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Biomedical subjects

J Vermylen

Publications and source records attributed to J Vermylen.

At least 37 records · Page 2Linked to original sources

Congenital disorders of glycosylation type Ia and IIa are associated with different primary haemostatic complications.

Congenital disorders of glycosylation (CDG) type I are mostly due to a deficient phosphomannomutase activity, called CDG Ia. CDG IIa (mutations in the MGAT2 gene) results from a deficient activity of the Golgi enzyme N-acetylglucosaminyltransferase II. CDG Ia patients predominantly have a thrombotic tendency, whereas our CDG IIa patient has an increased bleeding tendency, despite similar coagulation factor abnormalities in both types. We have investigated whether abnormally glycosylated platelet membrane glycoproteins are involved in the haemostatic complications of both CDG groups. In flow cytometry, the binding of Ricinus communis lectin (reactive with beta-galactose primarily) to control platelets increased after neuraminidase treatment: this increase was smaller (p < 0.01) in CDG Ia patients (3.1 +/- 0.08 times) than in control platelets (8.5 +/- 1.8 times) and did not occur in the CDG IIa patient. Platelet-rich plasma from CDG Ia patients, but not a CDG IIa patient. aggregated spontaneously and gel-filtered platelets from CDG Ia patients agglutinated at very low concentrations of ristocetin, independently of von Willebrand factor (vWF). Accordingly, in stirred whole blood, the rate of single platelet disappearance of CDG Ia patients was twice that of control platelets. In contrast, perfusion of whole anticoagulated blood of the CDG IIa patient over collagen yielded markedly decreased platelet adherence to collagen at shear rates involving glycoprotein (GP) Ib-vWF interactions. Thus, abnormal glycosylation of platelet glycoproteins in CDG Ia enhances nonspecific platelet interactions, in agreement with a thrombotic tendency. The reduced GP Ib-mediated platelet reactivity with vessel wall components in the CDG IIa patient under flow conditions provides a basis for his bleeding tendency.

Blood Platelets↗

Anti-vWf antibodies induce GPIbalpha and FcgammaRII mediated platelet aggregation only at low shear forces.

BACKGROUND/METHODS: Anti-von Willebrand factor (vWf) antibody mediated platelet activation was studied using 2 monoclonal anti-vWf antibodies promoting the binding of vWf to GPIbalpha: 1C1E7 (IgG2a) reacting with the vWf N-terminus and 75H4B12 (IgM), characterized in this paper and studied in association with 1C1E7. RESULTS: 75H4B12 binds to an N-terminal epitope in vWf, different from that reacting with 1C1E7. When com-bined, 1C1E7 and 75H4B12 promoted vWf binding to isolated GPIb under static conditions, even in the absence of ristocetin or botrocetin, and induced platelet aggregation synergistically in the presence of zero to subthreshold ristocetin concentrations. Specific inhibitors of GPIbalpha-vWf interactions prevented vWf binding to GPIbalpha in ELISA and during platelet aggregation. In addition, the 1C1E7 dependent platelet aggregation involved Fc receptor mediated platelet activation, a phenomenon even more pronounced when 1C1E7 and 75H4B12 were combined. A 75H4B12 binding phage expressing a peptide homologous with vWf sequence 88-95 neutralized the antibody induced platelet activation. However, at arterial shear rates, both 1C1E7 and 75H4B12 potently prolonged cartridge closure times in the PFA-100, compatible with inhibition of platelets by vWf, unfolded by the combined action of shear stress and antibodies. CONCLUSIONS: We conclude that antibodies directed against different epitopes in the N-terminus of vWf modify the folded vWf structure synergistically and enhance A1 domain mediated vWf binding to platelet GPIb at low shear forces. In addition, once platelet-bound, IgG antibodies potently activate platelets via the FcgammaII receptor. Thus, such antibodies may promote immune mediated thrombosis at low shear rates, typical of the venous circulation. In contrast, at arterial shear rates, anti-vWf antibodies may rather compromise platelet function following enhanced binding of the unfolded vWf multimers to platelets, shielding platelets from interacting with subendothelial and soluble ligands.

Antibodies, Monoclonal↗

Genetic variation of the extra-large stimulatory G protein alpha-subunit leads to Gs hyperfunction in platelets and is a risk factor for bleeding.

