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Biomedical subjects

Augusto B Federici

Publications and source records attributed to Augusto B Federici.

At least 19 recordsLinked to original sources

Phenotype and genotype of a cohort of families historically diagnosed with type 1 von Willebrand disease in the European study, Molecular and Clinical Markers for the Diagnosis and Management of Type 1 von Willebrand Disease (MCMDM-1VWD).

Type 1 von Willebrand disease (VWD) is characterized by a personal and family history of bleeding coincident with reduced levels of normal plasma von Willebrand factor (VWF). The molecular basis of the disorder is poorly understood. The aims of this study were to determine phenotype and genotype and their relationship in patients historically diagnosed with type 1 VWD. Families were recruited in 9 European countries based on previous type 1 VWD diagnosis. Bleeding symptoms were recorded, plasma phenotype analyzed, and VWF mutation analysis performed in all index cases (ICs). Phenotypic and molecular analysis stratified patients into those with or without phenotypes suggestive of qualitative VWF defects (abnormal multimers) and with or without mutations. A total of 105 of 150 ICs (70%) had mutations identified. A subgroup with abnormal multimers (38% of ICs, 57 of 150) showed a high prevalence of VWF gene mutations (95% of ICs, 54 of 57), whereas in those with qualitatively normal VWF, fewer mutations were identified (55% of ICs, 51 of 93). About one third of the type 1 VWD cases recruited could be reconsidered as type 2. The remaining group could be considered "true" type 1 VWD, although mutations were found in only 55%.

ABO Blood-Group System↗

Molecular mapping of the chloride-binding site in von Willebrand factor (VWF): energetics and conformational effects on the VWF/ADAMTS-13 interaction.

Physiological concentrations of NaCl inhibit the hydrolysis of von Willebrand factor (VWF) by ADAMTS-13. This effect is because of the specific binding of chloride ions to VWF. Urea-induced unfolding was measured in the presence of NaCl, CH3COONa, and NaClO4 at pH 8.0, 25 degrees C, for multimeric VWF, the recombinant A1-A2-A3 VWF domains, and the A1 domain. Chloride stabilizes the folded conformation of the A1-A2-A3 and A1 domains more efficiently than acetate but less strongly than perchlorate. Spectroscopic evidence showed that chloride binds to both the A1 and A1-A2 domain but not to the isolated A2 domain. Binding of Cl- to both wild type (WT) and the natural mutant p.R1306W A1-A2-A3 domains of VWF has a large heat capacity change equal to -1 and -0.4 kcal mol(-1) K(-1) for WT and p.R1306W A1-A2-A3 domains, respectively. This result implies that a burial of a vast apolar surface area is caused by conformational transitions linked to chloride binding. At any temperature, chloride affinity was higher for WT than for the mutant p.R1306W form. Chloride ions inhibit hydrolysis by ADAMTS-13 of the A1-A2-A3 and A1-A2 domains in the presence of either urea or high shear stress, whereas this effect was either absent or negligible in experiments using A2 and A2-A3 domains. These findings show that the A1 domain contains the binding site of chloride ions that control allosterically the proteolysis by ADAMTS-13 of the Tyr1605-Met1606 bond in the A2 domain and that the R1306W mutation of type 2B VWD quenches the binding of chloride ion to the A1 domain.

ADAM Proteins↗

Activation-independent platelet adhesion and aggregation under elevated shear stress.

