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Biomedical subjects

M Furlan

Publications and source records attributed to M Furlan.

At least 55 records · Page 3Linked to original sources

von Willebrand factor-cleaving protease in thrombotic thrombocytopenic purpura and the hemolytic-uremic syndrome.

BACKGROUND: Thrombotic thrombocytopenic purpura and the hemolytic-uremic syndrome are severe microvascular disorders of platelet clumping with similar signs and symptoms. Unusually large multimers of von Willebrand factor, capable of agglutinating circulating platelets under high shear stress, occur in the two conditions. We investigated the prevalence of von Willebrand factor-cleaving protease deficiency in patients with familial and nonfamilial forms of these disorders. METHODS: Plasma samples were obtained from 53 patients with thrombotic thrombocytopenic purpura or hemolytic-uremic syndrome. Von Willebrand factor-cleaving protease was assayed in diluted plasma samples with purified normal von Willebrand factor as the substrate. The extent of the degradation of von Willebrand factor was assessed by electrophoresis in sodium dodecyl sulfate-agarose gels and immunoblotting. To determine whether an inhibitor of von Willebrand factor-cleaving protease was present, we measured the protease activity in normal plasma after incubation with plasma from the patients. RESULTS: We examined 30 patients with thrombotic thrombocytopenic purpura and 23 patients with the hemolytic-uremic syndrome. Of 24 patients with nonfamilial thrombotic thrombocytopenic purpura, 20 had severe and 4 had moderate protease deficiency during an acute event. An inhibitor found in 20 of these patients was shown to be IgG in five of five tested plasma samples. Of 13 patients with nonfamilial hemolytic-uremic syndrome, 11 had normal levels of activity of von Willebrand factor-cleaving protease during the acute episode, whereas in 2 patients, the activity was slightly decreased. All 6 patients with familial thrombotic thrombocytopenic purpura lacked von Willebrand factor-cleaving protease activity but had no inhibitor, whereas all 10 patients with familial hemolytic-uremic syndrome had normal protease activity. In vitro proteolytic degradation of von Willebrand factor by the protease was studied in 5 patients with familial and 7 patients with nonfamilial hemolytic-uremic syndrome and was normal in all 12 patients. CONCLUSIONS: Nonfamilial thrombotic thrombocytopenic purpura is due to an inhibitor of von Willebrand factor-cleaving protease, whereas the familial form seems to be caused by a constitutional deficiency of the protease. Patients with the hemolyticuremic syndrome do not have a deficiency of von Willebrand factor-cleaving protease or a defect in von Willebrand factor that leads to its resistance to protease.

ADAM Proteins↗

Acquired deficiency of von Willebrand factor-cleaving protease in a patient with thrombotic thrombocytopenic purpura.

Plasma of patients with thrombotic thrombocytopenic purpura (TTP) has been shown to contain unusually large von Willebrand factor (vWF) multimers that may cause platelet agglutination in vivo. Fresh frozen plasma infusions and plasma exchange represent the most efficient therapy of acute TTP. A specific protease responsible for cleavage of vWF multimers has been recently isolated from normal human plasma and was found to be deficient in four patients with chronic relapsing TTP. We examined the activity of the vWF-cleaving protease in plasma samples collected over a period of 400 days from a further patient with recurrent episodes of TTP who was treated by plasma exchange, plasma infusion, vincristine, corticosteroid therapy, and splenectomy. Complete deficiency of the vWF-cleaving protease was established during the first episode of TTP. The ensuing normalization of the platelet count was associated with the appearance of the protease activity. Three months after remission from the initial TTP event, the vWF-cleaving protease again disappeared and the platelet count gradually decreased. Relapses of severe thrombocytopenia occurred 7 and 11 months after the first acute episode of TTP. Deficient protease activity was associated with the presence in the patient plasma of an inhibitor that was found to be an IgG. Plasma exchange/infusion was followed by a temporary increase in the antibody titer, whereas treatment with vincristine led to a recovery of the platelet count without affecting the inhibitor concentration. Splenectomy and corticosteroid treatment resulted in disappearance of the autoantibody and normalization of the protease activity and of the platelet count. Our data suggest that the thrombocytopenia in this patient with TTP was associated with a lack of the vWF-cleaving protease activity depleted by an autoimmune mechanism. This case, together with our previously reported patients, leads us to conclude that acquired as well as constitutional deficiency of the vWF-cleaving protease may predispose to TTP.