Alternatively spliced GNAS1 and XL-GNAS1, encoding respectively the stimulatory G-protein alpha-subunit (Gsalpha) and the extra-large stimulatory G-protein alpha-subunit (XLsalpha), are located on the imprinted chromosomal region 20q13.12-13. We presently report a functional polymorphism in the imprinted XL-GNAS1 gene. In three patients, a 36 bp insertion and two basepair substitutions flanking this insertion were found in the paternally inherited XL-GNAS1 exon 1. They clinically manifest an enhanced trauma-related bleeding tendency and a variable degree of mental retardation. A platelet aggregation inhibition test to evaluate Gs function was developed. Their platelets display Gs hyperfunction and an enhanced cAMP generation upon stimulation of Gs-coupled receptors. The prevalence of the XLsalpha insertion in a normal control group was 2.2%. Normal controls, inheriting the insertion maternally, had a normal platelet Gs activity, whereas controls inheriting the insertion paternally had increased inducible platelet Gs activity, defining the insertion as a functional polymorphism. This paternally inherited XLsalpha insertion represents a new genetic cause of an inherited bleeding tendency, although to a variable degree.

Abnormalities, Multiple↗

The ATP-gated P2X1 ion channel acts as a positive regulator of platelet responses to collagen.

ATP is a potent agonist of the P2X1 ion channel, mediating a rapid, quickly desensitized influx of Ca2+. In hirudinized PRP, containing apyrase, the two stable selective P2X1 agonists, alpha,beta-methylene ATP, and L-beta,gamma-methylene ATP induced extracellular Ca2+-dependent fast and reversible platelet shape change, leading to desensitization of the P2X1 ion channel. Preincubation with HPLC-purified ADP potently antagonized the subsequent alpha,beta-methylene ATP- and L-beta,gamma-methylene ATP-evoked platelet shape change. Accordingly, upon heterologous expression of P2X1 in Xenopus oocytes. HPLC-purified ADP acted as an antagonist of the ATP-induced current, but was inactive itself. Since ATP and ADP are co-released from dense granules during platelet activation, we investigated whether the P2X1 ion channel is involved in the response of platelets to collagen. We found that platelet shape change and aggregation induced by low concentrations of collagen were strongly inhibited after selective desensitization of P2X1 with its agonists or by pretreating the platelets with a low concentration of ADP (0.5 microM), that antagonizes the P2X1 channel without desensitizing the P2Y1 receptor. Our data suggest that, during collagen-initiated platelet activation, the early secretion of ATP results in the activation of the P2X1 ion channel, which plays a role as a positive regulator of further platelet responses.

Adenosine Diphosphate↗

A novel cause of mild/moderate hemophilia A: mutations scattered in the factor VIII C1 domain reduce factor VIII binding to von Willebrand factor.

The mechanisms responsible for the low factor VIII (fVIII) activity in the plasma of patients with mild/moderate hemophilia A are poorly understood. In such patients, we have identified a series of fVIII mutations (Ile2098Ser, Ser2119Tyr, Asn2129Ser, Arg2150His, and Pro2153Gln) clustered in the C1 domain and associated with reduced binding of fVIII to von Willebrand factor (vWf). For each patient plasma, the specific activity of mutated fVIII was close to that of normal fVIII. Scatchard analysis showed that the affinity for vWf of recombinant Ile2098Ser, Ser2119Tyr, and Arg2150His fVIII mutants was reduced 8-fold, 80-fold, and 3-fold, respectively, when compared with normal fVIII. Given the importance of vWf for the stability of fVIII in plasma, these findings suggested that the reduction of fVIII binding to vWf resulting from the above-mentioned mutations could contribute to patients' low fVIII plasma levels. We, therefore, analyzed the effect of vWf on fVIII production by Chinese hamster ovary (CHO) cells transfected with expression vectors for recombinant B domain-deleted normal, Ile2098Ser, Ser2119Tyr, and Arg2150His fVIII. These 3 mutations impaired the vWf-dependent accumulation of functional fVIII in culture medium. Analysis of fVIII production by transiently transfected CHO cells indicated that, in addition to the impaired stabilization by vWf, the secretion of functional Ile2098Ser and Arg2150His fVIII was reduced about 2-fold and 6-fold, respectively, by comparison to Ser2119Tyr and normal fVIII. These findings indicate that C1-domain mutations resulting in reduced fVIII binding to vWf are an important cause of mild/moderate hemophilia A.

