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Nitric oxide and platelet aggregation.

Platelets are small cells, 1/14th the volume of erythrocytes, and about 1000 billion circulate in human blood as smooth anucleate disks. Their job is to survey the lining of our blood vessels, the endothelium. In acute damage and extravasation, platelets are activated by contact with exposed collagen and aggregate together at the wound sites to initiate clotting and stop bleeding. Forming a physical plug to seal a hemorrhaging vessel is the key role of blood platelets. However, milder injury to the endothelium, perhaps a result of high blood pressure, raised plasma cholesterol, or smoking, also causes platelets to adhere to the internal walls of arteries. Such precipitate adhesion and activation of platelets initiates an inflammatory response of the vessel wall and predisposes to vascular complications, including thrombosis, premature heart disease, myocardial infarcts or strokes, and diabetes. It is essential, therefore, that during normal vascular hemostasis platelet activation is tightly controlled. Indeed, both platelets and endothelial cells produce and secrete chemicals that directly inhibit platelet aggregation. A key agent is the free radical gas nitric oxide (NO). Here, we review how this 30-Da molecular messenger is synthesized by a catalytic cassette 10,000 times larger and how it functions to suppress platelet "stickiness." We also present new evidence that directly links plasma lipoproteins with platelet activation: we describe at the molecular level how apoE, a protein with a prominent role in cholesterol transport, interacts with the platelet surface to stimulate NO production and hence attenuate platelet activation.

Apolipoproteins E↗

Contribution of ADP to the amplification of primary platelet aggregation by platelet activating factor (PAF): modulatory role of aspirin.

Platelet Activating Factor (PAF)-induced human platelet aggregation in citrated plasma is accompanied by activation of the cyclo-oxygenase pathway and release of intracellular constituents including Adenosine-5'-diphosphate (ADP). Inhibition of the cyclo-oxygenase pathway by aspirin prevented the amplification of primary platelet aggregation induced by threshold concentrations of PAF. Removal of ADP by enzymatic systems had little or no effect on PAF-induced full aggregation, but reversed the aggregating effect of PAF (at 10 times threshold concentrations) on 'aspirinated' platelets. Aspirin also prevented the synergism between PAF and ADP when subthreshold concentrations of both compounds were combined. Similar results were obtained in heparinized platelet-rich plasma. Thus, ADP may amplify the primary response to PAF but its role is modulated by the availability of the cyclo-oxygenase pathway products.

Adenosine Diphosphate↗

Platelet aggregation and platelet sensitivity-behaviour during normal and abnormal glucose tolerance testing.

Platelet aggregation response to ADP and platelet sensitivity to the antiaggregatory prostaglandin I2 (PGI2) were measured in 15 patients and 8 healthy volunteers undergoing intravenous glucose tolerance testing (GTT). Eight patients (5 female, 3 male, 44-57a) showed pathological GTT, in 7 patients (6 female, 1 male, 39-55a) and the healthy volunteers (6 female, 2 male, 24-39a) a normal response was monitored. After GTT in patients with pathological GTT the slope of the ADP-induced aggregation curve was diminished showing high variations, whereas the height of the aggregation curve remained unaltered. The platelet sensitivity to PGI2 was significantly (p less than 0.05) decreased during the performance of GTT and returned to prevalues until the end of GTT. In the patients as well as in the healthy volunteers with normal GTT no change could be monitored during the test. However, healthy volunteers showed significant (p less than 0.05) lower prevalues. The findings indicate, that an abnormal glucose tolerance is associated with a decreased platelet sensitivity to PGI2.

Adult↗

Characterization of 25 monoclonal antibodies to factor VIII-von Willebrand factor: relationship between ristocetin-induced platelet aggregation and platelet adherence to subendothelium.

