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Biomedical subjects

M Diaz-Ricart

Publications and source records attributed to M Diaz-Ricart.

14 recordsLinked to original sources

New developments in thrombosis therapy.

Researchers presenting at the 16th International Congress on Thrombosis (Mediterranean League against Thromboembolic Disease), held May 58, 2000, in Porto, Portugal, reviewed the latest developments in the treatment of thrombosis. Several symposia focused attention on the new indications for low-molecular-weight heparins and provided updates on trials. The roles of tissue factor and tissue factor pathway inhibitor were extensively reviewed, and a number of late-stage developmental anticoagulants were presented.

Journal Article↗

Platelet concentrates prepared and stored under currently optimal conditions: minor impact on platelet adhesive and cohesive functions after storage.

BACKGROUND: The effect on platelets of two standard methods of platelet concentrate (PC) preparation was studied by flow cytometry. The findings were correlated with those obtained in an experimental in vitro perfusion model. STUDY DESIGN AND METHODS: PCs were prepared from whole blood by the platelet-rich plasma (PRP) or buffy coat (BC) method and placed on a flatbed platelet agitator at 22 degrees C for up to 5 days. Platelet glycoproteins (GP)lbalpha, GPIIb/IIIa, and GPIV, p-selectin and lysosomal integral membrane protein, and the binding of von Willebrand factor, fibrinogen, fibronectin, and coagulation factor Va were measured with the corresponding specific conjugated antibodies. Perfusions were carried out in an annular chamber with citrated blood depleted of platelets and white cells by filtration, to which samples from PCs were added. RESULTS: PRP-PC production provoked intense platelet activation. In contrast, in BC-derived PCs, platelet activation was milder, and only a significant increase in bound fibrinogen was seen. After 1 day of storage, differences between the methods that had been observed immediately after separation had almost disappeared. During the remaining storage period, increases in activation-dependent antigens and in procoagulant activity were measured. Of the studied platelet GPs, only GPIIIb/ IIIa decreased by 25 percent in PRP-PCs. Differences in covered surface were not significant in perfusion studies performed on Day 0 and after 5 days of storage in PRP-PCs (26.8 +/- 6.9 vs. 20.5 +/- 5.8) or BC-PCs (23.8 +/- 11 vs. 24.8 +/- 10.2). CONCLUSION: Platelet activation occurred during the separation and storage of PCs prepared by both methods, and it was higher in PRP-PCs only in samples obtained immediately after preparation. Despite these changes, platelet adhesive and cohesive functions were similar in both types of PCs and remained basically unchanged after storage.

Blood Platelets↗

Erythropoietin improves signaling through tyrosine phosphorylation in platelets from uremic patients.

Erythropoietin has shown to be effective in the correction of the hemostatic defect present in uremic patients. We have investigated the possible effect of recombinant human erythropoietin (rHuEPO) on the signaling processes occurring in platelets. Platelet suspensions were obtained from hemodialyzed patients before and after at least one month of initiating treatment with rHuEPO. Aliquots of non-activated or thrombin-activated platelets were treated to obtain platelet lysates or processed to extract platelet cytoskeleton. Samples were resolved by 8% SDS-polyacrylamide gel electrophoresis followed by Western blotting. After thrombin activation, proteins p120, p85, p78, p75, pp62, pp60, p59, p58, p56, p54 and p52 associated with the Triton-insoluble cytoskeletal fraction appeared phosphorylated in control profiles. In profiles from platelets obtained from uremic patients before treatment with rHuEPO, only proteins p58 and p56 appeared clearly and p54 was slightly phosphorylated. However, in platelets from the same patients under rHuEPO treatment, thrombin-induced phosphorylation improved to levels even above those observed in control profiles. Specially, the band at 54KDa appeared consistently more phosphorylated in all the patients under rHuEPO treatment. Although it is accepted that part of the hemostatic effect of erythropoietin is mediated by an increase in hematocrit, our study suggests that it enhances platelet signaling in uremic platelets which may explain the improvement of platelet response to activating stimulus before clinically noticeable elevation of hematocrit.