Platelet aggregation, which contributes to bleeding arrest and also to thrombovascular disorders, is thought to initiate after signaling-induced activation. We found that this paradigm does not apply under blood flow conditions comparable to those existing in stenotic coronary arteries. Platelets interacting with immobilized von Willebrand factor (VWF) aggregate independently of activation when soluble VWF is present and the shear rate exceeds 10 000 s(-1) (shear stress = 400 dyn/cm(2)). Above this threshold, active A1 domains become exposed in soluble VWF multimers and can bind to glycoprotein Ibalpha, promoting additional platelet recruitment. Aggregates thus formed are unstable until the shear rate approaches 20 000 s(-1) (shear stress = 800 dyn/cm.(2)). Above this threshold, adherent platelets at the interface of surface-immobilized and membrane-bound VWF are stretched into elongated structures and become the core of aggregates that can persist on the surface for minutes. When isolated dimeric A1 domain is present instead of native VWF multimers, activation-independent platelet aggregation occurs without requiring shear stress above a threshold level, but aggregates never become firmly attached to the surface and progressively disaggregate as shear rate exceeds 6000 s(-1). Platelet and VWF modulation by hydrodynamic force is a mechanism for activation-independent aggregation that may support thrombotic arterial occlusion.

Blood Platelets↗

Acquired von Willebrand syndrome: an underdiagnosed and misdiagnosed bleeding complication in patients with lymphoproliferative and myeloproliferative disorders.

Acquired von Willebrand syndrome (AVWS) is a rare bleeding disorder with laboratory findings similar to those for congenital von Willebrand disease (VWD). Unlike the congenital disease, AVWS usually occurs in individuals with no personal or family history of bleeding. The prevalence of AVWS in the general population is unknown because data from large prospective studies of this syndrome are not available. Although AVWS is particularly frequent in lymphoproliferative or myeloproliferative disorders, it can also be associated with solid tumors, immunologic and cardiovascular disorders, and other miscellaneous conditions. Diagnosis of AVWS is based on assays measuring the activity of von Willebrand factor (VWF). This tends to be abnormally low, but factor VIII (FVIII) coagulant activity can sometimes be normal. FVIII/VWF inhibiting activity is found in only a minority of cases. Bleeding episodes in patients with AVWS are mostly of the mucocutaneous type and can be managed with desmopressin, plasma-derived FVIII/VWF concentrates, and intravenous immunoglobulin (IVIg). Recombinant activated factor VII can be useful in patients unresponsive to standard therapy. An updated version of the International Registry on AVWS, recently available online, will provide more information on this rare, but underdiagnosed and misdiagnosed, disorder.

Adolescent↗

Diagnosis of inherited von Willebrand disease: a clinical perspective.

von Willebrand disease (VWD) is the most frequent inherited disorder of hemostasis and is due to quantitative (types 1 and 3) or qualitative (type 2) defects of von Willebrand factor (VWF). Due to the large heterogeneity of VWF defects and to the external variables influencing VWF levels in the circulation, VWD diagnosis can be difficult, especially in relatively mild forms. Three criteria should be always satisfied for a correct VWD diagnosis: (1) a positive bleeding history since childhood; (2) reduced levels of VWF activity in plasma; and (3) autosomal dominant or recessive inheritance patterns within the family (in most cases). According to clinical prospective studies, a bleeding history in VWD patients should be derived from a detailed questionnaire, with calculated bleeding scores. The ristocetin cofactor activity is the most useful test for VWD screening in the general population because it reproduces in vitro the first VWF interactions with its platelet receptor; however other assays are required to identify and classify VWD types. The current classification (types 1, 2A, 2B, 2M, 2N, and 3) is important to understand the basic mechanisms of VWF defects, to determine the risk of bleeding, and to select the best therapeutic approach. Molecular screening can be important to confirm phenotypic diagnosis for tracking VWF defects within families. Compared with hemophilia, most VWD patients show relatively mild bleeding symptoms. Therefore, prenatal diagnosis is required only for women already known to be carriers of VWD type 3. No spontaneous bleedings usually occur at birth in severe type 3 VWD. Neonatal diagnosis of VWD should always be compared with other affected members within the same family. Given that young children with VWD type 3 might carry deletions of VWF gene that predispose to the alloantibodies to VWF, every new child with VWD type 3 should be investigated intensively for VWF gene deletions before starting extensive therapy with exogenous VWF concentrates.

Child↗

Management of inherited von Willebrand disease in 2006.

