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Biomedical subjects

A Casonato

Publications and source records attributed to A Casonato.

At least 19 recordsLinked to original sources

Type IIB von Willebrand factor induces phospholipase A2 activation and cytosolic Ca2+ increase in platelets.

Von Willebrand factor (vWF) is a large glycoprotein which plays a central role in thrombus formation and blood clotting. The type IIB variant of vWF is characterized by an abnormally high affinity for the platelet receptor GPIb. Type IIB vWF purified from plasma and added to a platelet suspension induced a rapid, dose-dependent (1.2-9 micrograms/ml) increase in the cytosolic Ca2+ concentration. ATP secretion and platelet aggregation also occurred with type IIB vWF concentrations higher than about 5 micrograms/ml, which corresponds to the original plasmatic level. The IIB vWF-evoked (3 micrograms/ml) cytosolic Ca2+ increase was negligibly affected by ADP scavengers or protein kinase C inhibitors; it was drastically reduced by EGTA, La3+, Ni2+ or acetylsalicylate and abolished by the phospholipase A2 inhibitors ONO-RS-082 or oleolyloxyethyl-phosphocholine. Platelet exposure to IIB vWF caused arachidonic acid release, thromboxane B2 and inositoltrisphosphate formation. LJIB1, a monoclonal antibody against GPIb, completely suppressed all platelet responses, whereas LJCP8, an antibody against the receptor GPIIb-IIIa (alpha IIb beta 3 integrin), or the tetrapeptide RGDS, caused a complete inhibition of the aggregation but a partial inhibition of the activation-linked parameters. It is concluded that type IIB vWF-binding to GPIb induces phospholipase A2 activation, arachidonic acid release and GPIIb-IIIa dependent cellular Ca2+ influx. These events may lead to platelet secretion and aggregation.

Arachidonic Acid

Different organization of von Willebrand factor oligomers in type-2A and -2B von Willebrand disease variants: effects of DDAVP infusion and protease inhibitors.

Plasma von Willebrand factor (vWf) displays a complex pattern of repeating multimers, whose heterogeneous size distribution seems to depend on the proteolytic cleavage of the constituent vWf subunit. Smaller vWf multimers are thought to derive by proteolytic cleavage of the larger forms. To clarify the relationship between large multimer representation and the structure of small vWf oligomers, DDAVP was infused in patients with type-2A and -2B von Willebrand disease (vWd) variants which lack circulating high vWf forms. Before infusion, high-resolution multimer analysis demonstrated a more pronounced representation of the satellite bands of each oligomer, mainly concerning fast-moving components, especially in type 2B vWd. After DDAVP, in type-2A vWd each oligomer displayed a different organization depending on whether restoration of large vWf multimers occurred. The lack of large vWf multimer restoration, as shown in citrated samples, was associated with the fast band being significantly more represented than the slower, and almost similar to the central component. In contrast, when the high-molecular-weight vWf forms were restored, as occurred in the samples collected in the presence of protease inhibitors, the relative representation of the fast- and slow-moving bands was similar to that of normal samples. In type-2B vWd, regardless of the anticoagulant used, DDAVP infusion did not restore large vWf multimers, and each oligomer displayed a significant increase in both the central band and fast-moving satellite, the fast being even more highly represented. These findings suggest that, regardless of the origin, the disappearance of large circulating multimers in type-2A and -2B vWd induces an increased representation of the fast-moving satellite of the low-molecular-weight multimers. Moreover, the time course of large and low/intermediate multimer decrease and increase provides a further demonstration that low vWf multimers derive from the larger ones, and that mainly the fast-moving band of the oligomer is involved.

Deamino Arginine Vasopressin

Demonstration that venous occlusion fails to release von Willebrand factor multimers.

The acute simultaneous release of tissue plasminogen activator (t-PA) and von Willebrand factor (vWF) from endothelial cells in response to a variety of agonists including thrombin, DDAVP, histamine and adrenalin has been described. In the present study we investigated the effect of venous occlusion on the circulating levels of t-PA and vWF, as well as the molecular organization of vWF in 20 normal subjects. After occlusion a significant increase in plasma t-PA levels was observed even after the values were corrected for haemoconcentration. Venous occlusion also enhanced plasma vWF values, but the increase was abolished when the correction for haemoconcentration was introduced. Following venous occlusion, no circulating abnormally large vWF multimers were detected in the subjects studied. These forms are normally not present in the circulation and are released from endothelial cells through the regulated vWF pathway; their absence therefore seems to demonstrate that this pathway is not activated after venous occlusion. Since occlusion does not enhance vWF synthesis, the increase in vWF observed in the subjects investigated may be fully attributed to haemoconcentration.