Animals↗

A natural dominant negative P2X1 receptor due to deletion of a single amino acid residue.

The P2X1 receptor belongs to a family of oligomeric ATP-gated ion channels with intracellular N and C termini and two transmembrane segments separating a large extracellular domain. Here, we describe a naturally occurring dominant negative P2X1 mutant. This mutant lacks one leucine within a stretch of four leucine residues in its second transmembrane domain (TM2) (amino acids 351-354). Confocal microscopy revealed proper plasma membrane localization of the mutant in stably transfected HEK293 cells. Nevertheless, voltage-clamped HEK293 cells expressing mutated P2X1 channels failed to develop an ATP or ADP-induced current. Furthermore, when co-expressed with the wild type receptor in Xenopus oocytes, the mutated protein exhibited a dose-dependent dominant negative effect on the normal ATP or ADP-induced P2X1 channel activity. These data indicate that deletion of a single apolar amino acid residue at the inner border of the P2X1 TM2 generates a nonfunctional channel. The inactive and dominant negative form of the P2X1 receptor may constitute a new tool for the study of the physiological role of this channel in native cells.

Amino Acid Sequence↗

Vascular release of plasminogen activator inhibitor-1 impairs fibrinolysis during acute arterial thrombosis in mice.

The role of plasminogen activator inhibitor-1 (PAI-1) in the plasma, blood platelets, and vessel wall during acute arterial thrombus formation was investigated in gene-deficient mice. Photochemically induced thrombosis in the carotid artery was analyzed via transillumination. In comparison to thrombosis in C57BL/6J wild-type (wt) mice (113 +/- 19 x 10(6) arbitrary light units [AU] n = 15, mean +/- SEM), thrombosis in PAI-1(-/-) mice (40 +/- 10 x 10(6) AU, n = 13) was inhibited (P <.01), indicating that PAI-1 controls fibrinolysis during thrombus formation. Systemic administration of murine PAI-1 into PAI-1(-/-) mice led to a full recovery of thrombotic response. Occurrence of fibrinolytic activity was confirmed in alpha(2)-antiplasmin (alpha(2)-AP)-deficient mice. The sizes of thrombi developing in wt mice, in alpha(2)-AP(+/-) and alpha(2)-AP(-/-) mice were 102 +/- 35, 65 +/- 8.1, and 13 +/- 6.1 x 10(6) AU, respectively (n = 6 each) (P <.05), compatible with functional plasmin inhibition by alpha(2)-AP. In contrast, thrombi in wt mice, t-PA(-/-) and u-PA(-/-) mice were comparable, substantiating efficient inhibition of fibrinolysis by the combined PAI-1/alpha(2)-AP action. Platelet depletion and reconstitution confirmed a normal thrombotic response in wt mice, reconstituted with PAI-1(-/-) platelets, but weak thrombosis in PAI-1(-/-) mice reconstituted with wt platelets. Accordingly, murine (wt) PAI-1 levels in platelet lysates and releasates were 0.43 +/- 0.09 ng/10(9) platelets and plasma concentrations equaled 0.73 +/- 0.13 ng/mL. After photochemical injury, plasma PAI-1 rose to 2.9 +/- 0.7 ng/mL (n = 9, P <.01). The plasma rise was prevented by ligating the carotid artery. Hence, during acute thrombosis, fibrinolysis is efficiently prevented by plasma alpha(2)-AP, but also by vascular PAI-1, locally released into the circulation after endothelial injury.

Animals↗

A human antibody directed to the factor VIII C1 domain inhibits factor VIII cofactor activity and binding to von Willebrand factor.