The aim of treatment of von Willebrand disease (VWD) is to correct the dual defect of hemostasis (i.e., the abnormal platelet adhesion due to reduced and/or dysfunctional von Willebrand factor [VWF] and the abnormal coagulation expressed by low levels of factor [F] VIII). Desmopressin acetate (DDAVP) is the treatment of choice for type 1 VWD because it can induce release of normal VWF from cellular compartments. Prospective studies on biological response versus clinical efficacy of DDAVP in VWD types 1 and 2 are in progress to explore its benefits and limits as a therapeutic option. In type 3 and in severe forms of type 1 and 2 VWD, DDAVP is not effective, and for these patients plasma virally inactivated concentrates containing VWF and FVIII are the mainstay of treatment. Several intermediate- and high-purity VWF/FVIII concentrates are available and have been shown to be effective in clinical practice (bleeding and surgery). New VWF products almost devoid of FVIII are now under evaluation in clinical practice. Although thrombotic events are rare in VWD patients receiving repeated infusions of concentrates, there is some concern that sustained high FVIII levels may increase risk of postoperative venous thromboembolism. Dosage and timing of VWF/FVIII administrations should be planned to keep the FVIII level between 50 and 150 IU/dL. Appropriate dosage and timing in repeated infusions are also very important in patients exposed to secondary long-term prophylaxis for recurrent bleedings.

Clinical Trials as Topic↗

von Willebrand disease type 2B must be always considered in the differential diagnosis of genetic thrombocytopenias with giant platelets.

Type 2B von Willebrand's disease (VWD) is an inherited bleeding disorder characterized by spontaneous binding of large von Willebrand factor (VWF) multimers to platelets in vivo. This phenomenon induces the clearance of both large multimers and platelets, usually resulting in thrombocytopenia with slightly increased platelet size. We describe a newborn with a VWD type 2B due to the heterozygous missense mutation V1316M who presented the atypical feature of giant platelets in peripheral blood. Based on this observation and literature review, we suggest that the diagnosis of VWD 2B should be always considered in patients with chronic thrombocytopenia and giant platelets.

Bernard-Soulier Syndrome↗

The natural history of hepatitis C virus infection in Italian patients with von Willebrand's disease: a cohort study.

BACKGROUND AND OBJECTIVES: Unlike patients with hemophilia, those with von Willebrand's disease (VWD) have a mild to moderate bleeding tendency requiring a lower rate of transfusion: moreover, the use of blood products in most Italian patients with VWD was greatly reduced following the introduction of desmopressin in 1977. The main objective of this study was to compare the prevalence and outcome of hepatitis C virus (HCV) infection in multi-transfused patients with VWD and in those with hemophilia A or B. DESIGN AND METHODS: In a large cohort of 356 patients with VWD (41% type 1, 53% type 2 and 6% type 3) and 340 with hemophilia A (85%) or B (15%), all of whom were negative for human immunodeficiency virus (HIV) serum HCV markers, liver function tests and abdominal ultrasound were performed every 6 months for 6 years. RESULTS: VWD patients were less often transfused with any type of blood products than were hemophiliacs (40% versus 96%) and were, therefore, less frequently infected with HCV (39% versus 82%). HCV infection in patients with VWD occurred at an older mean age (22 versus 7 years), was of shorter duration (20 versus 31 years), and manifested less often with elevated transaminases (58% versus 83%). The risk of infection by HCV genotype 1a was significantly lower in patients with VWD than in hemophiliacs. Despite these differences in the features of HCV infection, the cumulative incidences of advanced liver disease (11% versus 10 %) and hepatocellular carcinoma (2% versus 4%) were very similar in the two groups of patients. INTERPRETATION AND CONCLUSIONS: VWD patients had lower prevalences of HCV infection with HCV and genotype 1a infections than did hemophiliacs, reflecting the different source and type of transfused blood products. HCV infection in both groups seems to run a relatively mild course, until now, but the high prevalence of genotypes resistant to curative antiviral therapies is of concern.

Adult↗

Use of intravenous immunoglobulin in patients with acquired von Willebrand syndrome.