Adult

Re-evaluation of the therapeutic efficacy of DDAVP in type IIB von Willebrand's disease.

With few exceptions, 1-desamino-8-D-arginine vassopressin (DDAVP) has been shown to be useful in securing haemostasis in patients with von Willebrand's disease (vWd). In type IIB vWd, DDAVP has been reported to have no beneficial effects and to be contraindicated because it causes or worsens thrombocytopenia, due to in vivo platelet aggregation. Nevertheless, it was previously demonstrated that DDAVP may have clinical utility in some patients with type IIB vWd. Additional findings obtained in seven type IIB vWd patients of different kindreds undergoing minor surgical procedures are now reported. It was observed that DDAVP corrected the bleeding time in every case, with effects lasting for 2 h. Mean platelet counts decreased 30 min after DDAVP to variable degrees, depending on the anticoagulant used for blood collection, but were normal 2 h later. Furthermore DDAVP normalized FVIII, von Willebrand factor (vWf) antigen (vWf:Ag), and to a lesser extent, vWf ristocetin cofactor activity (vWf:RCoF). Intermediate and large vWf multimers appeared after 30 min. There were no bleeding complications during or after surgery, nor evidence of thrombosis. It was thus confirmed that DDAVP has clinical utility in the prevention of bleeding symptoms in different type IIB vWd patients. Therefore, despite the transitory thrombocytopenia and the incomplete restoration of larger vWf multimers, the use of this drug should be reconsidered for patients with type IIB vWd.

Deamino Arginine Vasopressin

EDTA dependent pseudothrombocytopenia caused by antibodies against the cytoadhesive receptor of platelet gpIIB-IIIA.

AIMS: To clarify the mechanisms involved in the development of EDTA dependent pseudothrombocytopenia, particularly the platelet receptors. METHODS: Platelets were measured in 33 patients with pseudothrombocytopenia, using different anticoagulants to collect blood samples (direct test). The results were compared with the counts obtained by adding patients' serum or immunoglobulins to normal blood samples (indirect test). The role of platelet function was explored using ASA, PGE1, and apyrase as platelet inhibitors. The contribution of platelet receptor/s was investigated using antigens to gpIb-IX and gpIIb-IIIa monoclonal antibodies. Immunoglobulin class was estimated by the ability of IgG, IgA, and IgM antibodies to prevent platelet clumping. RESULTS: Agglutinating antibodies were IgA in 40%, IgG in 30%, and IgM in 10% of patients studied. Both patients' serum and immunoglobulins induced platelet clumping in normal samples anticoagulated with EDTA (indirect test). This was prevented by incubation of blood samples at 37 degrees C and almost completely inhibited by the platelet inhibitors ASA, PGE1, and apyrase. Pseudothrombocytopenia was also entirely prevented by an antigen to gpIIb-IIIa monoclonal antibody that recognises fibrinogen and the von Willebrand factor binding site. Pseudothrombocytopenia was almost completely abolished after the addition of RGD peptide, the recognition sequence of cytoadhesive proteins. CONCLUSIONS: These findings suggest that EDTA dependent pseudothrombocytopenia is caused by agglutinating antibodies that recognise cytoadhesive receptors on platelet gpIIb-IIIa and that an efficient platelet metabolism is required.

Adult

Acquired factor VIII:C inhibitor in a patient with Sjögren's syndrome: successful treatment with steroid and immunosuppressive therapy.

A 57-year-old woman affected with Sjögren's syndrome without bleeding history developed spontaneous hematomas at the arms, the left foot and the thigh, cutaneous hemorrhages and hematuria. Routine coagulation tests showed a prolongation of activated partial thromboplastin time associated with a marked reduction of factor VIII activity (VIII: C 5%). Other deficiencies of blood coagulation factors, especially von Willebrand factor, were excluded. Measurement of factor VIII inhibitor revealed an activity of 26.4 Bethesda units/ml. These findings were consistent with the diagnosis of acquired hemophilia A due to the presence of a factor VIII inhibitor. The patient was treated with a combination of prednisone and azathioprine. The therapy led, in a few months, to a significant reduction of factor VIII: C inhibitor and she did not require replacement therapy. Furthermore, there was a complete remission of the bleeding tendency. Long-term therapy for about 3 years induced the complete disappearance of the inhibitor and a full normalization of coagulation tests.