We have studied the role of factor VIII-von Willebrand factor (FVIII-vWF) in both platelet adherence to subendothelium and ristocetin-induced platelet aggregation using monoclonal antibodies to human FVIII-vWF. Twenty-five monoclonal antibodies were obtained, two of which were directed to the factor VIII moiety of FVIII-vWF; one of these two completely inhibited the procoagulant activity (FVIII:C). The remaining 23 monoclonal antibodies were directed to the von Willebrand factor moiety of FVIII-vWF. The ability of the latter monoclonal antibodies to inhibit platelet adherence to arterial subendothelium was investigated with a perfusion model. According to the number of platelets adhering to the subendothelium, three groups of monoclonal antibodies could be discerned: (A) antibodies not affecting platelet adherence; (B) antibodies that inhibited platelet adherence to the level as observed when von Willebrand's disease plasma was tested; and (C) antibodies that completely inhibited both platelet adherence to subendothelium and ristocetin-induced platelet aggregation. The two antibodies present in group C competed for the same or closely related epitope(s) present on FVIII-vWF. These results demonstrate that a domain is present on the FVIII-vWF molecule that is associated both with ristocetin-induced aggregation and with the ability of FVIII-vWF to support platelet adherence to the subendothelium. Based on these observations, it is concluded that ristocetin-induced binding of FVIII-vWF to platelets reflects, at least in part, a physiologic mechanism regulating the function of FVIII-vWF in primary hemostasis.

Antibodies, Monoclonal↗

Small GTPase Rho regulates thrombin-induced platelet aggregation.

Platelets play essential roles in hemostasis and thrombosis by aggregating with each other. However, the molecular mechanism governing platelet aggregation is not yet fully understood. Here, we established an assay system using platelets permeabilized with streptolysin-O to analyze mechanism of the thrombin-induced aggregation, focusing upon a controversial issue in the field whether small GTPase Rho regulates the aggregation. Incubation of the permeabilized platelets with Rho GDP-dissociation inhibitor, an inhibitory regulator for Rho family GTPases, extracted Rho family proteins extensively from the plasma and intracellular membranes, and inhibited the thrombin-induced aggregation. Incubation of the permeabilized platelets with botulinum exoenzyme C3, which specifically inhibits Rho function by ADP-ribosylating it, abolished the thrombin-induced aggregation. Thus, Rho is involved in thrombin-induced aggregation of platelets.

ADP Ribose Transferases↗

Androgen-mediated sensitivity in platelet aggregation.

Platelet responsiveness to an aggregating stimulus (ADP) was greater (X10) in male than in female rats. Castration reduced aggregability in males (X4) and increased it in females (X3). Pretreatment with testosterone (1 mg/kg, sc) enhanced platelet aggregability in both sexes and restored the diminished responsivity observed in castrated males. Incubation of platelets with testosterone (1-10 ng/ml) potentiated rat (18.0 +/- 1.5%) and guinea pig (40.0 +/- 5.0%) aggregability when compared with vehicle-treated platelets. Estradiol (1 mg/kg, sc) in vivo or estradiol, progesterone, and deoxycorticosterone (1 microng/ml) in vitro had the opposite effect and decreased aggregability. The rank order of effectiveness of androgens in vitro was dihydrotestosterone, testosterone, methyltestosterone, androstendione, and androsterone, which correlates with their androgenicity. The effect of androgens was antagonized in vitro by the antiandrogen (Flutamide) and by estradiol. These data suggest that gonadal steroids may play a role in regulating platelet function in the rat and guinea pig.

Adenosine Diphosphate↗

[Platelet aggregation and platelet and plasma fatty acid levels in the child with migraine. Apropos of 40 case reports].

The authors have studied platelet aggregability in the presence of ADP and collagen in a population of 40 migrainous children between migraine attacks. They completed their investigations by a qualitative dosage in platelets and in plasma of fatty acids, precursors of prostaglandins, which are well known for their importance in platelet aggregation and vasculomotor reactions. This study was made in comparison with an equal number of controls chosen from the same age-groups. The authors didn't find the hyperaggregability observed by other authors in grown-up populations. They noticed a light-but statistically significant-diminution of linoleic acid in the platelets and in the plasma. A study based on observations does not entirely confirm for certain an alimentary origin.

Adolescent↗

Effect of ethanol on vascular prostacyclin (prostaglandin I2) synthesis, platelet aggregation, and platelet thromboxane release.

A series of experiments with platelets from healthy volunteers showed a concentration related inhibitory effect of ethanol on platelet aggregation and release of thromboxane A2. This effect was observed at blood alcohol concentrations ranging between 66 and 132 mg/dl (14.3 and 28.6 mmol/l), which are commonly found in alcoholics. Investigations carried out by incubating ethanol with platelet rich plasma in vitro also showed an inverse linear correlation between ethanol concentration and platelet thromboxane synthesis. In contrast, the incubation of a wide range of concentrations of ethanol with human endothelial cells and rat aortic rings did not alter the ability of these systems to synthesise prostacyclin (prostaglandin I2). This finding of a selective inhibition of thromboxane A2 synthesis and platelet aggregation without an alteration of prostaglandin I2 synthesis may provide an explanation for the reported ethanol mediated protection against vascular disease. This effect of ethanol may also be relevant to the induction of acute gastrointestinal haemorrhage that occurs after bouts of excessive alcohol consumption.

