration Schedule↗

Pharmacokinetics of factor VIII and factor IX.

A survey of principal pharmacokinetic (PK) studies on factor VIII (FVIII) and factor IX (FIX) plasma- and rDNA-derived concentrates, analysed by means of the PKRD program, has been performed. Notwithstanding the accurate definition of the study design, released in 1991 by the Scientific and Standardization Committee of the International Society on Thrombosis and Haemostasis (SSC-ISTH), a large variability of PK parameters has been pointed out. In the majority of the PK studies, the size of the population is small. In this situation, a careful individualization of haemophilia therapy is strongly recommended. The tailored prediction of loading and maintenance dosages and the need for strict control of trough FVIII/IX levels are mandatory not only to decrease the risk of bleeds but also to spare financial resources. Recently, the old problem of FVIII assay standardization has again become a concern among physicians, especially after the introduction of B-domain deleted rFVIII concentrate. The discrepancies between the widely used one-stage clotting assay and the chromogenic substrate assay seem to be solved by the introduction of a product-specific laboratory standard.

Cross-Over Studies↗

Differential interaction of coagulation factor VIII and factor V with protein chaperones calnexin and calreticulin.

Factor VIII (FVIII) and factor V (FV) are homologous coagulation cofactors sharing a similar domain organization (A1-A2-B-A3-C1-C2) and are both extensively glycosylated within their B-domains. In mammalian cell expression systems, compared with FV, the FVIII primary translation product is inefficiently transported out of the endoplasmic reticulum. Here we show that FVIII is degraded within the cell by a lactacystin-inhibitable pathway, implicating the cytosolic 20 S proteasome machinery. Protein chaperones calnexin (CNX) and calreticulin (CRT) preferentially interact with glycoproteins containing monoglucosylated N-linked oligosaccharides and are proposed to traffic proteins through degradative and/or secretory pathways. Utilizing co-immunoprecipitation assays, intracellular FVIII was detected in association with CNX maximally within 30 min to 1 h following synthesis, whereas FV could not be detected in association with CNX. In contrast, both FVIII and FV displayed interaction with CRT during transit through the secretory pathway. B-domain deleted FVIII significantly reduced the CNX and CRT interaction, indicating the B-domain may represent a primary CNX and CRT interaction site. In the presence of inhibitors of glucose trimming, the interactions of FVIII with CNX, and of FVIII and FV with CRT, were significantly reduced whereas the secretion of FVIII, and not FV, was inhibited. In addition, transfection in a glucosidase I-deficient Chinese hamster ovary cell line (Lec23) demonstrated that both degradation and secretion of FVIII were inhibited, with little effect on the secretion of FV. These results support that CNX and CRT binding, mediated at least in part by the B-domain of FVIII, is required for efficient FVIII degradation and secretion. In contrast, FV does not require CNX interaction for efficient secretion. The results suggest a unique requirement for carbohydrate processing and molecular chaperone interactions that may limit the productive secretion of FVIII.

Animals↗

In vivo recovery of factor VIII and factor IX: intra- and interindividual variance in a clinical setting.

In vivo recovery (IVR) is traditionally used as a parameter to characterize the pharmacokinetic properties of coagulation factors. It has also been suggested that dosing of factor VIII (FVIII) and factor IX (FIX) can be adjusted according to the need of the individual patient, based on an individually determined IVR value. This approach, however, requires that the individual IVR value is more reliably representative for the patient than the mean value in the population, i.e. that there is less variance within than between the individuals. The aim of this investigation was to compare intra- and interindividual variance in IVR (as U dL1 per U kg1) for FVIII and plasma-derived FIX in a cohort of non-bleeding patients with haemophilia. The data were collected retrospectively from six clinical studies, yielding 297 IVR determinations in 50 patients with haemophilia A and 93 determinations in 13 patients with haemophilia B. For FVIII, the mean variance within patients exceeded the between-patient variance. Thus, an individually determined IVR value is apparently no more informative than an average, or population, value for the dosing of FVIII. There was no apparent relationship between IVR and age of the patient (1.5-67 years). For FIX, the mean variance within patients was lower than the between-patient variance, and there was a significant positive relationship between IVR and age (13-69 years). From these data, it seems probable that using an individual IVR confers little advantage in comparison to using an age-specific population mean value. Dose tailoring of coagulation factor treatment has been applied successfully after determination of the entire single-dose curve of FVIII:C or FIX:C in the patient and calculation of the relevant pharmacokinetic parameters. However, the findings presented here do not support the assumption that dosing of FVIII or FIX can be individualized on the basis of a clinically determined IVR value.