ADAM Proteins↗

Deficiency of von Willebrand factor-cleaving protease in familial and acquired thrombotic thrombocytopenic purpura.

Excessive intravascular platelet agglutination in patients with thrombotic thrombocytopenic purpura (TTP) appears to be associated with excessive release from endothelial cells of unusually large von Willebrand factor (vWF) multimers and/or impaired degradation of these multimers by a 'depolymerase' cleaving vWF to smaller, non-agglutinating molecular forms. We studied the activity of a recently described vWF-cleaving protease in four patients, including two brothers, with chronic relapsing TTP. All four patients had lacking or strongly reduced vWF-cleaving protease activity. In another patient with chronic relapsing TTP, the protease deficiency was due to the presence in the patient plasma of an inhibitor that was found to be an IgG. We conclude that constitutional as well as acquired deficiency of vWF-cleaving protease may predispose to clinical manifestation of TTP.

ADAM Proteins↗

Antifungal amide from leaves of Piper hispidum.

Bioactivity-guided fractionation of a CH2Cl2 extract from leaves of Piper hispidum (Piperaceae) yielded a new pyrrolidine amide, N-[7-(3',4'-methylenedioxyphenyl)-2(Z),4(Z)-heptadienoyl] pyrrolidine 1, in addition to two known amides N-[5-(3', 4'-methylenedioxyphenyl)-2(E)-pentadienoyl] pyrrolidine and N-[2-(3', 4'-methylenedioxy-6'-methoxyphenyl)-2(Z)-propenoyl]pyrrolidine. The structure of compound 1 was elucidated by interpretation of spectral data, including ES-MS. Compound 1 showed antifungal activity against Cladosporium sphaerospermum.

Antifungal Agents↗

Is plasminogen deficiency a thrombotic risk factor? A study on 23 thrombophilic patients and their family members.

The role of plasminogen (plg) deficiency in the pathogenesis of venous thromboembolism is debated in the literature. In the present study we evaluated the prevalence of plg deficiency in our thrombophilia patients and aimed to elucidate the thrombosis risk of plg deficiency as a single defect or in combination with other defects, with special focus on APC resistance. The study cohort included 1192 consecutive patients with a history of clinically or objectively diagnosed venous and/or arterial thromboembolism and/or positive family history who were referred to our department for thrombophilia investigation from 02/1988 to 03/1997. All available family members of patients with plg deficiency were tested for plg, APC resistance and other thrombophilic defects that were established in the propositus. 23/1192 propositi were plg-deficient corresponding to an overall prevalence of 1.9%, i.e. 2.2% in patients with venous thrombosis and 1.4% in those with arterial events. Out of the 23 plg-deficient propositi, 8 showed one or multiple additional thrombophilic defects, and in 4 patients relevant circumstantial risk factors were present. Of the 53 available family members, 28 were plg-deficient including 5 with additional APC resistance, and 4 subjects had isolated APC resistance. Ten of the 53 family members had already suffered thromboembolic events, i.e. 5 (18%) in the plg-deficient group and 5 (20%) in the non-deficient group, both groups showing an almost identical median age at the time of investigation (28.9 years and 27.1 years, respectively). Based on our data, plg deficiency is a rare defect in thrombophilic patients and as a single defect it does not seem to be a strong thrombotic risk factor, as 11 of 23 propositi had additional thrombophilic defects or circumstantial risk factors, and in the family members thrombotic events were equally frequent in the plg-deficient and non-deficient subjects.

Adolescent↗

Deficient activity of von Willebrand factor-cleaving protease in chronic relapsing thrombotic thrombocytopenic purpura.

