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Changes of platelet cytoskeletal proteins following platelet aggregation induced by collagen and platelet membrane glycoprotein in Japanese black cattle with delta-storage pool deficiency.

Five Japanese Black cattle showing the tendency of persistent hemorrhage were diagnosed as delta-storage pool deficiency because of lack of dense bodies in platelets. There was no significant difference in the platelet count, fibrinogen concentration, prothrombin time and activated partial thromboplastin time between the cases and normal control cattle. However, the maximum platelet aggregation rate and the values of myosin in the cytoskeletons during platelet aggregation induced by collagen were significantly lower in the cases compared with those in normal control cattle. The quantities of platelet membrane glycoprotein were in the range of 94-160 kDa and were not different between the cases and control cattle. However, a decrease of thrombospondin in alpha-granules in platelet cytoplasm were suspected in two of the 5 cases.

Animals↗

Platelet aggregability and in vivo platelet deposition in patients with ischemic cerebrovascular disease--evaluation by indium-111-platelet scintigraphy.

In ischemic cerebrovascular disease, it is not clear whether platelet function in vitro actually reflects the situation in vivo. Using indium-111 platelet scintigraphy as a method for detecting platelet activation in vivo, we tried to elucidate this problem. Twenty eight patients with chronic stage of ischemic cerebrovascular disease (CVD) and 17 control subjects were examined. Platelet scintigrams were positive in 9 of 28 patients in CVD, while all were negative in control. A comparison of the results obtained from qualitative platelet imaging and platelet aggregability was performed to evaluate whether threshold aggregation concentration (TAC) grade differed across the three groups (control, CVD patients without platelet deposition and CVD patients with platelet deposition). CVD patients with platelet deposition showed a higher TAC than those patients who did not show platelet deposition (P less than 0.05) or control subjects without platelet deposition (P less than 0.05). These results suggest that some patients in chronic stages of CVD may have active platelet deposition on carotid atheromatous lesions, and presence of platelet deposition in vivo could contribute to reduce platelet reactivity in peripheral blood.

Adult↗

Increased in vitro platelet aggregation in hypertriglyceridemias.

Platelet aggregation induced by ADP and collagen was monitored in 25 patients with increased serum levels of triglycerides (7 HLPs type IIb, 14 type IV, 4 type V patients) and compared with a group of 10 normolipidaemic control persons. Platelet aggregation was studied simultaneously in platelet rich plasma (PRP) by both turbidometric and impedance technique and also in whole blood (WB) by the impedance method. Whereas platelet aggregation testing by turbidometry was limited by the optical density of the plasma samples in hypertriglyceridemia, the aggregation process could easily be registered in PRP and WB using the impedance method. Threshold aggregatory concentrations with both agonists were significantly lower for all three groups of HLP.

Adenosine Diphosphate↗

[Platelet aggregation in asthma].

Platelet activation is one of the aspects of cellular interaction causing inflammation in asthma. Platelet aggregation has been studied in asthmatic patients in presence of different aggregation inducers (epinephrine, ADP, arachidonic acid). In 20 to 40% of the atopic asthmatic patients depending on the inducer and in some patients with non atopic asthma or aspirin sensitivity and asthma platelet aggregation is decreased. Bronchial provocation tests have not decreased platelet aggregation except in few cases. In vitro incubation of platelets with allergen extract has provoked an hypoaggregation mainly when incubation time or allergen concentration were increased. Platelets seem to play an important role in the inflammatory component of bronchial asthma.

Adenosine Diphosphate↗

Stimulated platelet aggregation, thromboxane B2 formation and platelet sensitivity to prostacyclin - a critical evaluation.

