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Circulating aggregated platelets, number of platelets per aggregate and platelet size in chronic dialysis patients.

The accelerated arteriosclerosis of chronic dialysis patients is multifactorial. Both non-uremic patients with atherosclerosis and uremic patients have functional platelet abnormalities. Our aim was to study platelet function in chronic dialysis patients and to correlate the findings with the presence of cardiovascular morbidity. Fifty-three chronic dialysis patients were examined. The presence of risk factors for cardiovascular disease (CVD) was recorded, and the patients were examined for the presence of ischemic heart disease, peripheral vascular disease and cerebrovascular accident. The parameters of platelet function, which were examined with the modified Wu and Hoak method, included platelet number, percentage of totally, reversibly and irreversibly aggregated platelets, average number of platelets per aggregate and percentage of large platelets. Significant differences were found between totally aggregated platelets, reversibly and irreversibly aggregated platelets, the percentage of large platelets (p < 0.0001) and the average number of platelets per aggregate (p < 0.001) in dialysis patients compared with control persons. There was no difference between the 2 groups in platelet count. No differences were found between hemodialysis and peritoneal dialysis groups, and the duration of dialysis treatment had no effect. We conclude that platelet abnormalities evident in chronic dialysis patients are a part of the multifactorial etiology of advanced CVD and may predispose dialysis patients to CVD.

Arteriosclerosis

Morphological changes of platelets during the process of platelet aggregation in gray platelet syndrome.

Morphological changes of platelets during the process of platelet aggregation in gray platelet syndrome were observed by means of light microscopy, and scanning and transmission electronmicroscopy. Light microscopic examinations showed normal platelets and slightly enlarged, gray colored ones due to a deficiency in alpha-granules by May-Giemsa stain. At the time of maximum aggregation, normal platelets aggregated completely to form a mass by addition of ADP. On the other hand, patient's platelets only aggregated loosely and each platelet could be recognized separately, resembling primary aggregation of normal platelets. When collagen was added, almost no aggregation was noted in the patient's platelets. Scanning electronmicroscopic examinations revealed the same results as seen by light microscopy. Centralization of platelet organelles and almost complete aggregation and degranulation of platelets were noted immediately after 30 sec and 3-4 min after addition of ADP and collagen on the transmission electronmicrographs in normal platelets, whereas most patient's platelets remained to be unchanged. From these results, we concluded that these morphological changes were consistent with the changes of "release abnormalities" as shown in the functional examinations. Although some relationships between alpha-granule deficiency and functional abnormalities are considered, there is no definitive opinion.

Adenosine Diphosphate

[Congenital anomalies of the human blood platelet, models for understanding mechanisms of platelet secretion: gray platelet disease].

The fundamental role of different platelet glycoproteins and proteins in platelet function is well known. Glycoproteins II b and III a, missing from platelets of patients with Glanzmann's thrombasthenia, appear to play a role in the mechanism of platelet cohesion. Platelet adhesion to sub-endothelium components depends on the binding of von Willebrand factor to the platelet membrane and this is defective in the Bernard Soulier syndrome which is characterised by the absence from the platelets of membrane glycoprotein Ib. The gray platelet syndrome is a new platelet disorder characterized by the absence of alpha granules and a reduced platelet aggregation response associated with an abnormal dense body section. Analysis of the protein and glycoprotein content of gray platelets has shown that they lack or have markedly reduced concentrations of the alpha granule proteins. It would appear that proteins secreted from the alpha granules may play a role during the later stages of platelet secretion leading to platelet aggregation.

Blood Platelet Disorders

Assembly of the platelet prothrombinase complex is linked to vesiculation of the platelet plasma membrane. Studies in Scott syndrome: an isolated defect in platelet procoagulant activity.

