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Biomedical subjects

M Dechavanne

Publications and source records attributed to M Dechavanne.

At least 55 records · Page 3Linked to original sources

Complex formation of human thrombospondin with osteonectin.

Human thrombospondin, a 450-kDa glycoprotein isolated from platelets and endothelial cells, specifically interacts with osteonectin, a protein of 30 kDa isolated from bovine bones and human platelets. Using ELISA, purified osteonectin binds to solid-phase-adsorbed thrombospondin with a dissociation constant (Kd) of 0.7 nM. Binding of thrombospondin to solid-phase-adsorbed osteonectin was also observed (Kd = 0.86 nM). The interaction of thrombospondin with solid-phase-adsorbed osteonectin was significantly decreased (81% inhibition) when using an excess of fluid-phase osteonectin. Thrombospondin-osteonectin complex formation was calcium-dependent as shown by a 50-80% inhibition in the presence of EDTA. None of the proteins known to interact with thrombospondin (fibrinogen, fibronectin, collagen, plasminogen) had a significant inhibitory effect on thrombospondin-osteonectin complex formation. This selective interaction was confirmed by affinity chromatography. Iodinated osteonectin, previously incubated with purified thrombospondin, specifically bound to an anti-thrombospondin monoclonal antibody (P10) linked to protein-A--Sepharose 4B. Elution of the anti-thrombospondin antibody from protein A allowed the recovery of the thrombospondin-osteonectin complex in the eluate, as judged by SDS/polyacrylamide gel electrophoresis and autoradiography. Blotting of purified thrombospondin to osteonectin adsorbed onto nitrocellulose further confirmed complex formation. In addition, when released from thrombin-stimulated platelets, thrombospondin and osteonectin bound to anti-thrombospondin IgG-coated plates indicating that osteonectin was complexed to thrombospondin once the platelet-release reaction has occurred.

Animals

Platelets and aging. I--Aggregation, arachidonate metabolism and antioxidant status.

Platelet functions were investigated in sixteen old (78-94 years) and eight young (25-35 years) subjects. Whole blood platelet aggregation induced by collagen was higher in the elderly. Similarly, aggregation of platelet rich plasma and plasma-free platelets induced by various agents was increased but the collagen-induced release of ATP was reduced. In agreement with the enhanced platelet aggregability, the increase of thromboxane formation (under thrombin stimulation) was also noted in platelets from elderly people. To further assess platelet and vascular function in vivo, we measured the excretion of urinary TXB2, 2,3-dinor TXB2, 6-keto-PGF1 alpha and 2,3-dinor-6-keto-PGF1 alpha. The four metabolites were all increased in the elder population. In addition, a significant reduction of platelet vitamin E was observed in the elderly people, although the plasma content was normal. These results indicate numerous modifications of platelet behaviour with aging. They include the increased platelet susceptibility to aggregation, and the depletion of ATP granule content, which could reflect an activation in vivo in agreement with the enhanced urinary excretion of thromboxane and prostacyclin metabolites. We hypothesize that platelet hyperactivity associated with the enhanced oxygenated metabolism of arachidonic acid could be linked to vitamin E depletion. These changes may reveal a prethrombotic state in the elderly population.

12-Hydroxy-5,8,10,14-eicosatetraenoic Acid

Acute myocardial infarction: measurement of arachidonate end-products in whole blood as an index of platelet cyclo-oxygenase activity in vivo.

The endogenous arachidonic acid metabolism was investigated ex vivo, in separated serum from clotted whole blood, soon after the onset of acute myocardial infarction (3.3 +/- 0.7 hr). A group of eight consecutive male patients was selected, since no evidence was obtained of any associated disease known to increase platelet activity or any recent exposure to cyclo-oxygenase inhibitors. This group of patients compared to an age and sex matched control group showed a large decrease in the platelet cyclo-oxygenase end-products in whole blood: thromboxane B2 (TXB2), 12-hydroxy-5-cis, 8-cis, 10-trans-heptadecatrienoic acid (HHT) and 6-keto-PGF1 alpha (p less than .01). In addition, platelet lipoxygenase produced an increased amount of 12-hydroperoxy-5,8,10,14-eicosatetraenoic acid (12-HPETE) as measured by its reduced metabolite 12-HETE (p less than .05). Furthermore, the TXB2 plasma concentration was significantly elevated in patients (p less than .01), confirming the enhanced platelet reactivity during the early stages of acute myocardial infarction. These results point out that a decreased level of cyclo-oxygenase end-products and an increased level of lipoxygenase end-product in serum is consistent with a previous in vivo cyclo-oxygenase hyperactivity.