Acquired von Willebrand syndrome (AVWS) is a rare bleeding disorder with laboratory findings similar to those for congenital von Willebrand disease. Unlike the congenital form, AVWS usually occurs in individuals with no personal or family history of bleeding disorders. According to an international registry, AVWS is mainly associated with lymphomyeloproliferative, immunologic, and cardiovascular disorders, as well as with solid tumors and other miscellaneous conditions; however, the prevalence of AVWS in these underlying disorders is still unknown. von Willebrand factor (VWF) is synthesized normally in most AVWS patients, and the low plasma VWF levels are from its accelerated removal from plasma by five different mechanisms, including autoantibodies. Because of the reduced half-life of endogenous-exogenous plasma VWF, bleeding of AVWS cannot be managed with desmopressin or factor VIII/VWF concentrates. Clinical use of intravenous immunoglobulin (IVIg) in AVWS has been reported since 1988. IVIg is most effective in AVWS with type immunoglobulin (Ig) G monoclonal gammopathies of undetermined significance and in other cases with IgG autoantibodies. IVIg can correct factor VIII and von Willebrand factor complex activities for about 15-20 days, and repeated injections induce remission of AVWS in these patients. Prospective studies are required to evaluate the efficacy and safety of IVIg in AVWS.

Humans↗

Management of von Willebrand disease with factor VIII/von Willebrand factor concentrates: results from current studies and surveys.

Until the mid 1980s, cryoprecipitate had been the mainstay of treatment of patients with von Willebrand disease (VWD) who were unresponsive to desmopressin. The advent of virally inactivated factor VIII/von Willebrand factor (FVIII/VWF) concentrates, originally developed for the treatment of patients with hemophilia, provided improved therapy for VWD. These products were therefore introduced in clinical practice in most European hemophilia centers; one concentrate (Humate-P) was approved for management of VWD in the USA. The 1980s saw the first clinical studies of FVIII/VWF concentrates in patients with VWD, but a standardized procedure for ex vivo effects of these virus-inactivated plasma concentrates in VWD patients became available only in 1992. Study results have shown that the commercially available VWF-containing concentrates are effective in clinical practice (bleeding and surgery), producing responses that may differ depending on the patient's VWD subtype; infusion results in correction of factor VIII activity (FVIII:C) and ristocetin cofactor activity of VWF (VWF:RCo), whereas bleeding time is not consistently corrected. Several studies have demonstrated that FVIII/VWF concentrates have variable VWF multimer patterns relative to normal human plasma. New products should be validated by current methodologies before introduction in clinical practice. Data on several intermediate-purity and high-purity FVIII/VWF concentrates have been reported, and a large prospective study of an intermediate-purity FVIII/VWF concentrate (Haemate P/Humate-P) is currently in progress. In the latter study, for the first time, the appropriate dosage to prevent bleeding during surgery is being calculated on the basis of scheduled pharmacokinetic assessments in each patient. Although thrombotic events are rare in patients with VWD receiving repeated infusions of FVIII/VWF concentrates, there is some concern that sustained high concentrations of FVIII:C may increase the risk of postoperative venous thromboembolism. On the basis of these observations, the dosage and timing of FVIII/VWF administration should be planned to keep FVIII:C concentrations between 50 U/dl and 150 U/dl in the postoperative period.

Blood Component Transfusion↗

An association of candidate gene haplotypes and bleeding severity in von Willebrand disease (VWD) type 1 pedigrees.