Activation of human platelets by complement proteins C5b-9 is accompanied by the release of small plasma membrane vesicles (microparticles) that are highly enriched in binding sites for coagulation factor Va and exhibit prothrombinase activity. We have now examined whether assembly of the prothrombinase enzyme complex (factors VaXa) is directly linked to the process of microparticle formation. Gel-filtered platelets were incubated without stirring with various agonists at 37 degrees C, and the functional expression of cell surface receptors on platelets and on shed microparticles was analyzed using specific monoclonal antibodies and fluorescence-gated flow cytometry. In addition to the C5b-9 proteins, thrombin, collagen, and the calcium ionophore A23187 were each found to induce formation of platelet microparticles that incorporated plasma membrane glycoproteins GP Ib, IIb, and IIIa. These microparticles were enriched in binding sites for factor Va, and their formation paralleled the expression of catalytic surface for the prothrombinase enzyme complex. Little or no microparticle release or prothrombinase activity were observed when platelets were stimulated with epinephrine and ADP, despite exposure of platelet fibrinogen receptors by these agonists. When platelets were exposed to thrombin plus collagen, the shed microparticles contained activated GP IIb-IIIa complexes that bound fibrinogen. By contrast, GP IIb-IIIa incorporated into C5b-9 induced microparticles did not express fibrinogen receptor function. Platelets from a patient with an isolated defect in inducible procoagulant activity (Scott syndrome) were found to be markedly impaired in their capacity to generate microparticles in response to all platelet activators, and this was accompanied by a comparable decrease in the number and function of inducible factor Va receptors. Taken together, these data indicate that the exposure of the platelet factor Va receptor is directly coupled to plasma membrane vesiculation and that this event can be dissociated from other activation-dependent platelet responses. Since a catalytic membrane surface is required for optimal thrombin generation, platelet microparticle formation may play a role in the normal hemostatic response to vascular injury.

Antibodies, Monoclonal

Deficiency of (33P)2MeS-ADP binding sites on platelets with secretion defect, normal granule stores and normal thromboxane A2 production. Evidence that ADP potentiates platelet secretion independently of the formation of large platelet aggregates and thromboxane A2 production.

By the term "Primary Secretion Defect" (PSD), we mean a common heterogeneous group of congenital defects of platelet secretion, characterized by a normal primary wave of platelet aggregation induced by ADP and other agonists, a normal concentration of platelet granule contents, and normal production of thromboxane A2. The biochemical abnormalities responsible for PSD are not well known. Since a secretion defect similar to PSD is found in platelets that are severely deficient of binding sites for the ADP analogue 2MeS-ADP and do not aggregate in response to ADP, we tested the hypothesis that PSD platelets have moderately decreased 2MeS-ADP binding sites, which may be sufficient for normal ADP-induced aggregation but not for potentiating platelet secretion. The specific binding of [33P]2MeS-ADP to platelets from 3 PSD patients (347, 443 and 490 sites/platelet; KD 2.8-3.9 nM) was lower than to platelets from 24 normal subjects (647 [530-1102]; KD = 3.8 [2.3-7.3]) (median [range]). Normal values were found in a fourth PSD patient (710; KD 3.7). The degree of inhibition of PGE1-induced cAMP increase by 0.1 microM ADP was lower in patients than in controls. The secretion induced by the endoperoxide analogue U46619 from normal, acetylsalicylic acid-treated platelets under conditions that prevented the formation of large aggregates was potentiated by 1 mumol/l ADP and inhibited by apyrase. These findings indicate that a partial deficiency of the platelet ADP receptor(s) might be responsible for the defect of platelet secretion in some PSD patients and that ADP potentiates platelet secretion independently of the formation of large aggregates and thromboxane A2 production.

Adenosine Diphosphate

Platelet-associated immunoglobulins G, A and M are secreted during platelet activation: normal levels but defective secretion in grey platelet syndrome.