Adolescent↗

Thrombin activation of factor VIII. II. A comparison of purified factor VIII and the low molecular weight factor VIII procoagulant.

The current experiments examine the reaction between purified human alpha-thrombin and purified human factor VIII and compare this with the reaction between alpha-thrombin and the low molecular weight factor VIII procoagulant activity obtained by high ionic strength dissociation. The reaction patterns of both procoagulants are similar, demonstrating in initial increase in factor VIII activity followed by a decay of procoagulant activity. The extent of activation which is observed in the initial phase decreases with lower temperatures and with lower thrombin concentrations. A pseudo-first order relationship is demonstrated for the activation phase. The labile factor VIII procoagulant activity produced by the initial action of thrombin appears to be intrinsically unstable, since the addition of hirudin or diisopropylfluorophosphate does not prevent the subsequent decay of the procoagulant activity. The similar activation and decay patterns of purified factor VIII and the dissociated low molecular weight factor VIII procoagulant support the concept that the low molecular weight procoagulant itself represents the functional coagulant moiety of the factor VIII complex.

Chemical Phenomena↗

Combined factor VIII and factor XI congenital deficiency: a case report.

Combined congenital defect involving both Factor VIII and XI is a very rare disorder. We describe a case of combined Factor VIII and XI deficiency in which the propositus has a mild hemophilia A and inherited a Factor XI deficiency from the father. Moreover, we report on the benefit of DDAVP administration to the patient during a bleeding episode.

Adult↗

Successful preoperative apheresis of factor VIII antibody using factor VIII concentrate as a replacement fluid.

Plasma exchange was performed on a patient with hemophilia A and inhibitor to factor VIIIC prior to bilateral cataract removal. Koate was used as replacement fluid with effective reduction of the inhibitor level. From the technical standpoint we found out that factor VIII is best reconstituted in water and directly infused through the venous line and not the centrifuge bowl.

Adult↗

Combination immunosuppressive therapy after factor VIII infusion for acquired factor VIII inhibitor.

STUDY OBJECTIVE: To evaluate the effectiveness of combined cyclophosphamide, vincristine, and prednisone (CVP) therapy after antigenic stimulation with factor VIII in the eradication of factor VIII inhibitor. DESIGN: Factor VIII activity and inhibitor titer were measured before and after FVIII-CVP therapy and patients with factor VIII inhibitor were followed for at least 2 years. SETTING: The first course of therapy was carried out in the hospital when nonhemophiliac patients were admitted for bleeding. Otherwise, treatment was administered at the outpatient clinic. PATIENTS: From 1975 to 1986 we studied 12 nonhemophiliac and 5 hemophiliac patients with factor VIII inhibitor treated with FVIII-CVP and followed at our clinic. INTERVENTION: Patients were infused with one dose of factor VIII concentrate, 50 to 100 U/kg body weight, followed by cyclophosphamide, 500 mg on day 1 and 200 mg/d on days 2 to 5; vincristine, 2 mg on day 1; and prednisone, 100 mg/d on days 1 to 5. This regimen was repeated every 3 to 4 weeks. RESULTS: Of 12 nonhemophiliac patients, 11 responded after 1 to 3 courses of FVIII-CVP with complete disappearance of the inhibitor without recurrence. Among 5 patients with hemophilia who were given 3 to 8 courses, only 1 patient responded with a transient disappearance of inhibitor. Mild neutropenia and infection occurred in 3 patients and required antibiotic treatment. CONCLUSION: Factor VIII-CVP therapy is highly effective in the eradication of factor VIII inhibitor in nonhemophiliac patients but not in patients with hemophilia.

Adult↗

Binding of factor VIIIa and factor VIII to factor IXa on phospholipid vesicles.