The occurrence of factor VIII (fVIII) inhibitory antibodies is a rare complication of fVIII substitution therapy in mild/moderate hemophilia A patients. fVIII mutations in certain regions such as the C1 domain are, however, more frequently associated with inhibitor, for reasons which remain unclear. To determine whether inhibitors could map to the mutation site, we analyzed at the clonal level the immune response of such a patient with an inhibitor to wild-type but not self-fVIII and an Arg2150His substitution in the C1 domain. Immortalization of the patient B lymphocytes provided a cell line producing an anti-fVIII IgG4kappa antibody, LE2E9, that inhibited fVIII cofactor activity, following type 2 kinetics and prevented fVIII binding to von Willebrand factor. Epitope mapping with recombinant fVIII fragments indicated that LE2E9 recognized the fVIII C1 domain, but not the Arg2150His-substituted C1 domain. Accordingly, LE2E9 did not inhibit Arg2150His fVIII activity. These observations identify C1 as a novel target for fVIII inhibitors and demonstrate that Arg2150His substitution alters a B-cell epitope in the C1 domain, which may contribute to the higher inhibitor incidence in patients carrying such substitution. (Blood. 2000; 95:156-163)

Amino Acid Sequence↗

ADP receptors in platelet activation and aggregation.

ADP plays a central role in platelet aggregation. Activation of platelets via ADP proceeds via three membrane receptor proteins, two of which are coupled to a G protein and the third one constituting an ion channel mediating rapid Ca2+-influx. Via Ca2+-mobilization, the Gq-coupled P2Y1 receptor acts in concert with the Gi-coupled P2TAC receptor, which functions by lowering intracellular cAMP levels. The importance of Ca2+-influx via the P2X1 ion channel remains to be elucidated.

Animals↗

Humanized severe combined immunodeficient mice as a potential model for the study of tolerance to factor VIII.

A Severe Combined Immunodeficient (SCID) mouse model has been established to evaluate experimental conditions leading to the production of factor VIII (FVIII) autoantibodies. To this end, we humanized 10 groups of 7 mice with peripheral blood mononuclear cells of 10 unrelated healthy blood donors (15 x 10(6) cells/mouse). Mice were injected with saline or immunized i.p. with 50 IU of a plasma derived human FVIII 24 h after reconstitution. Further immunization was made with 25 IU of FVIII every fortnight during 6 weeks and animals were sacrificed after 8 weeks. All reconstituted mice showed a spontaneous production of anti-FVIII antibodies in the absence of immunization with the corresponding antigen. However, no differences were observed regarding the quantity or the quality of these antibodies produced in the immunized or the saline group, indicating that tolerance to FVIII had been transferred with cell reconstitution. Affinity purified FVIII specific antibodies were capable of inhibiting FVIII activity and preventing the binding of FVIII to phospholipids in a dose-dependent manner. Immunoprecipitation experiments showed that the antibodies recognized only the C1 and C2 light chain domains. Since antibodies of interest can be found in the SCID mouse model and, moreover, since they are qualitatively comparable with the source donor's antibodies, this model provides a tool to study the regulation of tolerance against self antigens in normal subjects and in acquired haemophilia patients.

Animals↗

Circulating activated platelets assist THP-1 monocytoid/endothelial cell interaction under shear stress.

Circulating complexes of leukocytes and activated platelets are markers for atherosclerosis, but their interaction with the arterial endothelial lining has not been studied. Therefore, the effect of activated platelets on rolling and adhesion of labeled human THP-1 monocytoid cells to human umbilical vein endothelial cell (HUVEC) monolayers was studied by epifluorescence microscopy in a parallel plate flow chamber. In the absence of activated platelets, THP-1 rolling on resting HUVEC was negligible at shear rates greater than 300 s(-1). Activation of HUVEC with 100 nmol/L phorbol myristate acetate (PMA) increased THP-1 cell adhesion at shear rates less than 400 s(-1). Therefore, a shear rate of 400 s(-1) was identified as a threshold for THP-1 adhesion. THP-1 rolling on activated HUVEC was reduced by 64% after L-selectin inhibition but was not affected by P-selectin inhibition. The addition of 1 to 50 thrombin receptor-activating peptide (TRAP)-activated platelets per THP-1 cell enhanced interactions between THP-1 cells and HUVEC, resulting in a steep bell-shaped dose-response curve, with a peak of 10 +/- 3 rolling cells/50 seconds at 3 platelets per THP-1 cell (P <.01 v control) with a concomitant 2- to 3-fold increase of firmly adhering cells (P <.01 v control). In reconstituted blood, low numbers of activated platelets had the same effect on THP-1 rolling and adhesion. P-selectin inhibition reduced platelet/THP-1 cell interaction in suspension and deposition of the complexes on the endothelial monolayer. Inhibition of both P- and L-selectin reduced THP-1/HUVEC interactions to 14% (P <.01, n = 4). Sialidase digestion and removal of terminal sialic acid residues from HUVEC or THP-1 cells but not from platelets abolished the platelet mediated augmentation of THP-1 cell adhesion. Thus, THP-1 rolling on HUVEC is shear-dependent and largely mediated by L-selectin. P-selectin expressed on activated platelets increases monocytoid cell adhesion to endothelial cells at shear rates found in coronary arteries through interactions with both endothelial and monocytoid cells and may facilitate macrophage accumulation in the vessel wall.