Platelets have been implicated in the development of atherosclerotic and thrombotic vascular diseases. Evaluation of platelet aggregation in relation to endogenously formed compounds which affect platelet function may provide information of clinical and pharmacological relevance. We describe a method in which thromboxane B2 (TXB2) formation was analyzed following stimulation of platelet-rich plasma (PRP) with ADP, 1-epinephrine, collagen, and arachidonic acid. In addition, we determined platelet sensitivity to prostacyclin following ADP- and collagen-induced platelet aggregation. The parameters under study were found to depend on the platelet count in PRP, on the type and dose of the aggregating agent used, and on the test time after blood sampling. By standardization of these variables, a reliable method was established which can be used in clinical and pharmacological trials.

Adenosine Diphosphate↗

Platelet aggregation and electron microscopic studies of platelets in preleukemia.

Platelet aggregation and electron microscopic studies of platelets were carried out at the time of diagnosis in 11 patients thought to have preleukemia. The clinical course confirmed the diagnosis of preleukemia in seven, of whom platelet aggregation had been performed in six and the results were abnormal in all. Electron microscopic studies were performed in six of the seven, and showed abnormal morphologic structure in five. One patient was unavailable for follow-up, and aplastic anemia developed in another. In time, two patients were seen to have nonmalignant blood disorders. Results of platelet aggregation studies were normal in both of these, but electron microscopy showed morphologic abnormalities. Platelet aggregation is useful in confirming the diagnosis of preleukemia. Electron microscopy of platelets is not so clearly helpful.

Blood Platelets↗

Platelet aggregates as markers of platelet activation: characterization of flow cytometric method suitable for clinical applications.

The present paper describes a flow cytometric method for assay of platelet aggregates (PAg) in blood. This method combines and simplifies previously reported techniques, simultaneously enumerating PAg formed upon platelet activation, their expression of activation marker CD62P (P-selectin), and their content of bound leukocytes (LPAg). The sensitivity of this method to low levels of agonists (ADP, collagen) is compared to conventional aggregometry and some features of platelet-leukocyte interaction are explored. The results were: (1) ADP or collagen induced a dose-dependent increase in PAg number and corresponding decline in free platelets. The ED50 for ADP (0.15 microM) and for collagen (0.2 microg/mL) was about 1/20 the ED50 found by aggregometry, indicating 20-fold greater sensitivity. (2) At higher concentrations, the fraction of PAg with bound leukocytes (LPAg) increased to 60-70%. This rise correlated with PAg size and CD62P expression, but not with the number of PAg formed. (3) The response of whole blood (WBD) to agonists was qualitatively different from that of platelet-rich plasma (PRP): in WBD the population of CD62P+ PAg was much higher than in PRP and the population of CD62P+ free platelets was much lower. This implies that leukocytes rapidly recruit activated platelets. (4) Desmopressin (DDAVP) at 5 nmol/L induced a significant rise in activated (CD62P+) PAg and platelets, even though no effect of DDAVP could be detected by conventional aggregometry; this further confirms that DDAVP acts directly on platelets. (5) Plasma samples from TTP patients induced a rise in PAg when added to normal PRP, though little or no effect could be detected by aggregometry. In summary, the flow cytometric method described here appears useful for detecting low levels of platelet activation and provides information on platelet leukocyte interaction, potentially important in identifying and differentiating thrombogenic states. Since it is rapid and economical, it is well suited for clinical implementation.

Biomarkers↗

Relationship of turbidity to the stages of platelet aggregation.

The process of platelet aggregation as detected by turbidity changes in the platelet aggregometer was studied relative to light scattering by large particles. For latex beads a plot of light scattering intensity/unit mass versus particle size gave increased light scattering intensity for small particle sizes but decreased scattering at large particle size. This behavior is predicted by Rayleigh-Gans theory. These results were related to the platelet aggregometer, an optical instrument used to measure the association of small particles (monomeric platelets) to large particles (platelet aggregates). Formalin-fixed platelets do not show changes in light transmission due to energy-requiring processes, such as shape change, so that turbidity changes in the presence of aggregating agents could be attributed to a change in platelet aggregation state. Small platelet aggregates showed increased turbidity compared to a similar mass of monomeric platelets. In fact, very large platelet aggregates that were visible to the unaided eye were needed to produce a decrease in light scattering intensity. Thus, turbidity can either increase or decrease with platelet aggregation depending on the size of the aggregates. Studies of platelet aggregation that show no initial increase in turbidity must be characterized by dominance of large platelet aggregates and monomeric platelets.