Platelet-associated (PA) IgG is known to be released from normal human platelets when they are stimulated by aggregating agents. We have studied whether PA-IgA and PA-IgM are also secreted during platelet activation or during blood collection and processing and whether their levels are related to those in serum. Processing of platelets from normal donors in the presence of secretion inhibitors prostaglandin E1 (PGE1) and theophylline increased levels of both surface and total PA-immunoglobulins (Ig) in intact and lysed platelets respectively, with increases being significant for surface PA-IgA and PA-IgM and total PA-IgM. About 50% of total PA-IgM, 40% PA-IgA and 20% PA-IgG was detectable on intact platelets. All three PA-Ig and PA-albumin were secreted in response to thrombin and this release was inhibited by PGE1. The platelet:serum ratio of each Ig and albumin were similar. In grey platelets deficient in alpha-granules, PA-Ig and PA-albumin levels were raised per platelet but when increased platelet size was taken into account PA-Ig were normal and PA-albumin just below normal. Although thrombin caused release of most of the small amounts of beta-thromboglobulin present, PA-Ig and PA-albumin were not released. This suggests that PA-Ig and albumin from plasma may enter a pool of secretory proteins in normal platelets, but in grey platelets they remain in some other site.

Alprostadil

Successful treatment of platelet transfusion refractoriness: the use of platelet transfusions matched for both human leucocyte antigens (HLA) and human platelet alloantigens (HPA) in alloimmunized patients with leukaemia.

Six patients, 4 with acute myeloid leukaemia and 2 with a myelodysplastic syndrome who were refractory to random donor platelet transfusions and alloimmunized to human leucocyte antigens (HLA) and human platelet alloantigens (HPA), were treated with HLA- and HPA-matched platelet transfusions. In all the patients refractoriness and alloantibodies to HLA as well as HPA-1b or HPA-5b were detected simultaneously. Sixty-seven transfusions (445 units) of HLA- and HPA-matched platelets were given and responses to them were, in general, satisfactory in all the patients. No major spontaneous bleeding occurred. Four patients underwent bone marrow transplantation despite alloimmunization. The percentages of platelet transfusion days with a platelet nadir below 20x10(9)/l were 88% for the last 3 random donor platelet transfusions and 39% for the first 3 HLA- and HPA-matched platelet transfusions, respectively (p=0.009, Fisher's exact test). Four patients received also HLA-matched platelets, but responses to them were poor. The small number of transfusions with HLA-matched platelets precluded comparisons to either the random donor or HLA- and HPA-matched platelet transfusions. It seems that HLA- and HPA-alloimmunized patients can be successfully supported with HLA- and HPA-matched platelet concentrates.

Adult

The relationship of human platelet density to platelet age: platelet population labeling by monoamine oxidase inhibition.

The relationship between platelet density and platelet age appears to vary between species with relatively few labeling studies in humans reported. In this study, irreversible monoamine oxidase (MAO) inhibitors were used to biochemically label the circulating platelet population in 15 humans. Platelet samples were then isolated during the 15 days after drug ingestion. The platelets were separated by density on continuous linear Percoll gradients and the density distributions were divided into five fractions containing approximately equal numbers of platelets. Baseline MAO activity was strongly correlated with platelet density. Twenty-four hours after a single dose of tranylcypromine, platelet MAO activities in the density subpopulations were reduced to 14% to 17% of the baseline values. During the first five days after inhibition, the rates of recovery of MAO activity (percentage per day) were inversely proportional to platelet density. The recovery rates in the two most dense fractions were initially slow but increased after five days. Percentage recovery of MAO activity in the least dense fraction was significantly greater than the percentage recovery in the most dense fraction on days 2, 3, 5, and 8 (P less than .01, sign test). These results support the hypothesis that normal human platelets show a small increase in density with age, but they do not exclude the additional possibility that human platelet lifespan is positively correlated with platelet density.

Adult

Occurrence of platelet basic protein, a precursor of low affinity platelet factor 4 and beta-thromboglobulin, in human platelets and megakaryocytes.