In patients with thrombotic thrombocytopenic purpura (TTP), excessive intravascular platelet aggregation has been associated with appearance in plasma of unusually large von Willebrand factor (vWF) multimers. These extremely adhesive vWF multimers may arise due to deficiency of a "depolymerase" cleaving vWF to smaller molecular forms, either by reducing the interdimeric disulfide bridges or by proteolytic degradation. We studied the activity of a recently described vWF-cleaving protease in four patients with chronic relapsing TTP. Diluted plasma samples of TTP patients were incubated with purified normal human vWF in the presence of a serine protease inhibitor, at low ionic strength, and in the presence of urea and barium ions. The extent of vWF degradation was assayed by electrophoresis in sodium dodecyl sulfate-agarose gels and immunoblotting. Four patients, that included two brothers, with chronic relapsing TTP displayed either substantially reduced levels or a complete absence of vWF-cleaving protease activity. In none of these patient plasmas was an inhibitor of or an antibody against the vWF-cleaving protease established. Our data suggest that the unusually large vWF multimers found in TTP patients may be caused by deficient vWF-cleaving protease activity. Deficiency of this protease may be inherited in an autosomal recessive manner and seems to predispose to chronic relapsing TTP. The assay of the vWF-cleaving protease activity may be used as a sensitive diagnostic tool for identification of subjects with a latent TTP tendency.

ADAM Proteins↗

[The significance of APC resistance (activated protein C) for clinical practice].

Resistance against the anticoagulatory effect of activated protein C (APC resistance) is the most prevalent hereditary risk factor for venous thromboembolism known today. In this short review, an exemplary casuistic observation from our thrombophilia outpatient ward is presented. The discovery by Dahlbäck et al. in 1993 of hereditary APC resistance as a basis of familial thrombophilia and the molecular characterization of this defect as point mutation in the coagulation factor V gene (FV R506Q- or FV Leiden-mutation) by Bertina and coworkers are discussed. The clinical implications of this thrombophilia and relevant knowledge for daily practice are briefly summarized.

Adult↗

Subcutaneous low-molecular-weight heparin for treatment of Trousseau's syndrome.

We report the case of a 76-year-old man with recurrent thromboses despite oral anticoagulation with phenprocoumon and low-grade chronic disseminated intravascular coagulation. Workup revealed a bronchial carcinoma (NSCCL) with hilar and mediastinal lymph node metastases. The clinical condition was consistent with Trousseau's syndrome. Based on reports in the literature, the therapy was changed to intravenous unfractionated heparin (UFH), which was effective in controlling the thrombotic coagulopathy. For practical reasons, despite a lack of evidence of its effectiveness in Trousseau's syndrome, therapy with UFH was changed to subcutaneous low-molecular-weight heparin (LMWH, nadroparine) in therapeutic doses of 100 IU/ kg body wt. 12 hourly. On an outpatient basis, five chemotherapy cycles were administered, and after metastases of the brain had been detected radiotherapy was initiated. Following 7.5 months of progressive neoplastic disease the patient died. He had remained free of thromboembolic complications under continued LMWH therapy during the last 6.5 months of his life. LMWH might be a convenient alternative to the established therapy with UFH in Trousseau's syndrome.

Aged↗

A comparison of triamcinolone acetonide nasal aerosol spray and fluticasone propionate aqueous solution spray in the treatment of spring allergic rhinitis.

BACKGROUND: Many nasal corticosteroids with different potencies and formulations are available, but they have all been proven safe and effective. The clinical relevance, if any, of these differences is not yet completely established. OBJECTIVE: We sought to compare the efficacy, safety, and patients' acceptance of triamcinolone acetonide aerosol spray and fluticasone propionate aqueous solution in the treatment of spring allergic rhinitis. METHODS: After a drug-free baseline evaluation, patients with rhinitis were randomized to receive either a triamcinolone aerosol spray of 110 microg in each nostril once daily (n = 117) or a fluticasone solution spray of 100 microg in each nostril once daily (n = 116) in a single-blind, parallel-group study. The Rhinitis Index Score (sum of scores of symptoms on a scale from 0 to 3) was evaluated daily, in the morning before drug administration, for 21 days. The efficacy of each treatment was assessed by the mean reduction from baseline in the Rhinitis Index Score and in individual symptom scores. Patients' acceptance of the study drugs was also monitored by a daily questionnaire. RESULTS: Reductions of the Rhinitis Index Score (mean +/- SEM) were 4.20 +/- 0.21 and 4.60 +/- 0.21 for triamcinolone and fluticasone, respectively (p = 0.23). There were no statistically significant differences between the drugs in the reduction of any of the individual symptoms. Patients expressed statistically significant differences between the drugs regarding acceptance; different properties of the aerosol and the solution were appreciated differently. CONCLUSIONS: This study shows that triamcinolone acetonide aerosol and fluticasone propionate solution sprays are both clinically equally effective, safe, and well tolerated for the treatment of spring pollen allergic rhinitis.