Antibodies, Monoclonal↗

Antifactor VIII antibody inhibiting allogeneic but not autologous factor VIII in patients with mild hemophilia A.

Two unrelated patients with the same Arg2150His mutation in the factor VIII (FVIII) C1 domain, a residual FVIII activity of 0.09 IU/mL, and inhibitor titres of 300 and 6 Bethesda Units, respectively, were studied. Further analysis of patient LE, with the highest inhibitor titer, showed that (1) plasma or polyclonal IgG antibodies prepared from LE plasma inhibited the activity of allogeneic (wild-type) but not of self FVIII; (2) the presence of von Willebrand factor (vWF) increased by over 10-fold the inhibitory activity on wild-type FVIII; (3) the kinetics of FVIII inhibition followed a type II pattern, but in contrast to previously described type II inhibitors, LE IgG was potentiated by the presence of vWF instead of being in competition with it; (4) polyclonal LE IgG recognized the FVIII light chain in enzyme-linked immunosorbent assay and the recombinant A3-C1 domains in an immunoprecipitation assay, indicating that at least part of LE antibodies reacted with the FVIII domain encompassing the mutation site; and (5) LE IgG inhibited FVIII activity by decreasing the rate of FVIIIa release from vWF, but LE IgG recognized an epitope distinct from ESH8, a murine monoclonal antibody exhibiting the same property. We conclude that the present inhibitors are unique in that they clearly distinguish wild-type from self, mutated FVIII. The inhibition of wild-type FVIII by LE antibody is enhanced by vWF and is associated with an antibody-dependent reduced rate of FVIIIa release from vWF.

Amino Acid Substitution↗

Arterial occlusion and thrombus aspiration after total knee arthroplasty.

Arterial occlusion after total knee arthroplasty is an uncommon complication. In the literature only a few cases have been reported, and non consensus exists on the optimal management for this condition. The authors report two patients with popliteal artery thrombosis in the early postoperative period. Both patients were treated with percutaneous thrombus aspiration, a technique that has not been reported previously for this indication. In both patients complete restoration of arterial perfusion and limb salvage was achieved, although ischemic necrosis of the anterior compartment muscles of the lower leg could not be prevented.

Aged↗

A new animal model of thrombophilia confirms that high plasma factor VIII levels are thrombogenic.

The thrombotic risk associated with elevated plasma levels of clotting factor VIII (FVIII) was investigated in a mouse model of thrombophilia. After the intravenous injection of recombinant human FVIII and/or of purified FVIII-free human von Willebrand factor (vWF), a controlled mild injury was inflicted on the carotid artery of FVB mice by irradiation with filtered green light in combination with intravenous injection of the dye rose bengal. Formation of a platelet-rich thrombus was continuously monitored for 40 min via transillumination and the thrombus size was measured via image analysis. Administration of recombinant human FVIII at 40 microg/kg led to initial FVIII plasma activities equivalent to 250% of normal human plasma FVIII activity and significantly enhanced thrombus size. Immunohistochemical staining illustrated the accumulation of FVIII within the thrombi. Human vWF, even at 10 mg/kg, had no effect on thrombus formation. The thrombotic tendency induced by FVIII was significantly inhibited by the administration of human vWF in a dose-dependent manner. Separate plasma measurements revealed that human FVIII has comparable affinities for human and murine vWF but that human vWF does not effectively bind murine platelets. The inhibition by human vWF of the thrombotic tendency induced by human FVIII could therefore be explained by a lack of accumulation of FVIII within the developing thrombus because of the reduced affinity of human vWF for murine platelets and the reduced occupancy of murine von Willebrand factor by human FVIII after injection of human vWF. These results show that vWF actively participates in FVIII accumulation in the arterial thrombus and provide experimental evidence for epidemiological findings that elevated plasma FVIII levels are associated with an increased thrombotic risk, also in arteries.