beta-thromboglobulin antigen, a platelet-specific secreted protein, occurs in three forms: platelet basic protein, low affinity platelet factor 4, and beta-thromboglobulin. The combined level of beta-thromboglobulin antigen in megakaryocytes, measured by radioimmunoassay, was 13 +/- 7 micrograms/10(6) cells (SD, n = 6). The relative proportions of the three forms of beta-thromboglobulin antigen present within platelets and megakaryocytes were determined in cells lysed with trichloroacetic acid to minimize artifactual proteolysis. Samples were analyzed by isoelectric focusing in polyacrylamide gel with quantitative immunological detection on a nitrocellulose transfer of the gel. In platelets, the major species found was low affinity platelet factor 4 with precursor platelet basic protein as only 25% +/- 11% (SD, n = 16) of total beta-thromboglobulin antigen. In megakaryocytes partially purified both from normal bone marrow aspirates and from whole marrow specimens obtained after surgery, platelet basic protein was a higher proportion of beta-thromboglobulin antigen (49% +/- 13% SD, n = 11) than was the case in platelets. beta-thromboglobulin itself was never detected under the conditions of cell lysis used. Our results suggest that platelet basic protein is synthesized in megakaryocytes and that its cleavage is associated with an earlier stage of cell development than simply maturation to platelets. Further support for the precursor status of platelet basic protein was found in the expression of predominantly this antigenic form in a human erythroleukemia cell line.

Antigens, Human Platelet

Studies on the effect of platelet inhibitors on platelet adhesion to collagen and collagen-induced human platelet activation.

The effect of pyridoxal 5'-phosphate (PALP) and trifluoperazine (TFPZ), the calmodulin antagonist, on in vitro platelet adhesion to collagen and collagen-induced platelet activation was studied using platelet-rich-plasma (PRP) or washed platelets (WPL). Platelet aggregation and [14C]-5HT release induced by "threshold" or low concentrations of collagen (0.6 micrograms/ml) in PRP were completely abolished by PALP (24 mM), TFPZ (250 microM) as well as indomethacin (10 microM). At higher concentrations of collagen (10-15 micrograms/ml) in PRP and WPL, the use of stirred and unstirred platelets treated with collagen enabled a distinction to be made between aggregation and adhesion-mediated release reaction. Platelet aggregation and the aggregation-mediated release reaction induced by these concentrations of collagen in stirred platelets were completely abolished by PALP, TFPZ and indomethacin although neither adhesion to collagen nor the adhesion-mediated release reaction of unstirred platelets was significantly affected by these inhibitors. Interestingly, both adhesion and the adhesion-mediated release reaction were abolished by concentrations of PALP 10-40 fold higher than those required to abolish aggregation. Collagen-induced platelet aggregation, but not platelet adhesion, was inhibited in resuspended platelets pretreated with PALP and NaBH4 indicating a separation in the membrane sites involved in aggregation and adhesion. The results further emphasize the distinction between adhesion and aggregation-mediated events with regards to collagen with the latter being more susceptible to inhibition by antiplatelet agents such as PALP and TFPZ.

Collagen

Platelet retention in glass bead columns: adhesion to glass and subsequent platelet-platelet interactions.

In normal heparinized blood, the retention of platelets in glass bead columns was low in the first 1 or 2 ml, increasing to more than 80% by the 4th or 5th ml. Prior flushing of the columns with platelet-poor plasma or saline lowered retention in all 5 ml. Additional studies were carried out with a two-stage procedure in which a sample of blood (A) was pumped through a column, immediately flushed out with saline or plasma, and followed by a second blood sample (B). When as little as 1 ml of blood A preceded the flushing solution, retention was very high in all 5 ml of the subsequent blood B. This enhancement of retention in B occurred, providing blood A contained platelets (other than thrombasthenic), fibrinogen, and adequate divalent cations. Enhancement did not require von Willebrand factor (vWF) in A, nor was ADP necessary, since enhancement occurred even when heparinized blood as A contained prostaglendin E1 (PGE1) or creatine phosphokinase with creatine phosphate (CPK-CP). However, the presence of PGE1 or CPK-CP in the plasma used to flush the columns prevented the enhancement of retention in the first milliliter of B. Retention in the first milliliter of B (following normal blood as A and saline or normal plasma for flushing) was high when B was afibrinogenemic, moderately high when B contained PGE1 or CPK-CP, and low in thrombasthenic, EDTA, or vWF-deficient blood. Retention declined in subsequent milliliters of PGE1 or CPK-CP blood and remained low in thrombasthenic, vWF-deficient, or EDTA blood. Our findings suggest that (1) the platelets in A adhere to glass; this adhesion requires fibrinogen but not vWF or ADP; (2) the adherent platelets release ADP and become sticky; (3) adhesion of platelets in the first milliliter of B to the sticky platelets from A requires vWF and divalent cations but not ADP; (4) retention is maintained thereafter by repetitive platelet-platelet interactions involving ADP release, alteration of adherent platelets by released ADP, and adhesion of further platelets to these ADP-altered platelets which requires vWF.