Aged↗

Cytoskeletal reorganization after preparation of platelet concentrates, using the buffy coat method, and during their storage.

BACKGROUND AND OBJECTIVE: The use of platelet transfusions has risen considerably in the last years. Changes occur in platelet biochemical and membrane properties during storage. We have analyzed the effect of platelet preparation and storage of platelet function through the evaluation of platelet cytoskeletal reorganization. METHODS: A blood sample was obtained from the donor and platelets were separated as standard platelet-rich plasma (PRP) (120 g, 20 min) (PRE sample). Aliquots were also collected immediately after preparation using buffy coat procedure of platelet concentrates (day 0) and after 1, 3 and 5 days of storage. Cytoskeleton composition in both low- and high-speed cytoskeletal fractions of detergent-lysed platelets was analyzed by gradient SDS-polyacrylamide gel electrophoresis (SDS-PAGE). Presence of each contractile protein was quantified by densitometry. RESULTS: The method used to prepare platelet concentrates induced actin polymerization (actin increased to 163.5 +/- 4.8%, mean +/- SEM, n = 8, p < 0.001, considering actin values in PRE sample as 100%) with a concurrent increase in the association of actin-binding protein (ABP), myosin and alpha-actinin to the low-speed cytoskeletal fraction. During the first 24 hours of storage, cytoskeletal assembly was partially reversed (134.8 +/- 2.6% of actin, p < 0.001) and actin polymerization increased gradually to 144.3 +/- 5.8% and 153.2 +/- 5.1% at days 3 and 5, respectively (p < 0.001 for both days). ABP, myosin and alpha-actinin showed similar tendencies to those referred for actin. Conversely, during platelet preparation and storage, the contractile proteins associated with the high-speed cytoskeletal fraction decreased, due to reorganization of the contractile proteins to the low speed fraction. INTERPRETATION AND CONCLUSIONS: The method used to prepare platelet concentrates (buffy coat procedure) induced cytoskeletal polymerization. This activating effect was partially reversed after 1 day of storage, although it increased progressively after 3 days of storage. The storage lesion may lead to defective cytoskeletal assembly in response to further stimulus. Analysis of cytoskeletal assembly is a sensitive method for detecting platelet activation caused by the concentrate preparation method and the storage conditions.

Actins↗

Analysis of the involvement of the von Willebrand factor-glycoprotein Ib interaction in platelet adhesion to a collagen-coated surface under flow conditions.

The requisite initial reaction for in vivo thrombus formation in flowing blood is platelet adhesion to the exposed surface of the extracellular matrix. The contribution of von Willebrand factor (vWF ) in plasma and glycoprotein (GP) Ib on the platelet membrane to platelet adhesion has been well-documented. We have recently developed a procedure (the "flow adhesion assay") for measuring platelet adhesion under flow conditions that allowed us to characterize platelet adhesion to a collagen-coated surface. Here, we apply our method to analyze platelet adhesion to a vWF-coated surface to determine how this might differ from adhesion to a collagen-coated surface. Platelet adhesion to the vWF-coated surface was monitored as the linear increase in the area occupied by adherent platelets. The fluorescence image showed that platelets adhering to the vWF surface were mainly single platelets, and if any were present, the platelet aggregates were small, this being the primary difference from the adhesion to a collagen surface, where adherent platelets were mostly in aggregates. The flow adhesion assay detected the movement of platelets on the vWF surface, suggesting the reversible binding of vWF with platelets. The velocity of the platelets increased at higher shear rates or at lower vWF densities on the surface. Treatment of the vWF-coated surface with the aggregating agent botrocetin before initiation of blood flow increased platelet adhesion while dramatically decreasing the velocity of platelet movement. The present observations on the adhesion of platelets to the vWF-pretreated collagen surface and measurements of the velocity of platelets moving on the collagen surface suggest that the first interaction on the collagen-coated surface is the binding of vWF molecules to the collagen surface. This small number of vWF molecules would serve to attract and slow platelets flowing near the surface. This would facilitate the actual adhesion to the collagen surface that is mainly generated by the interaction between platelet collagen receptors, including GP Ia/IIa and GP VI, with collagen.