von Willebrand disease (VWD) type 1 is difficult to diagnose because of bleeding variability and low heritability of von Willebrand factor (VWF) levels. We compared a bleeding severity score and bleeding times to candidate gene haplotypes within pedigrees of 14 index cases, using a covariance components model for multivariate traits (Mendel: QTL Association). These pedigrees included 13 affected and 40 unaffected relatives, as defined by plasma ristocetin cofactor (VWF:RCo) levels. The bleeding severity score was derived from a detailed history. Donors were genotyped using a primer extension method, and 9 candidate genes were selected for analysis. VWF:RCo levels had the strongest influence on bleeding severity score and bleeding time. ITGA2 haplotype 2 (807C) and ITGA2B haplotype 1 (Ile(843)) were each associated with increased bleeding severity scores (P < .01 and P < .01, respectively). GP6 haplotype b (Pro(219)) was also associated with increased scores (P = .03) after adjustment for donor age. No association was observed with 6 other candidate genes, GP1BA, ITGB3, VWF, FGB, IL6, or TXA2R. Increased plasma VWF:Ag levels were associated with VWF haplotype 1 (-1793G; P = .02). These results establish that genetic differences in the adhesion receptor subunits alpha(2), alpha(IIb,) and GPVI can influence the phenotype of VWD type 1.

Bleeding Time↗

A rapid assay for ristocetin cofactor activity using an automated coagulometer (ACL 9000).

We have set up a rapid assay for measuring the activity of the von Willebrand factor ristocetin cofactor (VWF : RCo) using an automated coagulometer (ACL 9000; Instrumentation Laboratory, Lexington, Massachusetts, USA) and commercially available lyophilized platelet reagents (Dade-Behring, Marburg, Germany). Since VWF : RCo tested with the coagulometer (ACL-VWF : RCo) did not require loading, calculation of von Willebrand factor (VWF) activity or pretreatment of samples (calibration standard and tested plasmas), we thought it might be useful for rapid, automatic screening of VWF activity. To assess the precision and the potency of this ACL-VWF : RCo, we tested the assay in this laboratory's internal normal and abnormal controls, in a group of 67 healthy individuals and in 28 patients with different types of von Willebrand disease (VWD). We compared the ACL-VWF : RCo findings with those of the standard agglutination test (Agg-VWF : RCo), normalizing both assays against VWF antigen (VWF : Ag) measured by 'automatic' and standard enzyme-linked immunosorbent assay 'in-house' methods, to calculate the VWF : RCo/VWF Ag ratios. The within-assay and between-assay repeatability of the automatic ACL-VWF : RCo gave coefficients of variation < 5%, and reproducibility in normal and abnormal laboratory controls gave coefficients of variation of 7.9 and 9.3%, respectively. In VWD patients the results were equivalent to those of the standard Agg-VWF : RCo assay but, because of the good sensitivity, the ACL-VWF : RCo was more accurate in evaluating the VWF : RCo and establishing the VWF : RCo/VWF : Ag ratios in VWD patients with low VWF levels. Moreover, this ACL-VWF : RCo is faster than Agg-VWF : RCo, providing results of calibration curves and of 10 patient samples within 15 min. We can conclude that this automatic ACL-VWF : RCo gives a reliable and useful measure of VWF activity and can be proposed as a screening test for rapid diagnosis of VWD even in patients with low VWF levels in plasma.

Antigens↗

A sensitive ristocetin co-factor activity assay with recombinant glycoprotein Ibalpha for the diagnosis of patients with low von Willebrand factor levels.

BACKGROUND AND OBJECTIVES: The assay of ristocetin co-factor activity of von Willebrand factor (VWF:RCo) is used in the screening of patients with suspected von Willebrand's disease (VWD), the most frequent inherited bleeding disorder. A correct diagnosis of VWD relies on platelet agglutination tests that have a low accuracy within and between assays. A more accurate VWF:RCo assay would improve VWD diagnosis and classification. DESIGN AND METHODS: We describe here an ELISA method in which a recombinant fragment of the alpha-subunit of platelet glycoprotein Ib-IX-V complex (rGPIbalpha) is bound to an anti-GPIbalpha monoclonal antibody immobilized onto microtiter plate wells and which captures plasma VWF in the presence of ristocetin. The results obtained with this ELISA assay were compared blindly with values calculated from the agglutination test in normal subjects (n=60) and in type 1 (n=8), type 2A (n=16), type 2B (n=13), type 2M (n=17) or type 2M Vicenza (n=8) VWD patients which were characterized by low VWF levels. RESULTS: The two assays gave similar results in both normal subjects and VWD patients (r=0.93), but the ELISA test showed higher sensitivity (0.1 versus 6.25 U/dL). The repeatability and reproducibility gave coefficients of variation of 9% and 10%, respectively, for the ELISA, as compared to 14% and 15% for the agglutination test. INTERPRETATION AND CONCLUSIONS: This ELISA assay can be useful in the identification and classification of VWD patients in that it may provide a more accurate distinction between type 2 with abnormal VWF function and type 1 with a low plasma VWF concentration.