Arm

A new variant of von Willebrand's disease (type I Padua): doublet-organized plasma von Willebrand factor oligomers in the presence of all size multimers.

Type I von Willebrand's disease (vWd) is characterized by a concomitant decrease in plasma of von Willebrand factor antigen (vWf:Ag) and vWf ristocetin cofactor activity (vWf:RCoF), associated with the presence of all-size multimers. As a rule, there is no evidence of intrinsic abnormality in vWf. We describe a family with type I vWd with an abnormal plasma vWf multimer pattern. Analysis of plasma vWf multimeric structure by short-SDS-agarose gel electrophoresis showed an abnormal banding pattern for each vWf oligomer, which was organized as a doublet instead of the normal triplet. The electrophoretic mobility of each component appeared to be normal. Multimeric analysis on a long gel showed all the bands that were detectable in normal subjects, but unlike normals the fast moving satellite stained as the major component. The platelet vWf multimer pattern was normal. The infusion of DDAVP normalized vWf:Ag, vWf:RCoF and VIII:C, but not the abnormal multimer pattern observed on both short- and long-gel electrophoresis. The return of factor VIII/vWf complex to the baseline condition was more rapid than that observed in normal subjects or classic type I vWd patients. Analysis of the subunit fragments in the patients' plasma vWf demonstrated a relatively greater proportion, compared to the normal counterpart, of a 115(140)-kD fragment, which derives from the aminoterminal region of the mature molecule; in contrast, no intact subunit was detectable. These findings indicate a new, previously unreported, variant of type I vWd, which is characterized by plasma vWf oligomers organized as doublets, instead of triplets. The reduced post-DDAVP half-life, and the abnormal subunit fragments of vWf, suggest a molecule characterized by an increased susceptibility to proteolytic degradation. As a result, the decrease in circulating vWf levels may be due to an instability of the abnormal vWf, rather than, or in addition to, a decrease in its synthesis.

Adult

Platelet aggregation induced by plasma from type IIB von Willebrand's disease patients is associated with an increase in cytosolic Ca2+ concentration.

The effect of type IIB von Willebrand's factor (vWF) on platelet cytosolic Ca2+ ion concentration, measured by means of the probe fura 2, was investigated. Seven patients with type IIB von Willebrand disease (vWD) were studied. Addition of type IIB vWD plasma to platelet suspensions induced a cytosolic calcium increase accompanied by platelet aggregation. Both processes were completely abolished by addition of the calcium-chelating agent EGTA, indomethacin, peptide RGDS, and monoclonal antibodies blocking the vWF binding site on GPIb-IX (LJIB1) or the cytoadhesive receptor on GPIIb-IIIa (LJCP8). The ADP-scavenger apyrase and the protein kinase C-inhibitor staurosporine partially inhibited the rate of the cytosolic calcium increase. No direct correlation between the extent of Ca2+ rise and the phenotypic expression of IIB vWD, such as the degree of spontaneous platelet aggregation or thrombocytopenia was apparent. It is suggested that aggregation and cytosolic Ca2+ increase in platelets exposed to plasma from type IIB vWD patients is mediated by a self-potentiating mechanism involving both GPIb and GPIIb-IIIa receptors as well as the thromboxane biosynthetic pathway.

Amino Acid Sequence

Urokinase-type plasminogen activator release after DDAVP in von Willebrand disease: different behaviour of plasminogen activators according to the synthesis of von Willebrand factor.

Nine healthy volunteers and 23 patients with various types of von Willebrand disease were studied before and after DDAVP infusion. We investigated the behaviour of factor VIII/von Willebrand factor measurements, and of tissue plasminogen activator and urokinase-type plasminogen activator. In mild von Willebrand disease the increase of both plasminogen activators was similar to that seen in normal controls. A different fibrinolytic behaviour was found in the type I platelet low and in the type III von Willebrand disease patients. An impaired and absent fibrinolytic response to DDAVP was seen in the former and in the latter von Willebrand disease, respectively. A close relation between either u-PA and t-PA or von Willebrand factor was observed. The possibility of a linkage among these three proteins was discussed.

Adolescent

Detection of two missense mutations and characterization of a repeat polymorphism in the factor VII gene (F7).