Adsorption↗

Fibulin-1 mediates platelet adhesion via a bridge of fibrinogen.

Fibulin-1 is a component of the extracellular matrix that surrounds vascular smooth muscle. This observation, along with the recent finding that fibulin-1 can bind fibrinogen (J Biol Chem 270:19458, 1995), prompted investigation into the potential role of fibulin-1 as a thrombogenic agent. In perfusion chamber assays, platelets in whole blood under flow conditions attached and spread on surfaces coated with fibulin-1. This adhesion was completely blocked by fibulin-1 antibodies. Platelets free of plasma did not attach to fibulin-1 coated surfaces; however, with the addition of fibrinogen, platelet adhesion to fibulin-1 took place. When detergent extracts of platelets were subjected to fibulin-1-Sepharose affinity chromatography, the integrin alpha IIb beta 3 was selected. Solid phase binding assays using purified components showed that integrin alpha IIb beta 3 could not bind directly to fibulin-1 but in the presence of fibrinogen the integrin bound to fibulin-1-coated surfaces. Monoclonal alpha IIb beta 3 antibodies capable of blocking its interaction with fibrinogen completely blocked platelet adhesion to fibulin-1 in both whole blood perfusion and static adhesion assays. The results show that fibulin-1 can support platelet attachment via a bridge of fibrinogen to the platelet integrin alpha IIb beta 3. When fibroblast monolayers containing extracellular matrix-incorporated fibulin-1 were used as adhesion substrates, platelet adhesion in the presence of fibrinogen could be inhibited by 30% using antibodies to fibulin-1. Following vascular injury, fibulin-1 present in the extracellular matrix of the vessel wall may therefore interact with plasma fibrinogen and promote platelet adhesion, leading to the formation of a platelet plug. Thus, fibulin-1 joins the list of matrix proteins including collagens I and IV and fibronectin that mediate platelet adhesion via a plasma protein bridge. This bridging phenomenon may represent a general mechanism by which platelets interact with exposed subendothelial matrices following vascular injury.

Animals↗

Analysis of platelet adhesion to a collagen-coated surface under flow conditions: the involvement of glycoprotein VI in the platelet adhesion.

Platelet adhesion to the exposed surface of the extracellular matrix in flowing blood is the first and critical reaction for in vivo thrombus formation. However, the mechanism of this in vivo platelet adhesion has yet to be studied extensively. One of the reasons for this is the lack of a practical assay method for assessing platelet adhesion under flow conditions. We have devised an assay method (the fluorescent adhesion assay) that is based on the technique originally reported by Hubbell and McIntire (Biomaterials 7:354, 1986) with some modifications to make it more amenable for assaying small samples and have developed an analysis method to quantify the extent of platelet adhesion and aggregation from fluorescence images by using a computer-assisted image analysis system. In our assay, platelet adhesion, expressed as the percentage of the area covered by adhered platelets, was found to increase biphasically as a function of time. In the first phase, platelets interacted with the coated collagen, transiently stopping on the surface; we called this reaction the temporary arrest. In the second phase, platelets adhered much more rapidly and permanently on the surface, and this adhesion was dependent on the shear rate; platelets formed aggregates in this phase. We used our assay to analyze the effects of platelet aggregation inhibitors on platelet adhesion. All three examined inhibitors, EDTA (10 mmol/L), antiglycoprotein (GP) IIb/IIIa, and GRGDS peptide (1 mmol/L), inhibited the second phase adhesion in flowing blood. Furthermore, GPVI-deficient platelets also showed defective second-phase adhesion under the same conditions. These results suggested that GPIIb/IIIa activation and GPVI contribute to the reaction inducing the second phase. The second-phase adhesion has been extensively investigated, and the consensus is that this reaction is mainly attributable to the platelet-platelet interaction. In this report, we were able to detect an earlier reaction, the temporary arrest. This temporary arrest would reflect the fast and weak interaction between platelet GPIb/IX and collagen-von Willebrand factor complexes on the collagen-coated surface.