Agglutination Tests↗

A new candidate mutation, G1629R, in a patient with type 2A von Willebrand's disease: basic mechanisms and clinical implications.

BACKGROUND AND OBJECTIVES: Type 2A von Willebrand's disease (VWD) refers to disease variants with decreased platelet-dependent function of von Willebrand factor (VWF) associated with the absence of high molecular weight (HMW) multimers. The candidate G1629R mutation, identified in an Italian patient with type 2A VWD, was expressed to confirm the relationship between phenotype and genotype. DESIGN AND METHODS: Plasma samples from the patient were studied after DDAVP or FVIII/VWF concentrate injections. Furthermore, an expression vector carrying the G1629R mutation was constructed by site-directed mutagenesis and transiently expressed in Cos-7 cells. The characteristics of the corresponding recombinant protein were analyzed. RESULTS: After 1-deamino-8-D-argine vasopressin (DDAVP) infusion, factor VIII and VWF activities increased and HMW VWF multimers were transiently observed in the patient's plasma. VWF activity increased only after administration of a dual FVIII/VWF concentrate. ADAMTS-13 activity did not change significantly before or after the therapies. Secretion, in culture medium, of the corresponding mutated protein (R1629-rVWF) was slightly decreased and this rVWF contained intermediate and HMW multimers. Furthermore, binding of R1629-rVWF to platelet GPIb was moderately reduced compared to that of the wild-type rVWF. INTERPRETATION AND CONCLUSIONS: Based on the DDAVP and in vitro expression results, we classified the G1629R mutation in group 2 type 2A mutations. Our findings could explain why DDAVP may only be partially effective and suggest that FVIII/VWF concentrates should be used in cases of prolonged mucosal bleeding and major surgery when functional VWF is required.

ADAM Proteins↗

Biologic response to desmopressin in patients with severe type 1 and type 2 von Willebrand disease: results of a multicenter European study.

This study prospectively evaluated the rate of biologic response to desmopressin (DDAVP) in 66 patients with type 1 or 2 von Willebrand disease (VWD), each of whom had, on the basis of available records, a clinically significant bleeding history and at least one of the following laboratory abnormalities: bleeding time (BT) longer than 15 minutes, ristocetin cofactor activity (VWF:RCo) less than 10 IU/dL, factor VIII coagulant activity (FVIII:C) less than 20 IU/dL (severe VWD). Before the study, responsive patients were defined as those who, 2 hours after infusion of 0.3 microg/kg DDAVP, had increased baseline values of VWF:RCo and FVIII:C by at least 3-fold and achieved levels of at least 30 IU/dL for both and a BT of 12 minutes or less. The rate of biologic response varied according to VWD types and was higher in type 1 (7 of 26, 27%) than in type 2 (7 of 40, 18%) (type 2A [1 of 15, 7%], type 2M [3 of 21, 14%], type 2N [3 of 4, 75%]). Mutations in the VWF gene were previously known or newly identified in most patients with types 2A (n = 15 of 15), 2M (n = 15 of 21), and 2N (n = 4 of 4), but in none of those with type 1 VWD. Genotype provided more information than phenotype in predicting individual responses to DDAVP only in patients with 2A and 2N VWD. This prospective study showed that the rate of biologic response to DDAVP is relatively low not only in type 2 but also in type 1 VWD when uniform and stringent criteria for patient selection and responsiveness are applied.