The activation of factor X by factor IXa (fIXa) in the presence of phosphatidylcholine-phosphatidylserine (PCPS) vesicles is markedly accelerated by thrombin-activated factor VIII (fVIIIa). The interaction between highly purified fVIIIa and fIXa in this complex was studied fluorometrically at 25 degrees C by using a derivative of D-phenylalanyl-prolyl-arginyl-fIXa which was modified at the active site with fluorescein-5-maleimide (Fl-M-FPR-fIXa). Titration of Fl-M-FPR-fIXa with fVIIIa at fixed PCPS resulted in a large, saturable increase in anisotropy (delta r = 0.09). The titration data were fit to a model assuming a reversible equilibrium between fVIIIa and fIXa, resulting in an apparent dissociation constant of 2 nM and a stoichiometry of 1 mol of fVIIIa/mol of Fl-M-FPR-fIXa. The initial velocity of factor X activation was measured under identical conditions except that active fIXa and factor X were included, which yielded binding parameters similar to those determined fluorometrically. Thus, the fluorescence method accurately reflects complex formation between fVIIIa and fIXa on the phospholipid surface, and the fVIIIa-fIXa interaction is not influenced by the presence of the substrate, factor X. Addition of fVIII to Fl-M-FPR-fIXa and PCPS produced a small, saturable increase in anisotropy (delta r = 0.03), followed by a larger increase (delta r = 0.07) upon addition of thrombin to activate fVIII. Thus, fVIII binds fIXa, but proteolytic modification of fVIII must occur before the complete fVIIIa-dependent structural change in the active site of fIXa, as reflected in the anisotropy change, occurs

Animals↗

Influence of von Willebrand factor on the reactivity of human factor VIII inhibitors with factor VIII.

In order to determine the difference in reactivity of factor (F) VIII inhibitors against the FVIII/von Willebrand factor (vWF) complex and against vWF-deficient FVIII, we investigated a panel of 10 antibodies to FVIII from multitransfused individuals with severe haemophilia A and other pathologies. Immunoblotting of purified FVIII and purified thrombin-cleaved FVIII revealed that in all cases inhibitor epitopes could be localized in the heavy chain (A2 subunit) while in four cases they were also present in the light chain. One of the FVIII inhibitors remained unclassified. The effect on FVIII:C of purified IgG from inhibitor plasmas was tested against a high purity FVIII/vWF concentrate and a monoclonally purified FVIII concentrate with only trace contents of vWF, by two different functional assays. Our results suggest that for those inhibitors showing A2 plus light chain (LC) reactivity, the IgG concentration required to inhibit 50% of FVIII activity in vitro is higher for the FVIII/vWF complex than for the vWF-deficient FVIII. We conclude that there might be a protective role of vWF (at least in vitro) against FVIII inhibitors with A2 and LC subunit specificity.

Antibodies↗

Localization of the binding regions of a murine monoclonal anti-factor VIII antibody and a human anti-factor VIII alloantibody, both of which inhibit factor VIII procoagulant activity, to amino acid residues threonine351-serine365 of the factor VIII heavy chain.

We have localized the binding region of a previously described monoclonal anti-factor VIII (FVIII) inhibitory antibody (C5) to amino acid residues Thr351-Ser365 of the thrombin-generated 54-kD fragment of the heavy chain of FVIII. Synthetic FVIII peptides were examined for the ability to competitively inhibit the binding of C5 to FVIII in an ELISA system. The synthetic FVIII peptide Thr351-Ser365 blocked C5 binding to FVIII in a dose-dependent manner in this system. Two other synthetic FVIII peptides, Asn340-Glu354 and Glu342-Asp356, which partially overlapped Thr351-Ser365, also blocked C5 binding to FVIII. Blocking of C5 binding with these peptides, however, required much greater concentrations (greater than 100 times stronger) than that required for Thr351-Ser365. The Thr351-Ser365 peptide also neutralized the FVIII inhibitory activity of C5 in plasma. A human FVIII inhibitor (anti-FVIII heavy chain alloantibody) was also partially neutralized by Thr351-Ser365. Thr351-Ser365 lies between a thrombin cleavage site (Arg372) and an activated protein C cleavage site (Arg336) and may be at or near a region of functional importance in the expression of FVIII procoagulant activity.

Amino Acid Sequence↗

AIDS retrovirus antibodies in hemophiliacs treated with factor VIII or factor IX concentrates, cryoprecipitate, or fresh frozen plasma: prevalence, seroconversion rate, and clinical correlations.