Blood Platelets↗

Inhibition of platelet adhesion to collagen by monoclonal anti-CD36 antibodies.

Monoclonal anti CD36 antibodies capable of inhibiting platelet adhesion to collagen have not previously been identified. We have now prepared two groups of monoclonal antibodies. One group was prepared using, as immunogen, highly purified (99+%) CD36 prepared by a denaturing procedure. These antibodies (Mo series) reacted strongly with CD36 on protein blots but did not immunoprecipitate native CD36 from platelet lysates nor inhibit platelet adhesion to collagen. The second group of monoclonal antibodies (131 series) was prepared using CD36 purified to >95% by a non-denaturing procedure. These antibodies reacted with control platelets, but not Nak(a)-negative platelets which lack CD36, as measured by flow cytometry and immunoprecipitation. Three monoclonal antibodies of this latter group (131.4, 131.5 and 131.7) inhibited platelet adhesion to collagen in static systems under Mg2+ -independent conditions but had lit tle effect in the presence of Mg2+. 131.4 and 131.7 also inhibited adhesion to collagen using citrated whole blood in a parallel plate flow chamber at physiological shear rates (800s-1), whereas 131.5 was without effect. These are the first anti-CD36 monoclonal antibodies shown to be capable of inhibiting platelet adhesion to collagen and provide further evidence that CD36 plays a role in platelet-collagen interaction.

Animals↗

Antibodies to CD36 (GPIV) inhibit platelet adhesion to subendothelial surfaces under flow conditions.

The membrane glycoprotein CD36 (glycoprotein [GP] IV) has previously been shown to accelerate the initial interaction of platelets with purified type I collagen in both static and flow systems. In the present study, the role of CD36 on platelet interaction with physiologically relevant collagenous surfaces was addressed. Using arterial subendothelium (SE) and endothelial cell extracellular matrix (ECM), studies were performed under flow conditions with annular and parallel-plate perfusion chambers, respectively, at a shear rate of 800 s-1 for 2, 5, and 10 minutes. Perfusates consisted of citrated normal blood samples incubated with Fab fragments of a monospecific polyclonal anti-CD36 antibody or with each of three new anti-CD36 monoclonal antibodies (MoAbs) that inhibit platelet adhesion to purified type I collagen in a static system (131.4, 131.5, and 131.7). Perfusions over SE were also carried out using citrated blood samples from a Naka-negative donor, whose platelets lack CD36. Morphometric evaluation of the perfused samples showed that polyclonal anti-CD36 Fab and the three monoclonal anti-CD36 antibodies inhibited platelet adhesion to the two substrates by 40% after 2 minutes of perfusion and by 30% after 5 minutes (P < .005 on SE and P < .01 on ECM), but at 10 minutes, significant inhibition was seen only on SE with polyclonal anti-CD36 Fab. Similar inhibitions were seen with Naka-negative platelets on SE. These studies demonstrate that CD36 plays a role in the early stages of platelet adhesion to physiologically relevant subendothelial surfaces.

Antibodies, Monoclonal↗

Talin does not associate exclusively with alpha 2b beta 3 integrin in activated human platelets.