Adolescent↗

Von Willebrand's disease in the year 2003: towards the complete identification of gene defects for correct diagnosis and treatment.

BACKGROUND: Von Willebrand's disease (VWD) is an autosomally inherited bleeding disorder caused by a deficiency or abnormality of von Willebrand factor (VWF). VWF is a multimeric adhesive protein which plays an important role in primary hemostasis by promoting platelet adhesion to the subendothelium at sites of vascular injury and platelet-platelet interactions in high shear-rate conditions. It is also the carrier of factor VIII (FVIII), thus indirectly contributing to the coagulation process. VWD has a prevalence of about 1% in the general population, but the figure for clinically relevant cases is lower (about 100/million inhabitants). Bleeding manifestations are heterogeneous: mucosal bleeding is typical of all VWD cases but hemarthrosis and hematomas may also be present when FVIII levels are low. INFORMATION SOURCES: Most cases appear to have a partial quantitative deficiency of VWF (type 1 VWD) with variable bleeding tendency, whereas qualitative variants (type 2 VWD), due to a dysfunctional VWF, are clinically more homogeneous. Type 3 VWD is rare and the patients have a moderate to severe bleeding diathesis because of the virtual absence of VWF, and a recessive pattern of inheritance. The diagnosis of VWD, especially type I, may be difficult, because the laboratory phenotype is highly heterogeneous and is confounded by the fact that factors outside the VWF gene (e.g., blood group) influence VWF levels. An array of tests is usually required to characterize the VWD types of the disorder and establish the best treatment modality. CONCLUSIONS: The aim of treatment is to correct the dual defect of hemostasis, i.e. abnormal coagulation expressed by low levels of FVIII and abnormal platelet adhesion expressed by the prolonged bleeding time (BT). Desmopressin (DDAVP) is the treatment of choice for type 1 VWD because it corrects the FVIII/VWF levels and the prolonged BT in the majority of cases. In type 3 and in severe forms of type 1 and 2 VWD, DDAVP is not effective and for these patients plasma virally-inactivated concentrates containing FVIII and VWF are the mainstay of treatment. These concentrates are clinically effective and safe, although they do not always correct the BT.

Deamino Arginine Vasopressin↗

The factor VIII/von Willebrand factor complex: basic and clinical issues.

Factor VIIII (FVIII) and von Willebrand factor (VWF) are two distinct but related glycoproteins that circulate in plasma as a tightly bound complex (FVIII/VWF). Their deficiencies or structural defects are responsible for the most common inherited bleeding disorders, namely hemophilia A (HA) and von Willebrand's disease (VWD). The VWF has a dual role in hemostasis: first it promotes platelet adhesion to thrombogenic surfaces as well as platelet-to-platelet cohesion during thrombus formation; second, it is the carrier for FVIII in plasma. FVIII acts as a co-factor to accelerate the activation of factor X by activated factor IX in the coagulation cascade. After many years of investigations, the molecular mechanisms of FVIII/VWF interactions are now well known and recent biochemical investigations have confirmed that VWF is a key partner for FVIII, playing significant roles in FVIII function, its production and its stabilization, in its conformation and immunogenicity. FVIII and VWF are both present in most plasma-derived FVIII/VWF concentrates used in clinical practice. FVIII/VWF concentrates can be classified into three main categories according to the degree of their purification. Intermediate-high purity plasma-derived concentrates containing FVIII/VWF currently in use since 1987 carry a low risk of transmitting blood-borne infections. Concentrate safety depends on the interaction of two factors: the decrease of viral plasma load and the increase of viral inactivation. These FVIII/VWF concentrates are currently used in type 3 VWD and in type 1 or 2 VWD patients who are unresponsive to desmopressin (DDAVP). More recently the presence of the physiologic FVIII/VWF complex has been considered to play an important role also in replacement therapy for patients with HA. The correct use of FVIII/VWF concentrates in VWD and HA have been reported in several national and international guidelines.

Coagulants↗