Antibodies to the AIDS retrovirus, specifically to human T cell lymphotropic virus, type III, and AIDS-associated retrovirus, were detected with increasing prevalence in a population of 190 hemophiliacs from western Pennsylvania between 1981 and 1984: 7.7% in 1981, 20.0% in 1982, 45.5% in 1983, and 62.5% in 1984. The seropositive included approximately three fourths of those receiving factor VIII concentrate, nearly one third of those receiving factor IX concentrate, nearly one fifth of those receiving cryoprecipitate, and none of those receiving fresh frozen plasma. The seroconversion rate, determined on 43 seropositive hemophiliacs from this group who were serially sampled, was 0% in 1977, 4.7% in 1978, 4.9% in 1979, 2.6% in 1980, 10.5% in 1981, 52.9% in 1982, 87.5% in 1983, and 100% in 1984. Of 27 seropositive for three or more years (since 1982 or before), four (15%) have developed AIDS and seven (26%), diffuse lymphadenopathy (ARC); of 16 seropositive for less than three years, none has developed AIDS and three (19%) have developed ARC. The mean time from seroconversion to onset of ARC, 0.8 +/- 0.2 years (SEM), was shorter (P less than .001) than the time to onset of AIDS, 4.1 +/- 0.6 years. These findings confirm the widespread presence of AIDS retrovirus and support the association of these retroviruses with the acquired immunodeficiency syndrome and related conditions.

Acquired Immunodeficiency Syndrome↗

Treatment of a high titer anti-factor-VIII antibody by continuous factor VIII administration: report of a case.

Daily administration of large doses of factor VIII concentrate in a hemophiliac with a high titer factor VIII inhibitor resulted in marked reduction in the titer and response of the inhibitor to factor VIII administration and made possible elbow and bilateral knee replacements under conventional factor VIII coverage. Studies performed during the course of treatment indicated that the reduction in the inhibitor was the result of specific tolerance to factor VIII.

Adult↗

Danazol increases factor VIII and factor IX in classic hemophilia and Christmas disease.

We gave danazol (600 mg per day orally for 14 days), an attenuated androgen, to four adults with classic hemophilia and one adult with Christmas disease. The levels of factor VIII in the patients with classic hemophilia ranged from 1 to 3 per cent before treatment and rose to 3 to 8 per cent during the treatment period. The level of factor IX in the patient with Christmas disease rose from 5 to 14 per cent. The rise in clotting-factor activity was usually observed within five to six days after the initiation of therapy and peaked between 7 and 13 days. The drug had no untoward effects. During the 70 patient-days of therapy, only two patients required plasma products, each on one occasion. These data suggest that danazol therapy may decrease the hemorrhagic tendency and reduce the need for transfusions of plasma products in classic hemophilia and Christmas disease. Controlled clinical trials will be required to establish its value in these applications.

Adult↗

Evaluation of coagulation equilibrium at baseline and during factor VIII and factor IX replacement in haemophiliacs.

We designed a prospective unicentre study to evaluate the safety and efficacy of continuous infusion of different factor VIII (FVIII) and FIX concentrates in haemophilia A (n = 9) and haemophilia B (n = 4) patients undergoing surgical procedures. This study was designed to assess the potential risk of developing thromboembolic complications during different types of surgery and to provide some comparative data with respect to continuous infusion of clotting factor concentrates. Heparin prophylaxis was not used in most cases. As pointed out by others, we did not find any significant changes in prothrombin fragment F1+2 and D-dimers during a pharmacokinetic study using a bolus dose of 50 U/kg of a very high purity clotting factor concentrate. Moreover, prothrombin F1+2 and D-dimer serial assays were also carried out postoperatively, and compared with levels in control non-haemophilic patients who had undergone similar surgery with heparin prophylaxis. In haemophilia patients, despite (in most cases) an absence of heparin prophylaxis, no thrombotic complications occurred, and neither the coagulation cascade nor the fibrinolytic system were significantly over-activated, compared with the control group. From a clinical standpoint, all patients achieved excellent haemostasis without clinical evidence of thrombosis. This study emphasizes the convenient and safe administration of highly-purified FVIII and FIX concentrates in haemophiliacs undergoing surgical procedures, and constitutes a small comparative database for the evaluation of new products.

Adult↗