Adenosine Diphosphate

A new congenital platelet abnormality characterized by spontaneous platelet aggregation, enhanced von Willebrand factor platelet interaction, and the presence of all von Willebrand factor multimers in plasma.

A case is reported of a 49-year-old woman with a mild bleeding tendency. Her bleeding time, platelet count and size, plasma ristocetin cofactor activity, von Willebrand factor (vWF) antigen, and vWF multimeric pattern are all within normal limits. Spontaneous platelet aggregation is observed when citrated platelet-rich plasma (PRP) is stirred in an aggregometer cuvette. This aggregation is completely is only slightly diminished by an antiglycoprotein (GP) IIb/IIIa or by an anti GPIb monoclonal antibody. The patient's PRP shows increased sensitivity to ristocetin. The distinct feature of this patient, also present in two family members studied, is that platelet aggregation is initiated by purified vWF in the absence of any other agonist. The vWF-induced platelet aggregation is abolished by anti-GPIb and anti-GPIIb/IIIa monoclonal antibodies and by EDTA (5 mmol/L). Apyrase inhibits the second wave of aggregation. Patient's platelets in PRP are four to six times more reactive to asialo vWF-induced platelet aggregation than normal platelets. The amount of radiolabeled vWF bound to platelets in the presence of either low concentration of ristocetin or asialo vWF was increased 30% compared with normal. The patient's platelet GPIb was analyzed by SDS page and immunoblotting and by binding studies with anti-GPIb monoclonal antibodies showed one band with slightly increased migration pattern and a normal number of GPIb molecules. Unlike the previously reported patients with pseudo or platelet-type von Willebrand disease, this patient has normal vWF parameters.

Antibodies, Monoclonal

Platelet activation in whole blood by artificial surfaces: identification of platelet-derived microparticles and activated platelet binding to leukocytes as material-induced activation events.

Because the lack of thromboresistant vascular biomaterials is in part due to platelet activation, we have attempted, by using fluorescence-activated flow cytometry, to fully characterize the platelet population after in vitro material contact with whole blood. We have used a very simple, near-physiologic system whereby whole blood, anticoagulated with D-phenylalanyl-L-prolyl-arginyl chloromethyl ketone (thrombin inhibitor), contacts materials for 1 hour at 37 degrees C, under low shear. Unlike other tests of platelet compatibility that focus on adherent platelets, this assay evaluates the platelets in the whole blood drained from the tube (1.57 mm internal diameter, 25 cm length) after material contact. We demonstrate for the first time significant materials-induced microparticle formation. One-hour contact with Silastic, polyethylene, and polyvinyl alcohol hydrogel surfaces lead to 30 +/- 1, 33 +/- 4, and 43 +/- 4 x 10(9) microparticles/L, respectively, whereas resting blood samples contained only 10 +/- 1 x 10(9) microparticles/L. In addition, significant increases in activated platelet(s) binding to neutrophils/monocytes after material contact were noted for all surfaces tested. For polyvinyl alcohol hydrogel surfaces a greater than 500% increase in the fluorescent intensity over that of resting whole blood was attained. The addition of monoclonal antibodies to GPIIb/IIIa (A2A9), the tetrapeptide adhesion ligand RGDS (arginine-glycine-aspartate-serine), or the calcium ion chelator ethyleneglycol-bis-(B-aminoethyl-ether)- N,N,N',N'-tetraacetic acid to the whole blood before material contact fully inhibited all platelet reactivity noted for all surfaces--platelet microparticles, platelet P-selectin expression, loss of platelets from bulk, and the formation of platelet/leukocyte aggregates--thereby indicating that material-induced platelet activation is a calcium-dependent process involving GPIIb/IIIa receptors.