12-Hydroxy-5,8,10,14-eicosatetraenoic Acid

Intravenous high-dose IgG therapy induced alterations of spleen lymphocyte IgM secretion and T cell subsets in patients with idiopathic thrombocytopenic purpura.

High-dose intravenous (IV) IgG therapy is an effective possible means of raising platelet counts in patients with idiopathic thrombocytopenic purpura (ITP). In order to elucidate further the mechanism of action of such treatment we comparatively studied spleen mononuclear cells (SMC) from two groups of ITP patients. Group I consisted of 9 patients who had not received any recent treatment before splenectomy. The 8 patients in group II had received IV IgG infusions 1-5 days before splenectomy. The SMC were cultured either unstimulated or stimulated by pokeweed-mitogen (PWM), and proliferation (as assessed by 3H-thymidine uptake), and IgG and IgM secretion were measured. In addition T lymphocyte subsets were determined in the SMC by indirect immunofluorescence using monoclonal antibodies (OKT3,4,8). By comparison with group I SMC, our results in group II SMC mainly showed a significant decrease in proliferation and IgM secretion, in both unstimulated and PWM stimulated cultures. In addition, a significant decrease in the proportion of T helper-inducer lymphocytes (OKT4+ cells) was also found in group II SMC, as compared to group I SMC. However, these immunological alterations in group II SMC were paradoxically more pronounced in those patients who failed to respond to IV IgG infusions. Thus, these results suggest that, although immune suppression takes place in the SMC of ITP patients following IV IgG therapy, it has not a pronounced effect on the increase of platelet.

Adolescent

Significant reduction in the binding of a monoclonal antibody (LYP 18) directed against the IIb/IIIa glycoprotein complex to platelets of patients having undergone extracorporeal circulation.

Extracorporeal circulation (ECC) used in open heart surgery gives rise to several hemostatic defects. This work investigates the effect of ECC on patient platelets membrane glycoproteins IIb/IIIa. A monoclonal antibody (LYP 18) directed against the IIb/IIIa complex was used on patient platelets in binding and flow cytometry studies, before and at the end of ECC. An antithrombospondin (LYP 8) monoclonal antibody and a monoclonal antibody (LYP 7) directed against an alpha-granule glycoprotein of 136 kdaltons, present on the platelet surface after secretion, were used in binding studies together with electron microscopy to assess the release of alpha-granules. Results obtained in 7 patients show a significant reduction (p less than 0.02) in the number of LYP 18 monoclonal antibody binding to platelets having undergone ECC (n = 49,725 +/- 16,275) compared to platelets drawn before ECC (n = 72,671 +/- 13,302). Flow cytometry studies indicate a decrease (p less than 0.02) in the percentage of platelets bearing the LYP 18 determinant following ECC (75 +/- 12% vs 66 +/- 14%). Binding of monoclonal antibodies LYP 8 and LYP 7 and electron microscopy studies of patient platelets having undergone ECC do not show degranulation. These results suggest possible cleavage of the IIb/IIIa complex following ECC but no release of alpha-granules.

Aged

Identification of two distinct regions within the binding sites for fibrinogen and fibronectin on the IIb-IIIa human platelet membrane glycoprotein complex by monoclonal antibodies P2 and P4.