Adenosine Diphosphate↗

Platelet aggregation in platelet rich plasma and whole blood in 18 patients affected by idiopathic myelofibrosis.

Platelet aggregation in whole blood (WB) and in platelet rich plasma (PRP) was studied in 18 consecutive patients affected by idiopathic myelofibrosis (IM). On the basis of WB studies, 22% of patients were classified as normo-aggregating and 22% as hypo-aggregating, while 55% had spontaneous platelet aggregation (SPA). SPA was observed also when platelets from patients were stirred in the presence of normal erythrocytes, while it never occurred when normal platelets were stirred in the presence of red cells from patients. PRP studies revealed that 33% and 66% of patients were, respectively, hypo- and normo-aggregating. The most frequent abnormality in PRP was represented by defective or absent aggregation response to epinephrine.

Adenosine Diphosphate↗

Marathon run II: Effects on platelet aggregation.

Platelet count and aggregation were assessed in 9 Finnish amateur runners aged 34 to 48, and one 65-year old taking part in a non-competitive marathon race (42.2 km). After the run the mean value of platelet count showed a very significant rise (p less than 0.001). The platelets were markedly more sensitive to both ADP and collagen-induced aggregation. A highly significant increase (p less than 0.001) was noted for both the intensity and velocity of platelet aggregation. The finding of platelet by hyperaggregability after prolonged strenous exercise even in trained subjects is discussed. It is concluded that a through medical examination of the haemostatic balance is recommended before a marathon race.

Adenosine Diphosphate↗

[Platelet aggregation and platelet activating factor (author's transl)].

Platelet aggregation is triggered by at least three distinct pathways. The first one is mediated by adenosine diphosphate, the second one by arachidonic acid metabolites and the third is defined somehow by exclusion of the first two. In fact rabbit platelets synthesize, during their activation, another substance with potent aggregating activity, namely platelet-activating factor or PAF-acether. Indirect pieces of evidence are presented, which suggest that PAF-acether is the mediator of the third pathway of platelet aggregation.

Animals↗

Effects of a snake venom metalloproteinase, triflamp, on platelet aggregation, platelet-neutrophil and neutrophil-neutrophil interactions: involvement of platelet GPIbalpha and neutrophil PSGL-1.

The biologically active components from Viperidae venoms specifically affect cell-matrix interactions, and have been utilized for developing anti-adhesive therapy as anti-thrombotic and anti-angiogenic agents. Utilizing platelet aggregometry coupled with flow cytometry, we found that a metalloproteinase isolated from Trimeresurus flavoviridis, termed triflamp, inhibited heterotypic adhesion between platelets and neutrophils in whole blood samples. Triflamp is a monomeric glycoprotein with a molecular weight of approximately 28 kDa. Triflamp has a N-terminal amino acid sequence homologous to other venom metalloproteinases isolated from T. flavoviridis. The enzymatic activity of triflamp was inhibited by EDTA and phenanthroline but not by PMSF. Moreover, triflamp is a pure alpha-fibrinogenase. Studies aimed at determining the nature of triflamp in affecting platelets or neutrophils revealed a selective inhibitory activity to glycoprotein (GP) Ibalpha-dependent platelet aggregation and PSGL-1-dependent neutrophil homotypic aggregation, indicating that its effects are rather specific. As judged by Western blotting, GPIbalpha on platelets and PSGL-1 on neutrophils are the substrates of triflamp. In conclusion, we suggest the novel role of venom metalloproteinase from Viperidae affecting the blood cell-cell interactions, thus offering a potential approach for further exploration of anti-inflammatory agents.

Animals↗

Heparin-induced platelet aggregation vs platelet factor 4 enzyme-linked immunosorbent assay in the diagnosis of heparin-induced thrombocytopenia-thrombosis.