Antibodies

Comparison of platelet membrane markers for the detection of platelet activation in vitro and during platelet storage and cardiopulmonary bypass surgery.

Changes in the platelet plasma membrane during activation were investigated by flow cytometry in a comparative study of in vitro platelet activation during platelet storage and cardiopulmonary bypass surgery. We studied changes in the expression of the plasma membrane glycoproteins lb and llla and CD31 antigen (PECAM-1), the alpha-granule membrane proteins GMP-140 (PADGEM, CD62 antigen) and GMP-33, and lysosomal integral membrane protein-CD63. A simultaneous change in the expression of the various glycoproteins induced by platelet activation was seen after thrombin stimulation in vitro and during platelet storage. Platelet activation in vivo in patients showed a more complex change in the expression of membrane glycoproteins. During cardiopulmonary bypass the mean fluorescence values for glycoprotein llla, GMP-33, and the percentage of GMP-140 and lysosome integral membrane protein-CD63 expressing platelets increased significantly. CD31 antigen expression was significantly decreased, whereas glycoprotein lb expression did not change. We conclude that flow cytometry is useful for the detection of changes in the expression of membrane glycoproteins induced by platelet activation in vitro and during platelet storage. Application of flow cytometry as clinical tool for screening platelet activation in patients or for identification of a prethrombotic state requires evaluation of a panel of platelet membrane glycoproteins because the changes in membrane expression may be different in various clinical situations.

Antibodies, Monoclonal

Platelet activation during preparation of platelet concentrates: a comparison of the platelet-rich plasma and the buffy coat methods.

The activation of platelets during the preparation of platelet concentrates (PCs) by two methods was compared. To eliminate interdonor differences, 2 units of whole blood were pooled and subsequently divided into two batches. From one batch, the platelets were harvested as pelleted platelets from platelet-rich plasma (PRP) and from the other as nonpelleted platelets from the buffy coat (BC). The activation of platelets in these PCs was studied immediately after preparation and during storage for up to 9 days at 22 degrees C with gentle agitation. The binding of monoclonal antibodies (MoAbs) against the GP IIb/IIIa complex and against activation-dependent antigens (GMP 140 from the alpha granules and a 53-kDa glycoprotein from the lysosomal granules) was measured. Beta-thromboglobulin (beta-TG) release was also determined. Disc-to-sphere transformation was quantitated by measuring on an aggregometer the difference in light transmission during stirring at different rates and also by light microscopy. Immediately after preparation, platelets derived from PRP had a more spheric morphology (p less than 0.01), had a higher beta-TG release (p less than 0.01), bound more MoAbs against GP IIb/IIIa (p less than 0.01), and expressed more GMP 140 and 53-kDa glycoprotein (p less than 0.01) than did BC-derived platelets. However, these differences had disappeared after 2 days of storage. It was concluded that, immediately after preparation, PRP-derived platelets are more activated than BC-derived platelets. This is most likely a result of the pelleting that follows the second high-speed centrifugation of the PRP.

Antibodies

The platelet-stimulating effect of adrenaline through alpha 2-adrenergic receptors requires simultaneous activation by a true stimulatory platelet agonist. Evidence that adrenaline per se does not induce human platelet activation in vitro.

The stimulating effect of adrenaline on human platelet phospholipase C (PLC) activation and responses in vitro (shape change, aggregation and dense granule secretion) was investigated with respect to its dependence on exogenously added agonists. All experiments were performed with human gel-filtered platelets pretreated with acetylsalicylic acid to prevent endogenous stimulation by the arachidonate pathway. (1) Preliminary experiments demonstrated the presence of trace amounts of extracellular ADP (0.05-0.58 microM) in non-stimulated platelet suspensions; ADP was effectively converted to ATP by the enzyme system creatine phosphate (CP)/creatine phosphokinase (CPK). (2) The adrenaline-induced optical aggregation and single particle (platelet) disappearance in the presence of trace amounts of ADP were almost abolished by the ADP-scavenger system CP/CPK. (3) The response of CP/CPK-treated thrombin- or platelet-activating factor (PAF)-stimulated platelets was markedly increased by a subsequent addition of adrenaline. When hirudin or BN 50726 was added just prior to adrenaline to terminate the activation by thrombin or PAF, respectively, the stimulating effect of adrenaline was also abolished. (4) CP/CPK-treated, PAF-stimulated platelets rapidly developed decreased responsiveness to a subsequent addition of PAF. When adrenaline was added instead of a second addition of PAF, the stimulating effect of adrenaline was gradually decreased and prevented in parallel with the homologous desensitization of PAF. (5) The weak platelet agonist serotonin by itself induced only shape change in CP/CPK-treated platelets. Adrenaline failed to enhance the extent of this serotonin-induced platelet activation. (6) These results strongly suggest that adrenaline per se is not a platelet agonist in vitro but acts to enhance the stimulation induced by true agonists.