Talin is a high-molecular-weight protein that may stabilize connections between cytoplasmic actin and the submembrane portion of glycoprotein IIb-IIIa (GPIIb-IIIa) (alpha 2b beta 3 integrin) in thrombin-stimulated human platelets. Using morphologic and electrophoretic techniques, we have examined the association of talin with the cytoskeleton of platelets activated by thrombin in the presence of fibrinogen-coated gold particles (Fgn/Au). Ultrastructural studies confirmed the presence of Fgn/Au firmly bound to the outside membranes of detergent-extracted platelets. Immunoblots of protein bands showed GPIIIa, but not talin, associated with cytoskeletons of activated platelets. Immunogold cytochemical techniques were performed on ultrathin cryosections of whole platelets to localize talin at the ultrastructural level. Studies were performed on normal platelets and platelets defective in GPIIb-IIIa (Glanzmann's thrombasthenia) and GPIb (Bernard-Soulier syndrome). Talin was randomly distributed in the cytoplasm of resting platelets. Activation resulted in binding of Fgn/Au to the surface membrane and redistribution of talin to the submembrane region. However, no definitive colocalization between the two markers was noted. Activated thrombasthenic platelets failed to bind Fgn/Au, but talin was localized to the submembrane location. After activation, talin was confined to the submembrane zone of Bernard-Soulier syndrome platelets. No definitive colocalization was observed between large clusters of Fgn/Au-occupied receptors and talin distributed in the submembrane region. GPIb and GPIIb-IIIa are not necessary for talin to localize in the submembrane region of activated cells. Talin does not redistribute exclusively with GPIIb-IIIa, and it may stabilize connections with other glycoproteins.

Blood Platelets↗

Two human antibodies reacting with different epitopes on integrin beta 3 of platelets and endothelial cells.

Glanzmann's thrombasthenia is an inherited bleeding disorder that results from a deficit of glycoprotein (GP) IIb-IIIa complexes in platelets. Patient (EBV) is an adult male with GP IIb-IIIa levels < 5% of normal values and a history of blood transfusions. Western-blot analysis revealed a strong IgG antibody to GP IIIa in his plasma. The determinants were localized to the minimum-sized fragment of GP IIIa (50 kDa) retained on chymotrypsin-treated platelets and were lost on reduction of disulphides. A female patient (AF), previously described by us [Jallu, V., Pico, M., Chevaleyre, J., Vezon, G., Kunicki, T.J. & Nurden, A.T. (1992) Hum. Antibod. Hybridomas 3, 93-106] developed her anti-GP-IIIa antibody during pregnancy. This antibody was poorly reactive with the 50-kDa proteolytic fragment, yet bound to 115-kDa and 60-kDa hydrolytic products of GP IIIa. Antibodies from both patients recognized the GP-IIIa-like protein of endothelial cells, thus confirming that they were directed against the integrin beta 3-subunit. The (EBV) antibody reacted strongly with GP IIb-IIIa in an antigen capture assay performed with each of a panel of four murine monoclonal antibodies (mAbs) recognizing different epitopes on GP IIb-IIIa. In contrast, that from (AF) was specifically inhibited by AP-3, a murine mAb whose epitope is thought to be localized between amino acids 324-422 of GP IIIa. The residual GP IIb and GP IIIa contents of platelets from each patient were assessed in Western blotting using chemiluminescence detection. SZ-22, a murine mAb to the GP IIb heavy chain (140 kDa), located small amounts of a 130-kDa protein in (EBV) platelets. The anti-GP IIIa mAbs XII F9, P 37 and P 97 revealed trace amounts of protein with a relative mobility identical to that of GP IIIa in both (AF) and (EBV) platelets. This residual GP IIIa represented less than 0.5% of the amount in normal platelets. When, for each patient, plasma was tested in Western blotting against their own platelets, autoantibody activity to the residual GP IIIa was detected in both cases. Thus, patients (AF) and (EBV) have developed anti-GP-IIIa antibodies with restricted and distinct epitopes but recognizing self antigens.

Antigen-Antibody Reactions↗

Platelets lacking functional CD36 (glycoprotein IV) show reduced adhesion to collagen in flowing whole blood.