Humans↗

Molecular mechanisms involved in human platelet aggregation by synergistic interaction of platelet-activating factor and 5-hydroxytryptamine.

Our recent studies have shown that co-activation of Gq and Gi proteins by 5-hydroxytryptamine (5-HT) and adrenaline show synergism in human platelet aggregation. This study was conducted to examine the mechanism(s) of synergistic interaction of 5-HT and platelet activating factor (PAF) in human platelets. We show that PAF, but not 5-HT, increased platelet aggregation in a concentration-dependent manner. However, low concentrations of 5-HT (2 microM) potentiated platelet aggregation induced by subthreshold concentration of PAF (40 nM) indicating a synergistic interaction between the two agonists and this synergism was blocked by receptor antagonists to either 5-HT or PAF. 5-HT also potentiated the effect of PAF on thromboxane A2 (TXA2) formation and phosphorylation of extracellularly regulated mitogen-activated protein kinases (ERK1/2). The synergism of 5-HT and PAF in platelet aggregation was inhibited by calcium (Ca2+) channel blockers, verapamil and diltiazem, phospholipase C (PLC) inhibitor, U73122, cyclooxygenase (COX) inhibitor, indomethacin, and MEK inhibitor, PD98059. These data suggest that synergistic effect of 5-HT and PAF on human platelet aggregation involves activation of PLC/Ca2+, COX and MAP kinase pathways.

Diltiazem↗

Characterization of the equine platelet aggregation response.

Equine platelet aggregation responses to bovine collagen, adenosine diphosphate (ADP), serotonin, epinephrine, and arachidonate in a platelet aggregometer were recorded. Equine platelets exhibited irreversible aggregation when incubated with ADP at a final concentration of 10 microM and bovine collagen. A secondary aggregation wave was recorded from platelets from certain horses at final ADP concentrations of 1 to 5 microM. Serotonin and arachidonate induced a weak reversible aggregation response, but a response was not observed following epinephrine addition. Equine platelet aggregation was influenced by concentration of anticoagulant (sodium citrate). Platelet aggregation responses at 37 C were indistinguishable from those recorded at 39 C. Platelet aggregation responses also were altered if the aggregation tests were not performed within 4 hours of blood sample acquisition. An assessment of platelet aggregation from multiple blood samples from the same horse indicated that the procedures described provide a reliable method to assess equine platelet aggregation in vitro.

Adenosine Diphosphate↗

Enhanced platelet aggregation with TRAP-6 and collagen in platelet aggregometry in patients with venous thromboembolism.

The role of platelet hyperaggregability as a possible risk factor for venous thromboembolism is not well defined. Some authors described enhanced maximal platelet aggregation in platelet aggregometry as a contributing factor for arterial and venous thrombosis. This syndrome has been termed "sticky-platelet syndrome" (SPS). The diagnosis of SPS is based on the demonstration of platelet hyperaggregability in aggregometry after stimulation with epinephrine (EPI) and/or adenosine diphosphate (ADP). We investigated platelet hyperaggregability in platelet-rich plasma (PRP) of patients (n = 34) with unexplained venous thromboembolism in comparison to healthy individuals (n = 53). For analysis, platelet aggregometry was performed and the influence of epinephrine, adenosine diphosphate, collagen (Coll) and thrombin receptor-activated peptide (TRAP-6) as agonist were determined. Compared to the control group, patients with venous thromboembolism showed an enhanced maximal platelet aggregation with low concentrations of TRAP-6 (2 microM) and collagen (0.05 microM). In contrast, we could not detect an increased platelet aggregation with EPI or ADP. Our results indicate that platelet hyperaggregability may represent an independent risk factor in patients with otherwise unexplained venous thromboembolism. In our study, low concentrations of TRAP-6 and collagen are superior to EPI and ADP to define platelet hyperreactivity in platelet aggregometry.