The effect of two monoclonal antibodies P2 (LyP 2) or P4 (LyP 4), specific for the platelet membrane glycoprotein IIb/IIIa complex, on binding of 125I-labelled fibrinogen or 125I-labelled fibronectin to thrombin-stimulated platelets was studied. These monoclonal antibodies are directed against different determinants on the IIb-IIIa complex and react only with the complex and not with the individual glycoproteins. Fibrinogen binding to thrombin-stimulated platelets was significantly inhibited by P2 but not by P4. Fibronectin binding to thrombin-stimulated platelets was significantly inhibited by P4 but only poorly by P2. These results indicate the presence of specific regions on the glycoprotein IIb-IIIa complex which act as binding sites for fibrinogen or fibronectin. Other authors [Haverstick et al. (1985) Blood 66, 946-952; Ginsberg et al. (1985) J. Biol. Chem. 260, 4133-4138] have shown that a tetrapeptide, Arg-Gly-Asp-Ser, inhibited the binding of fibrinogen, fibronectin, and von Willebrand factor (vWf) to stimulated platelets and that fibrinogen competes with vWf and fibronectin for binding. These findings, together with previous studies, therefore indicate the presence of specific regions as well as a common region in the binding sites for fibrinogen and fibronectin on the IIb-IIIa complex.

Adenosine Diphosphate

Effects of linoleic acid and gamma-linolenic acid intake on platelet functions in elderly people.

Sixteen old subjects were given daily dietary supplement of lg of linoleic acid and lg of gamma-linolenic acid (primerose oil) or 2g of linoleic acid (sunflower oil) for periods of two months. Haemostatic parameters, platelet aggregation, exogenous and endogenous arachidonic acid metabolism were investigated before and after the intake. Diets did not induce any significant change in haemostatic parameters (bleeding time, levels of anti-thrombin III, plasminogen and plasma beta-TG and PF4). Platelet rich plasma aggregation induced by collagen and arachidonic acid were significantly reduced after linoleic acid (18:2n-6) intake. In contrast, gamma-linolenic acid (18:3n-6) supplement did not alter aggregation. However, thromboxane B2 formation (under stimulation) and vitamin E level in platelets (but not in plasma) were decreased after 18:3n-6 as compared to 18:2n-6 intake. The mechanism of thromboxane B2 decrease is unclear. Nevertheless, we may speculate that beneficial effect of this decrease could be counterbalanced by the decreased platelet vitamin E. We conclude that intake of 18:2n-6 or 18:3n-6 does not affect much platelet functions in elderly people.

8,11,14-Eicosatrienoic Acid

Pharmacokinetic studies of standard heparin and low molecular weight heparin in patients with chronic renal failure.

The disappearance of the anticoagulant activities of a standard commercial heparin and of a low molecular weight (LMW) heparin (PK 10169), administered as single intravenous injections, was studied in patients with chronic renal failure. Heparin and LMW heparin anticoagulant activities were determined by activated partial thromboplastin time (APTT) and chromogenic assays of anti-Xa and anti-IIa activities. Following heparin injection, a fast initial decay of anticoagulant activities preceded a slow convex disappearance curve, in semilogarithmic plots. These experimental data are in agreement with a model based on a predominant saturable mechanism of elimination of heparin in patients with renal failure. The disappearance of LMW heparin anti-Xa activity was obviously different, with linear or concave elimination curves, and longer apparent half-life. Taken together, our kinetic data and those previously reported in normal subjects strongly suggest that the mechanism of elimination of the LMW heparin studied is not saturable (at least for the tested dosages), and that the kidneys play a minimal role in the elimination.

Adolescent

Plasma thrombospondin in patients with chronic renal failure, liver disease and splenectomy.

Thrombospondin (TSP), is a major constituent of human blood platelet alpha-granules. Stimulation of platelets causes the release of TSP in parallel with other alpha-granule constituents such as beta-thromboglobulin (beta-TG) and platelet factor 4 (PF4) but the thrombospondin plasma in vivo half life is significantly greater than beta-TG and PF4. The aim of this study was to assay TSP levels in plasma of patients with chronic renal failure (CRF), liver disease (LD) and following splenectomy. The TSP values were then compared to the patients plasma levels of two traditional markers of platelet activation, beta-TG and PF4, and to fibronectin (FN) and von Willebrand factor (VIII:vWF). Plasma TSP levels (67.6 +/- 16.9 ng/ml) assayed in 14 CRF patients were significantly higher (p less than 0.05) than those measured in 28 donors (55.5 +/- 11.7 ng/ml). No correlation was observed, in CRF patients, between the TSP level and PF4 (2.5 +/- 1.5 ng/ml), beta-TG (131.1 +/- 21 ng/ml), FVIII:vWF (252 +/- 85%), or FN (102 +/- 33%) plasma levels. The TSP plasma level in CRF patients was significantly correlated (p less than 0.02) with that of fibrinopeptide A (4.1 +/- 1.9 ng/ml). Although the beta-TG (23.5 +/- 6.9 ng/ml) and PF4 (2.9 +/- 2 ng/ml) plasma levels in six LD patients were normal, the TSP levels (82.5 +/- 39.1 ng/ml) were significantly increased (p less than 0.01). Thrombospondin plasma levels (77.1 +/- 20.1 ng/ml) in 14 patients having undergone splenectomy were significantly increased (p less than 0.001).(ABSTRACT TRUNCATED AT 250 WORDS)