Administration, Inhalation↗

Plasma protein C inhibitor is elevated in survivors of myocardial infarction.

Many studies have shown alterations of the hemostatic and fibrinolytic systems in patients with atherosclerotic disease, principally in levels of plasminogen activator inhibitor-1. However, in a large prospective study only fibrinogen, von Willebrand factor antigen, and tissue plasminogen activator antigen were found to be independent risk markers for acute coronary events. The present study evaluated the fibrinolytic system in coronary artery disease, paying particular attention to another inhibitor of fibrinolysis, plasminogen activator inhibitor-3, also called protein C inhibitor (PCI). One hundred fifteen nonanticoagulated male survivors of myocardial infarction were investigated for a range of hemostatic and fibrinolytic parameters that were compared with values in 87 age-matched healthy control male subjects. PCI active antigen was significantly (P < .03) elevated in the myocardial infarction group compared with the control group and was associated with the number of acute coronary events suffered (P = .005) but not with the severity of disease as determined by coronary angiography. Elevated PCI plasma levels can be considered as a risk marker for acute coronary events and might be of particular importance in the pathogenesis of this disease due to the interference of PCI in both the anticoagulant and fibrinolytic systems.

Adult↗

von Willebrand factor without the A2 domain is resistant to proteolysis.

von Willebrand factor (vWF) is a complex multimeric plasma glycoprotein, that plays a critical role in the mediation of platelet adhesion to the damaged vascular wall, and functions as a carrier protein for factor VIII. vWF has a domain structure consisting of repeated A, B, C, and D domains. The A1 domain is involved in binding to the platelet receptor glycoprotein (GP) Ib, and the A3 domain has a binding site for collagen. A function of the A2 domain has not been described, although point mutations identified in von Willebrand disease (vWD) type 2A patients are localized in this domain. To study the role of the A2 domain a deletion mutant was constructed which lacked the A2 domain, delta A2-vWF. Previous studies have shown that this approach is a powerful tool to study the function of a domain in a protein since it does not affect the activity of other domains. After expression in baby hamster kidney (BHK) cells, delta A2-vWF was compared to wild-type (WT) vWF, and to delta A1-vWF (Lankhof et al., Blood 86: 1035, 1995). Ristocetin induced platelet binding was slightly increased but botrocetin induced platelet binding was normal as was binding to heparin and collagen type III. Adhesion studies to surface coated purified delta A2-vWF or to delta A2-vWF preincubated on collagen under flow conditions showed no abnormalities. Incubation with normal human plasma showed that delta A2-vWF like WT-vWF was not sensitive to proteolysis. After addition of urea, WT-vWF becomes sensitive to the protease, indicating that unfolding of the molecule is necessary for exposure of the cleavage site. delta A2-vWF tested under the same conditions was resistant, indicating that the protease sensitive site is located in the A2 domain.

Animals↗

Partial purification and characterization of a protease from human plasma cleaving von Willebrand factor to fragments produced by in vivo proteolysis.