The 3' portion of the coagulation factor VII gene, containing the activation and serine protease domains, was investigated in four subjects with factor VII deficiency by temperature gradient gel electrophoresis and sequencing of polymerase chain reaction (PCR) products. Molecules displaying an altered melting behaviour were detected in three subjects, and direct sequencing showed two mutations. A G-to-T transversion causing a missense mutation, Cys-310 to Phe, suppresses a disulphide bond conserved in the catalytic domain of all serine proteases. This mutation, which in the homozygous form causes a severe reduction in protease activity (4%), was found in two patients from different Italian regions. A G-to-A transition, which gives rise to a missense mutation, Arg-304 to Gln, and is associated with the factor VII padua variant, was found in the heterozygous form in a subject also affected by von Willebrand disease. Two polymorphic alleles, which differ in one repeat monomer element, were precisely mapped in a region spanning the exon-intron 7 border of the factor VII gene and studied in families with factor VII or X deficiency.

Base Sequence

Impaired release of tissue plasminogen activator (t-PA) following DDAVP infusion in von Willebrand's disease with low platelet von Willebrand factor content.

Tissue plasminogen activator (t-PA) and von Willebrand factor (vWF) are both released by vascular endothelial cells after the infusion of DDAVP. Such release has not been observed in patients with severe von Willebrand's disease (vWD). In the present work we demonstrate that the degree of simultaneous DDAVP-induced release of t-PA and vWF, in patients with vWD, is strictly related to the platelet vWF content. Twelve patients with type I, and three patients with type III vWD were studied. The type I vWD group included three patients with reduced platelet vWF content (platelet-low) and nine patients with normal levels (platelet-normal). In all patients studied the plasma t-PA levels were within the normal range. No significant change in either t-PA or vWF was observed after DDAVP in the patients with undetectable levels of platelet vWF (type III vWD). A mild increase was found in those patients with type I platelet-low, while in type I platelet-normal vWD the response was similar to that observed in normal subjects. The release of the two molecules appeared, therefore, to be linked to platelet vWF content and the rates of increase in both t-PA and vWF were similar in each group of patients studied. Since platelets are regarded as a tissue compartment of vWF our findings seem to suggest that the presence of vWF and its release from endothelial cells is required for a normal concomitant release of t-PA. In contrast, post-DDAVP release of vWF seems to be independent from that of t-PA since it was normal in a patient with congenital deficiency of t-PA release.

Adolescent

Effect of human recombinant erythropoietin on bleeding time, platelet number and function in children with end-stage renal disease maintained by haemodialysis.

We studied platelet number and function in nine anaemic children with end-stage renal disease during a clinical trial with recombinant human erythropoietin (rHu-EPO). All the children showed a correction in both haematocrit and haemoglobin levels which was followed by a significant reduction in bleeding time. We also observed a significant increase in platelet count after both 6 and 12 weeks of therapy; at the same time mean platelet volume decreased and a normal platelet mass was maintained. The mean baseline platelet aggregation response to ADP was normal, but was decreased to collagen (P less than 0.05 vs normal control). Platelet production of thromboxane B2 in serum was also lower than normal controls. After correction of anaemia with rHu-EPO, platelet aggregation improved in patients with a decreased baseline response, and mean levels of thromboxane B2 became normal. In conclusion, the treatment with rHu-EPO improved haemostatic balance not only by correcting anaemia, but also by increasing platelet count and function.

Adolescent

Pregnancy-induced worsening of thrombocytopenia in a patient with type IIB von Willebrand's disease.

Thrombocytopenia has been reported in patients with type IIB von Willebrand's disease (vWd) during pregnancy. In the present work we report the behaviour of platelet count and von Willebrand factor (vWf) multimers in a pregnant type IIB vWd patient who presented with mild thrombocytopenia in the steady state. The evolution of pregnancy was associated with a progressive decrease of platelet count which showed its lowest value two days before delivery (20 x 10(9)/l). The tendency of the platelet count to decrease was suddenly reversed a few days later (77 x 10(9)/l). At the same time, the vWf multimeric pattern showed a strict but inverse correlation with the platelet count. In fact, a progressive increase in low and intermediate sized vWf multimers, which proceeded until platelets reached their minimum level, was noted. A few days after delivery, concomitant with the prompt platelet increase, low and intermediate multimers became decreased. During pregnancy, the patient's platelet showed additional increased responsiveness to ristocetin but did not demonstrate spontaneous platelet aggregation (SPA). On the contrary, the patient's plasma, collected both during and after pregnancy, caused normal platelets to aggregate spontaneously. SPA appeared completely blocked by an anti-GPIIb-IIIa monoclonal antibody (MAb), which recognized the binding site for fibrinogen, vWf and fibronectin. In contrast, a MAb against ristocetin-induced vWf binding site on GPIb did not affect SPA. These findings suggest that the common stimulus or stimuli, responsible for the pregnancy-induced decrease of platelet count and improvement of vWf multimeric pattern in type IIB vWd is strictly related to pregnancy.(ABSTRACT TRUNCATED AT 250 WORDS)

Adult

Discrepant increase in factor VIII: C and von Willebrand factor after DDAVP infusion in a patient with variant von Willebrand's disease.