Animals↗

Lupus anticoagulant testing in Europe: an analysis of results from the first European Concerted Action on Thrombophilia (ECAT) survey using plasmas spiked with monoclonal antibodies against human beta2-glycoprotein I.

Lupus anticoagulants (LA) are immunoglobulins directed to either prothrombin or Beta-2-glycoprotein 1(beta1GPI) bound to phospholipids. Most patients with LA have both beta2GPI- and prothrombin-dependent antibodies. Several recent reports have shown that LA is more strongly associated with thrombosis than anticardiolipin antibodies (aCL). Therefore, an accurate detection of LA is of utmost importance in patients suspected of an antiphospholipid syndrome. We recently raised a series of murine monoclonal antibodies against human Beta-2-glycoprotein I (beta2GPI) with LA activity similar to affinity purified human beta2GPI-dependent LAs. A normal plasma pool, and the same pool spiked with LA positive anti-beta2GPI antibodies at two potency levels, were used as materials in an external quality assessment scheme organised by the European Concerted Action on Thrombosis (ECAT). Fifty nine laboratories participating in this trial were asked to test for the presence of a LA in the 3 samples submitted. The majority (82%) of the participants found the high potency LA sample to be positive. Only 37% of the laboratories considered the weak potency LA sample to be positive. The submission of a normal sample, a weakly positive sample and a clearly positive sample enabled us to compare the relative LA responsiveness of the different screening assays used. Clotting time ratios varied from 0.81 to 3.28 for sample B and from 0.66 to 5.32 for sample D. In general, the highest clotting time ratios were found with the dilute prothrombin time (dPT), the dilute Russell Viper Venom time (dRVVT) and the Kaolin Clotting time. The most frequently used screening tests were the aPTT and the dRVVT. With the various assay systems, LA responsiveness varied largely according to the reagents used. For the beta2GPI-dependent LA used in this study, PTT LA clearly showed the highest responsiveness among the aPTT reagents and Innovin among the dPT reagents. The present study also shows that many laboratories still rely on poorly responsive screening assays for their LA tests. Other laboratories rely on sensitive and more specific integrated test systems based on a sensitive screening assay with a low phospholipid content and a confirmatory test employing high phospholipid concentrations. The most used integrated system was dRVVT based. However, also here the LA responsiveness was largely reagent dependent. In conclusion, many laboratories still rely on poorly responsive screening assays by which weakly positive LA samples are misdiagnosed. LA positive anti-beta2GPI moabs have a potential for the unlimited production of LA control specimens, that may help hemostasis laboratories choose more LA responsive assay systems and to assess intralaboratory precision of their LA testing.

Antibodies, Monoclonal↗

Some factor VIII (FVIII) inhibitors recognise a FVIII epitope(s) that is present only on FVIII-vWF complexes.

A mild haemophilia A patient (LE) with an Arg2150His mutation in the C1 domain of the factor VIII (FVIII) light chain was shown to have anti-FVIII antibodies inhibiting wild type but not self FVIII. Polyclonal anti-FVIII antibodies of this patient were purified by affinity adsorption using recombinant FVIII (rFVIII) and/or plasma-derived FVIII-von Willebrand factor (vWF) complexes. A distinct population of antibodies was obtained that bound to FVIII-vWF complexes but not to rFVIII, indicating that an epitope was created by the association of FVIII to vWF. Such antibodies belonged to the IgG2 isotype, but the FVIII epitopes to which they bind could not be mapped with precision due to vWF dependency. Depletion experiments showed that anti-FVIII antibodies recognising FVIII-vWF complex also distinguished wildtype from mutated self FVIII, indicating that the Arg2150His mutation alters the B cell epitope formed by the association of FVIII to vWF. To determine whether the Arg2150His substitution also alters the formation of the FVIII-vWF complex, the interaction between mutated or normal FVIII with vWF was evaluated in plasma. The dissociation rate of mutated FVIII from vWF was found to be significantly increased. The presence of an Arg2150His mutation therefore results in the disappearance of a FVIII B cell epitope generated by the association of FVIII with vWF. Patients carrying such an Arg2150His mutation and receiving infusion of wild-type FVIII may therefore be at risk of developing inhibitors to allogeneic FVIII only.

Antibodies↗