Proteolytic cleavage of von Willebrand factor (vWF) takes place in the circulating blood of healthy subjects and is increased in some patients with von Willebrand disease type 2A. The hemostatically active large vWF multimers are degraded to smaller less active forms. It has been suggested that the polypeptide subunit of vWF is cleaved at the peptide bond 842Tyr-843Met. We purified (approximately 10,000-fold) from human plasma a vWF-degrading protease, using chelating Sepharose, hydrophobic interaction chromatography, and gel filtration. The enzyme was found to be virtually absent in the platelet lysates obtained by repeated freezing and thawing. The proteolytic activity was associated with a high molecular weight protein (approximately 300 kD) as judged by gel filtration and sodium dodecyl sulfate-polyacrylamide gel electrophoresis. vWF was resistant against the protease in a neutral buffer at physiological ionic strength but became degraded at low salt concentration or in the presence of 1 mol/L urea. No degradation of human fibrinogen, bovine serum albumin, of calf skin collagen by the purified protease was noted under the same experimental conditions. Proteolytic activity showed a pH optimum at 8 to 9 and was strongly inhibited by chelating agents, whereas only slow inhibition was observed with N-ethylmaleimide. There was no inhibition by iodoacetamide, leupeptin, or serine protease inhibitors. The best peptidyl diazomethyl ketone inhibitor was Z-Phe-Phe-CHN2. Activation by divalent metal ions was found to increase in the following order: Zn2+ approximately Cu2+ approximately CD2+ approximately Ni2+ approximately Co2+ <Mn2+ <Mg2+ <Ca2+ <Sr2+ <Ba2+. The observed properties of the vWF-degrading enzyme differ from those of all other hitherto described proteases. Purified vWF was incubated with the protease, and the degraded material subjected to sodium dodecyl sulfate-polyacrylamide gel electrophoresis after disulfide reduction. The size, amino acid composition, and amino terminal sequence of the reduced fragments confirmed that the peptide bond 842Tyr-843Met had been cleaved, ie, the same bond that has been proposed to be cleaved in vivo.

ADAM Proteins↗

Spontaneous neurological recovery after stroke and the fate of the ischemic penumbra.

We prospectively tested the hypothesis that early recovery after ischemic stroke depends on the ultimate survival of functionally impaired, critically ischemic (i.e., "penumbral") tissue. From a series of 26 consecutive patients studied with positron emission tomography within 18 hours of first-ever stroke in the middle cerebral artery territory, all 11 survivors to the 2-month end point who exhibited increased oxygen extraction fraction were declared eligible. The positron emission tomographic images were compared to ultimate infarction defined by computed tomography performed during the chronic stage. The penumbra (operationally defined by increased oxygen extraction fraction and divided outcome despite uniformly reduced cerebral blood flow) was individually detected in 10 of the 11 patients; cerebral blood flow ranged from 7 to 17 ml/100 gm x min, consistent with that found in monkey studies. The volume of the penumbra that escaped infarction was highly correlated with neurological recovery (p < 0.04 to p < 0.0001, depending on the scale used). This longitudinal study is the first to characterize the penumbra in humans and to document one mechanism strongly influencing recovery; the surviving penumbra may offer opportunities for secondary perifocal neuronal reorganization. Therapeutic measures to prevent infarction of the penumbra (up to 16 hours in this series) may have reduced residual neurological impairment. Mapping the extent of the penumbra, according to prospective criteria, may allow one to predict each patient's potential for recovery, and to select the most appropriate candidates for therapeutic trials.

Aged↗

Von Willebrand factor: molecular size and functional activity.

Von Willebrand factor (vWF) is the largest protein found in plasma. It circulates in blood as a series of multimers ranging in size from 500 to 20,000 kDa. The variable molecular weight of vWF is due to differences in the number of subunits comprising the protein. vWF mediates platelet adhesion to subendothelium of the damaged blood vessel. Only the largest multimers are hemostatically active. Each vWF subunit contains binding sites for collagen and for platelet glycoproteins GPIb and GPIIb/IIIa. Multiple interactions of repeating binding sites in vWF multimers with adhesive protein(s) of the subendothelium and with receptors on the platelet surface lead to "irreversible" binding of platelets to the exposed subendothelium. Functional properties of vWF are typical of multisubunit proteins encoded by autosomal loci. The phenotype of von Willebrand disease is determined by the properties of the dysfunctional subunits which become incorporated into heteropolymeric forms of vWF. Absence of large vWF multimers, seen in type 2A von Willebrand disease and in myeloproliferative disorders, is associated with bleeding tendency. On the other hand, in patients with vWF multimers of supranormal size, as they occur in thrombotic thrombocytopenic purpura (TTP) and hemolytic uremic syndrome (HUS), there is an increased risk of thrombosis. Proteolytic enzyme(s) are involved in physiologic regulation of the polymeric size of vWF. We have purified from human plasma a protease cleaving vWF at the same peptide bond that is also cleaved in vivo. vWF was quite resistant against the protease in a physiologic buffer but was degraded at low salt concentration or in the presence of 1 M urea. It appears that a conformational change in the vWF molecule exposes the specific protease-sensitive peptide bond and thus enhances degradation of vWF multimers. In some variants of type 2A vWF, the cleavage site in the vWF subunit is more susceptible to proteolytic degradation than in normal vWF, whereas in patients with TTP or HUS the protease activity may be suppressed. vWF-degrading protease plays an important role in pathogenesis of congenital or acquired disorders of hemostasis and thrombosis.