We have studied a patient with von Willebrand's disease (vWd) whose von Willebrand factor (vWf) multimer patterns showed significant decreases of all but the major fast moving vWf multimer (promoter). Bleeding time (BT) was very prolonged, there was almost no ristocetin-induced platelet aggregation (RIPA) and vWf levels were very low. The factor VIII: C/vWf: Ag ratio appeared to be higher than normal because of the relatively increased concentration of factor VIII: C. The infusion of DDAVP normalized BT, improved RIPA and restored normal factor VIII: C levels, these effects lasted for 5 h even though only a slight increase of vWf: Ag and vWf: RCoF was observed. RIPA was completely inhibited by an anti-glycoprotein (GP) Ib monoclonal antibody that recognizes the ristocetin-induced vWf binding site. Plasma vWf multimer analysis revealed only slight increases of all components and an additional, more pronounced representation of vWf protomer. These data suggest that the patient has an abnormal vWf molecule characterized by a greater ability to carry factor VIII than would be expected from the vWf levels. Furthermore, since the vWf protomer was the only significant vWf component present both before and after DDAVP infusion we hypothesize that some of the haemostatic functions of the patient's vWf may depend on it.

Bleeding Time

1-Desamino-8-D-arginine vasopressin (DDAVP) infusion in type IIB von Willebrand's disease: shortening of bleeding time and induction of a variable pseudothrombocytopenia.

We have investigated the effects of 1-desamino-8-D-arginine vasopressin (DDAVP) infusion on platelet count and bleeding time in 4 patients with type IIB von Willebrand's disease (vWd). Three of four patients showed a normalization of the bleeding time within 1 h after the infusion, while bleeding time was not modified in the fourth. In accordance with the literature, thrombocytopenia was observed after DDAVP infusion, but this thrombocytopenia was due to the anticoagulants used for blood collection. In two patients (F.I., G.F.) no thrombocytopenia was observed when platelets were counted by fingerstick method but there was a 20% platelet decrease in blood samples collected in sodium citrate and a 50% decrease in samples collected in EDTA. Dramatic falls in platelet counts (70-95%) were observed in the additional two patients (C.A., D.Z.) after DDAVP infusion, when both sodium citrate or EDTA were used as anticoagulants. In the latter two patients there was also a 50% decrease in platelet count when the fingerstick method was used. The decrease in the patient's platelet count in EDTA samples after DDAVP infusion could be prevented, in part, by the previous additions of an anti GPIb monoclonal antibody and an anti GPIIb-IIIa monoclonal antibody. Thus, the thrombocytopenia observed in the four IIB vWd patients studied after DDAVP infusion seems to be, at least partially, a pseudothrombocytopenia depending on the calcium concentration in the blood samples and the availability of GPIb and GPIIb-IIIa receptors. These findings and the normalization of the bleeding time observed in three of the four patients has led us to reconsider the possible use of DDAVP in the treatment of our IIB vwd patients.

Anticoagulants

A de novo and heterozygous gene deletion causing a variant of von Willebrand disease.

An abnormal von Willebrand factor (vWF) gene restriction pattern has been found in a patient with von Willebrand disease. Because this gene alteration is not present in his parents or in 50 normal and 25 affected subjects, and the restriction fragment length polymorphism haplotypes are inherited normally in the patient's family, we suggest that a de novo mutation is present. Bands with reduced intensity and additional fragments, observed in several restriction digests, hybridize with noncontiguous copy DNA (cDNA) portions, thus indicating the presence of a heterozygous gene deletion. The deletion removes a genomic region containing at least codons 1147 through 1854 and corresponding to the D3-A3 homologous protein domains. The extent of the vWF pseudogene on chromosome 22 is roughly similar to that of the deleted area. However, the pseudogenic nature of the deletion is excluded by the mapping of bands with reduced intensity in the patient to the true vWF gene. The vWF antigen levels are one fourth of normal and ristocetin cofactor activity is severely impaired. The reduction of high molecular weight multimers in plasma and platelets and the altered triplet morphology are compatible with the presence of a dominant variant of type II von Willebrand disease.

Bleeding Time