Thrombosis occurs in an unpredictable subset of patients with heparin-induced thrombocytopenia (HIT). The diagnosis of HIT requires clinical suspicion and laboratory confirmation. Although the "gold-standard" diagnostic test is considered to be the serotonin release assay (SRA), most laboratories use heparin-induced platelet aggregation (HIPA), which is highly specific but reported to be less sensitive than the SRA. Recently, the heparin-platelet factor 4 (PF4) enzyme-linked immunosorbent assay (ELISA) has been reported to have comparable sensitivity to the SRA. We compared the HIPA and PF4 ELISA in serum samples from 146 patients examined for HIT and assessed whether either test predicted thrombotic risk. Results for 81 patients were positive for HIPA, PF4 ELISA, or both. Of these, 91% were HIPA-positive, while only 60% were PF4 ELISA-positive. Clinical information was available on 63 patients, 17 of whom had thrombotic events (10 venous, 6 arterial, and 1 both). Neither the HIPA nor the PF4 ELISA predicted thrombotic risk, but the HIPA proved to be a more sensitive test for laboratory confirmation.

Enzyme-Linked Immunosorbent Assay↗

Coordinated inhibition of actin-induced platelet aggregation by plasma gelsolin and vitamin D-binding protein.

Actin is an abundant intracellular protein that is released into the blood during tissue injury and its injection into rats causes microthrombi to form in the vasculature. This report and others have shown that actin filaments are able to aggregate platelets in an adenosine diphosphate (ADP)-dependent manner. The effects on this process of two plasma actin-binding proteins, vitamin D-binding protein (DBP) and gelsolin, were examined separately and together. The addition of DBP, a monomer-binding protein, to actin filaments did not affect their ability to induce platelet aggregation. However, severing of actin filaments with gelsolin resulted in an increased degree of platelet aggregation. Preincubation of F-actin with both gelsolin and DBP resulted in a significant inhibition of aggregation. The effects of DBP and gelsolin on actin-induced aggregation paralleled their effects on exchange of actin-bound adenine nucleotides. DBP inhibited 1, N6-ethenoadenosine 5' triphosphate (epsilon-ATP) exchange with G-actin but not with F-actin. Gelsolin increased epsilon-ATP exchange with F-actin, which was largely abrogated by the addition of DBP. These results suggest that gelsolin's severing (and subsequent capping) of actin filaments not only results in an increase in the number of pointed filament ends but also in the dissociation of actin monomers containing ADP. Phalloidin, which stabilizes actin filaments while decreasing both monomer and nucleotide exchange, inhibited actin-induced aggregation, as well, indicating that depolymerization of actin filaments is not required to inhibit aggregation. Platelet activation by either G- or F-actin may thus be regulated by the local concentrations of the plasma actin-binding proteins gelsolin and DBP. Together, these proteins inhibit platelet aggregation in a manner that can be explained by their effects on actin's filament structure and the accessibility of its bound ADP. Depletion of DBP or gelsolin may allow actin released from injured tissues to stimulate purinergic receptors on platelets, and perhaps other cells, via its bound adenine nucleotides.

Actins↗

Antibodies against platelet membrane glycoproteins. I. Crossed immunoelectrophoresis studies with antibodies that inhibit ristocetin-induced platelet aggregation.

Platelet membrane glycoproteins have been isolated by lectin-affinity chromatography and antibodies prepared against them. Platelets that have lost glycocalicin no longer respond to ristocetin-human VIIIR:WF, bovine VIIIR:WF, or to glycocalicin or glycoproteins Ia and Ib antibodies but are still agglutinated by glycoproteins IIb and IIIa antibodies. Glycoproteins Ia and Ib and glycocalicin antibodies, IgG and Fab' fragments, inhibited ristocetin-human VIIIR:WF-induced aggregation of fixed, washed platelets and of platelets in plasma while glycoproteins IIb and IIIa antibodies were without effect. Cross immunoelectrophoretic studies showed that glycocalicin was present on whole platelets in only trace amounts. Glycocalicin antibodies, however, recognized a slower migrating component. Platelets incubated in an EDTA-free medium no longer respond to ristocetin-human VIIIR:WF. Membranes isolated from such platelets contained glycocalicin which cross-reacted with a remnant of the slower migrating component. Glycoproteins Ia and Ib antibodies gave more complex patterns but it was possible to identify the slower moving component recognized by the glycocalicin antibodies. These results show that glycocalicin is not normally found as such on whole platelets but is present as a precursor which is most likely glycoprotein Ib. On degradation of this precursor, glycocalicin is released from the membrane and VIIIR:WF-receptor activity is lost.