Adult

Tandem separation of labelled human blood platelet membrane glycoproteins by anion-exchange and gel fast protein liquid chromatography.

Studies were made of the separation of surface-labelled platelet glycoproteins, solubilized in a non-ionic detergent (Berol 185), on a Mono Q anion-exchange column, coupled to a Superose 12 gel fast protein liquid chromatographic column. Peaks eluted from the anion-exchange and gel columns were subjected to electrophoresis on sodium dodecyl sulphate-polyacrylamide gels in the presence (non-reducing conditions) or absence (reducing conditions) of disulphide bridges. Labelled electrophoresed glycoprotein bands were rendered visible by fluorography or indirect autoradiography. Platelet membrane glycoproteins Ib, IIb, IIIa, IIIb, V and IX were identified by their apparent molecular weights and their surface labelling characteristics. It was concluded that tandem chromatography can be used to separate platelet membrane proteins and glycoproteins rapidly and with good resolution.

Blood Platelets

Identification and characterization of fragments of major glycoproteins from platelet membrane after chymotrypsin treatment.

Human platelets were surface-labeled by the periodate/NaB3H4 method or by lactoperoxidase-catalysed iodination with 125I. The labeled platelets were treated with chymotrypsin under conditions known to give platelets which aggregate with fibrinogen without stimulation with ADP. Platelets and supernatant were then analysed by various gel electrophoretic techniques including isoelectric focusing/sodium dodecyl sulfate-polyacrylamide gel electrophoresis under reducing or non-reducing conditions and two-dimensional non-reduced/reduced sodium dodecyl sulfate polyacrylamide gel electrophoresis followed by fluorography or indirect autoradiography. Chymotrypsin-treatment of surface-labeled platelets degraded the major glycoproteins Ib, IIb and IIIa but also GP120(4.9-5.4), GPIc and GPV. The membrane-bound fragments of GPIb, IIb and IIIa could be identified and also the supernatant fragments of GPIb and GPV. GPIIIa was also cleaved within a loop structure formed by disulfide bond(s). The fact that remnants of both GPIIb and IIIa are left on chymotrypsin-treated platelets which aggregate spontaneously with fibrinogen may indicate that a complex formed by these remnants constitutes the fibrinogen-binding site on platelets.

Adult

Prostaglandin E2-like activity of 20:3n-9 platelet lipoxygenase end-product.

5,8,11-Icosatrienoic acid (20:3n-9), a fatty acid associated with platelet hyperactivity, was oxygenated by platelet lipoxygenase. The end-product of this pathway was purified by high-performance liquid chromatography (HPLC) and characterized as 12-hydroxy-5,8,10-icosatrienoic acid [12-OH-20:3(5,8,10)] by capillary gas-liquid mass spectrometry. When tested upon platelet aggregation, 12-OH-20:3(5,8,10) exhibited a biphasic effect. At low concentrations (below 5 X 10(-7) M) it potentiated aggregation but inhibited it at higher levels, a pattern similar to that obtained with prostaglandin E2. However, since the amounts of 12-OH-20:3(5,8,10) generated under thrombin stimulation are in the range of concentrations with potentiating effects, it seems that the 12-OH derivative is responsible for the hyperaggrebility of 20:3n-9-rich platelets.

8,11,14-Eicosatrienoic Acid