A parallel-plate perfusion chamber has been used to evaluate the contribution of the adhesive membrane glycoprotein CD36 (GPIV) to platelet adhesion on type I collagen in flowing whole blood at a shear rate of 800 s-1. In one series of experiments, reconstituted normal blood (hematocrit 0.4; platelet count 1.5 x 10(5)/microL) was prepared from washed red blood cells, plasma, and washed platelets that had been incubated with Fab fragments of a monospecific polyclonal anti-CD36 antibody (50 micrograms/mL, 30 minutes, 37 degrees C). Percent surface coverage of collagen-coated coverslips using reconstituted blood with antibody-blocked platelets, as compared with paired reconstituted controls (100%), was 50% at 2 minutes, 87% at 5 minutes, and 90% at 10 minutes. Further studies were performed by perfusion of whole blood from a healthy donor of the Naka-negative phenotype, whose platelets constitutively lack CD36, over collagen-coated coverslips. In this case, percent surface coverage was 55% of normal controls at 2 minutes, 76% of controls at 5 minutes, and 72% of controls at 10 minutes. In both preparations, platelets lacking functional CD36 had a statistically significant decrease (P < .005) in adhesion after 2 minutes and 10 minutes perfusion but not at 5 minutes. These results show that functional CD36 facilitates the rapid adhesion of platelets to collagen and that this effect is seen at the earliest time points of their interaction.

Antibodies↗

A variant of Glanzmann's thrombasthenia which fails to express a GPIIb-IIIa related epitope that is recognized by a specific monoclonal antibody (C17).

Binding of different antibodies to the GPIIb-IIIa complex in resting (AP2, EDU3, C17) or activated platelets (PAC1) was studied by flow cytometry in a patient with a platelet defect involving GPIIb-IIIa related functions. The patient has a mild history of bleeding. Aggregation induced by ADP and collagen were absent but normal response was obtained with ristocetin. Platelets from the patient do not bind fibrinogen. Perfusion studies with flowing blood showed that patient's platelets have a marked impairment in the process of spreading and aggregate formation on vascular subendothelium. Electrophoretic studies in SDS-polyacrylamide gels demonstrated the presence of normal amounts and normal mobility of GPIIb-IIIa. Fibrinogen was present in the patient's platelets (68-74% of controls). The binding of AP2 and EDU3 to patient's resting platelets was normal as assessed by flow cytometry. In contrast, a decreased presence of the C17 antigen (10 fold lower than control platelets) was detected in resting platelets and a markedly reduced binding of PAC1 was found in thrombin activated platelets. These studies suggest that C17 recognizes an epitope of the GPIIb-IIIa in resting platelets that is implicated in the regulation of adhesive and cohesive properties of GPIIb-IIIa. Studies on this patient might be helpful for the understanding of GPIIb-IIIa functions.

Adenosine Diphosphate↗

The role of subendothelial laminin and platelet laminin receptors in haemostasis.

Laminin (LM) is a basement membrane glyco-protein which exhibits a number of biological activities, including the promotion of cell attachment and migration. In a static system, platelets attach to LM without spreading. In order to elucidate the mechanisms mediating platelet-LM interactions under flow conditions, we studied the effects of blocking subendothelial LM and its platelet receptor. We measured the extent of platelet adhesion to the endothelial cell extracellular matrix (ECM) using a parallel plate perfusion chamber. To do this, we performed the following experiments: i) blockade of subendothelial LM by incubation of ECM with an anti-LM antibody (Ab); ii) blockade of the platelet receptor for LM with: a) an anti-67 KDa receptor Ab; and b) three different LM-derived peptides (CFALRGDNP, IKVAV and CDPGYIGSR). In i) perfusates consisted of whole blood, whereas in ii) perfusates were prepared with washed platelets pre-incubated with Ab or peptides and reconstituted with plasma and washed red blood cells. Perfusions were carried out at 800 s-1 shear rate. Platelet deposition was morphometrically evaluated by a computerized system. Our results indicated that when ECM was pre-incubated with an anti-LM Ab (100 micrograms/ml, 30 min, 37 degrees C) a reduction of the surface coverage (SC) of 23.3 +/- 2.3% (p less than 0.01) was observed. When washed platelets were pre-incubated with an anti-67 KDa receptor Ab (40 micrograms/ml, 30 min, 37 degrees C) their interaction with ECM was decreased by 22.3 +/- 2.1% of SC (p less than 0.005). In other experiments platelets were pre-incubated with CFALRGDNP, IKVAV and CDPGYIGSR (200 micrograms/ml, 30 min, 37 degrees C).(ABSTRACT TRUNCATED AT 250 WORDS)

Amino Acid Sequence↗