Adenosine Diphosphate

Platelet function studies in coronary heart disease. IX. Increased platelet prostaglandin generation and abnormal platelet sensitivity to prostacyclin and endoperoxide analog in angina pectoris.

Platelet prostaglandin generation (malondialdehyde production) and platelet sensitivity to prostacyclin (a vasodilator and platelet aggregation inhibitor) and to epoxymethanodienoic acid (EMA) (a vasoconstrictor and platelet aggregation stimulant endoperoxide analog) were studied in patients with angina pectoris and in control subjects. Platelet malondialdehyde production was higher in patients than in control subjects (mean +/- standard error of the mean 2.50 +/- 0.30 versus 1.70 +/- 0.13 nmol/10(9) platelets, p < 0.02). Platelets from patients were significantly less sensitive to prostacyclin's antiaggregatory effects than were those from control subjects (amount of prostacyclin required for 50 percent platelet aggregation inhibition 1.90 +/- 0.35 versus 0.68 +/- 0.05 ng, p < 0.02). Furthermore, less EMA was required to induce 50 percent platelet aggregation in patients with angina pectoris than in the normal subjects (133 +/- 8 versus 194 +/- 16 ng, p < 0.001). These observations suggest that increased platelet prostaglandin generation and abnormal platelet sensitivity to prostacyclin and endoperoxide analog in certain patients with coronary artery disease are important potential mechanisms in the pathogenesis of myocardial ischemia.

15-Hydroxy-11 alpha,9 alpha-(epoxymethano)prosta-5

Tokaracetin, a new platelet antagonist that binds to platelet glycoprotein ib and inhibits von Willebrand factor-dependent shear-induced platelet aggregation.

A new platelet antagonist, tokaracetin, was isolated from the venom of Trimeresurus tokarensis by ion-exchange chromatography, heparin-Sepharose chromatography and hydrophobic HPLC. The purified protein showed an apparent molecular mass on SDS/PAGE of 28.9 kDa under non-reducing conditions. On reduction, 16.1 and 15.4 kDa subunits were observed, suggesting that the molecule is a heterodimer. Tokaracetin inhibited the binding of 125I-labelled bovine von Willebrand factor (vWF) and 125I-labelled human vWF in the presence of botrocetin to fixed human platelets. It did not block ADP-, collagen- or thrombin receptor agonist peptide-induced platelet aggregation in human platelet-rich plasma (PRP), or induce platelet agglutination in PRP. On reduction, tokaracetin lost its inhibitory activity on the agglutination of fixed human platelets by bovine vWF. 125I-Tokaracetin specifically bound to washed human platelets with high affinity (Kd 3.9 +/- 1.4 nM) at 47,440 +/- 2780 binding sites per platelet. Binding of tokaracetin to fixed human platelets was reversible, and was inhibited by monoclonal antibody GUR83-35, which is directed against the N-terminal vWF-binding domain of human glycoprotein Ib (GPIb). Tokaracetin completely inhibited vWF-dependent shear-induced platelet aggregation in PRP at 3 micrograms/ml. The N-terminal amino acid sequences of tokaracetin subunits showed a high degree of identity with those of alboaggregin-B. These results suggest that this new platelet antagonist may be a useful tool in the development of specific inhibitors of the vWF-GPIb interaction.

Amino Acid Sequence