Blood Platelets↗

Early spontaneous hyperperfusion after stroke. A marker of favourable tissue outcome?

To clarify the relationships between early hyperperfusion (i.e. the hallmark of early, efficient recanalization in animal stroke models) and ultimate infarction, we have compared acute-stage perfusion PET images and chronic-stage CT scans in patients with middle cerebral artery (MCA) stroke. We used PET and the oxygen-15 (15O) equilibrium method to obtain cerebral blood flow (CBF), cerebral blood volume (CBV), oxygen extraction fraction (OEF) and cerebral metabolic rate of oxygen consumption (CMRO2) parametric images in 30 consecutive, still symptomatic, first-ever MCA territory stroke patients without sign of haemorrhage at admission CT scan. Each subject was studied twice, first within 5-18 h of stroke onset, and, in survivors, approximately 1 month later; a plain CT scan (co-registered with PET) was performed approximately 1 month after onset. Following initial screening based on acute-stage perfusion images, 10 survivors with focal hyperperfusion in the appropriate MCA territory confirmed by computer were declared eligible. In each patient, the topography and volume of both hyperperfusion and infarction (delineated on late CT scan) were recorded, and all PET parameters were obtained for both areas and both times. The hyperperfused areas affected the cortical MCA territory, often widely so and in a patchy fashion; they were topographically distinct from, and consistently larger than (P < 0.01, Wilcoxon sign test) the final infarcts, which were small and generally deep-seated. In none of the nine patients in whom it was successfully performed did transcranial Doppler reveal MCA stem occlusion. In the hyperperfused regions, the acute-stage perfusion, blood volume and oxygen consumption were significantly increased, and the OEF significantly reduced, while all these variables had significantly returned toward normality in the chronic-stage PET study. The ultimately infarcted area did not exhibit significant hyperperfusion in the acute stage. The areas with acute-stage hyperperfusion exhibited haemodynamic and metabolic abnormalities consistent with post-recanalization hyperperfusion, i.e. vasodilatation and "luxury perfusion'. Increased oxidative metabolism, previously reported only in animals, presumably reflects an overshoot of protein synthesis. The fact that the areas with hyperperfusion, though extensive, were topographically distinct from the infarcted region, suggests that spontaneous non-haemorrhagic hyperperfusion, when documented 5-18 h after onset, is a harmless and even perhaps beneficial phenomenon. These results have implications for clinical trials.

Aged↗

Binding of calcium ions and their effect on clotting of fibrinogen Milano III, a variant with truncated A alpha-chains.

Calcium ions are known to be required for normal polymerisation of fibrin monomers. Normal human fibrinogen has three high-affinity calcium binding sites. Two of these are located in the D-domains whereas the third binding site was tentatively assigned either to the E-domain or to the C-terminal part of the A alpha-chain. Furthermore, binding of calcium to the low-affinity binding sites (n > or = 10) facilitates fibrin monomer polymerisation. In several abnormally clotting fibrinogen variants, the polymerisation defect was partially normalised following addition of calcium ions. In this study, we show normal binding of calcium to fibrinogen Milano III, a homozygous fibrinogen variant with truncated A alpha-chains (A alpha 452 Gly-Pro-Asp-->Trp-Ser-Stop). These results confirm that the C-terminal parts of the A alpha-chains beyond residue 451 Ile are not involved in calcium binding. The thrombin time was severely prolonged and the final clot turbidity was strongly reduced in fibrinogen Milano III. Moreover, calcium ions did not significantly improve the abnormal clotting behavior of this dysfibrinogen. The polymerisation defect in fibrinogen Milano III appears to be due to truncated A alpha-chains as well as to the disulphide-linked albumin.

Blood Coagulation↗