Animals↗

[Studies of platelet aggregation in six cases of EDTA-dependent pseudothrombocytopenia].

Peripheral blood count was performed by a Coulter Model S Plus STKR on six pseudothrombocytopenia patients (age: 16-70, 2 men and 4 women) using three different anticoagulants. Treatment with ethylene diamine tetraacetate (EDTA, 1 mg/ml) or sodium heparin (25 U/ml) aggregated platelets, but sodium citrate (3.8%, 1:9) had no effect. Smear examination revealed much platelet clumping but the satellite phenomenon was not present. No specific pattern was elucidated concerning cell size distribution curves between treatment by EDTA and heparin. Theophylline (10 mg/ml) and prostaglandin I2 (1 microM) inhibited EDTA-induced platelet aggregation but aspirin (1.8 mM) did not. On the other hand, these three substances inhibited heparin-induced platelet aggregation. These findings, taken together, suggested that EDTA and heparin initiated platelet activation and EDTA-induced platelet aggregation might be a process unrelated to thromboxane A2 production. Heparin may not be a suitable anticoagulant since it aggregates platelets of some healthy individuals.

Adolescent↗

Effects of streptokinase, urokinase, and recombinant tissue plasminogen activator on platelet aggregability and stability of platelet aggregates.

STUDY OBJECTIVE: The aim of the study was to evaluate the effects of streptokinase, urokinase and recombinant tissue plasminogen activator (TPA) on platelet aggregability and metabolism and the stability of preformed platelet aggregates. DESIGN: The experiments (n = 15 for each condition) were performed on citrated plasma or on platelet suspensions in phosphate buffered saline, both with a standardised platelet count of 250 x 10(9).litre-1. SUBJECTS: were healthy volunteers. MEASUREMENTS AND MAIN RESULTS: With both ADP (1 mumol.litre-1) and collagen (1 mg.litre-1) as aggregating agents, streptokinase at greater than or equal to 10(5) units.litre-1 led to reduction in the rate of platelet aggregation. With collagen and in most instances with ADP, this was associated with a decreased extent of aggregation, though in five out of 30 cases with ADP as aggregating agent, a conversion from reversible to irreversible aggregation occurred with streptokinase. Urokinase inhibited platelet aggregation at greater than or equal to 3 x 10(5) units.litre-1 with both aggregating agents. TPA inhibited aggregation at greater than or equal to 1 mg.litre-1 with ADP and at greater than or equal to 3.3 mg.litre-1 with collagen as aggregating agent. The inhibitory effect was still present when the platelets were suspended in saline. Platelet synthesis of thromboxane on stimulation with collagen, and of c-AMP on stimulation with prostaglandin E1, was markedly reduced by either agent. The stability of platelet aggregates, as assessed photometrically during a 90 min exposure to stirring stress, increased when streptokinase or urokinase was added to platelet rich plasma, but remained uninfluenced with TPA. CONCLUSIONS: Urokinase and TPA inhibited platelet aggregability uniformly and in a dose dependent manner. Streptokinase inhibited platelet aggregation in most instances, but led to a stimulation of aggregation in a minority of cases. These effects of the thrombolytic agents on platelets might have an influence on the occurrence of bleeding and of reocclusion after thrombolytic therapy.

Adenosine Diphosphate↗

Evidence of enhanced platelet aggregation and platelet sensitivity in migraine patients.

In fourteen untreated migraine patients with a mean age of 40 years platelet sensitivity to 5HT, EN and ADP was investigated during the prodromal phase (three patients), 12-48 h after headache (three patients) and during the headache-free period (eight patients). Platelet sensitivity was tested using an optical density method and was calculated by the percentage of disaggregation (%DA) occurring 3 min after the peak aggregation. Platelet release reaction was assessed using beta-thromboglobulin (beta-TG) as an indicator. Platelet sensitivity to low concentrations of 5HT, EN and ADP (0.3 X 10(-9) M/ml) was most marked during the headache and prodromal phases. The least platelet sensitivity in migraineurs was detected during the headache-free interval, but was still higher than in the control group. beta-TG levels were increased during the headache phase indicating platelet release reaction. A general hyperaggregability of platelets in migraineurs has been demonstrated and in addition a varying sensibility of platelets to low concentrations of 5HT, EN and ADP has been established.

5-Hydroxytryptophan↗