Adult↗

Role of cytoplasmic calcium in platelet aggregation.

BACKGROUND: Although adherence and aggregation of platelets on an active surface such as exposed subendothelial matrix or foreign surfaces is integral to the occlusion of blood vessels, its mode of action is not fully understood. METHODS: The role of cytoplasmic ionized Ca(2+) concentration ([Ca(2+)](i)) in platelet activation induced by contact with a glass surface under shear-stress was studied by employing confocal laser scanning microscopy (CLSM) in conjunction with a parallel plate flow chamber. Changes in [Ca(2+)](i) and morphology of aggregating platelets on glass surface was simultaneously examined. RESULTS: Under static condition, contact with glass caused platelet adhesion to the surface, which was associated with [Ca(2+)](i) rise and morphological change; however, platelets did not develop a large aggregation on the surface. Under lower shear-stress, the number of the single platelets adsorbed on the surface was less than that under static condition. Although shear-stress increased the number of single platelets involved and enhanced morphological change in aggregating platelets in a shear-stress related manner, the peak [Ca(2+)](i) value in individual platelets were not increased. CONCLUSIONS: These observations may suggest the crucial roles of shear-stress in platelet aggregate formation at the site of arterial stenosis. Shear-stress might enhances platelet aggregate growth not through the enhancement of [Ca(2+)](i) rise.

Calcium↗

Effects of lidocaine, codeine and vadocaine hydrochloride on platelet aggregation in human platelet-rich plasma.

Lidocaine and vadocaine hydrochloride (2',4'-dimethyl-6'-methoxy-3-(2-methylpiperidyl)propionanilide+ ++ hydrochloride, OR K-242-HCl; INN: vadocaine), which is structurally related to lidocaine, inhibited the second phases of human platelet aggregation induced by adenosine diphosphate (ADP, 10 mumol/l) or epinephrine (10 mumol/l) and partly aggregation induced by collagen (2.5 micrograms) at concentration relevant to local anesthetic action (0.1-1.0 mmol/l). Codeine was effective at slightly higher concentrations. The concomitant formation of thromboxane B2 (TXB2) was inhibited at similar concentrations. The aggregation induced by arachidonic acid (200 mumol/l) and the first phases of ADP (10 mumol/l)- or epinephrine (10 mumol/l)-induced aggregations were inhibited by all the compounds at the concentrations 1-10 mmol/l, codeine being the most potent inhibitor. The only exception was vadocaine, which inhibited the first phase of epinephrine-induced aggregation at concentrations greater than or equal to 0.25 mmol/l. Vadocaine may possess a2-adrenergic blocking activity. At low concentrations (less than or equal to 0.1 mmol/l), all the compounds stimulated/tended to stimulate the second phase of ADP-induced aggregation and concomitant formation of TXB2. They strongly stimulated TXB2 formation induced by exogenous arachidonic acid even at concentrations causing inhibition of aggregation. Codeine was the most and vadocaine the least potent in this respect. Lidocaine as well as vadocaine (0.1 mmol/l) and codeine (1.0 mmol/l) potentiated the antiaggregatory effect of dibutyryl-cyclic AMP (dB-cAMP) on the ADP-induced aggregation. Lidocaine (0.1 mmol/l) and codeine (1.0 mmol/l) similarly potentiated the effect of the adenylate cyclase stimulator prostaglandin E1 (PGE1).

Adenosine Diphosphate↗

Propofol does not affect platelet aggregation.

Abnormalities of platelet haemostasis pose increased risk to patients undergoing anaesthesia and surgery. We have investigated the effect of propofol on platelet aggregation in 12 patients undergoing upper and lower abdominal surgery. Propofol 2.5 mg kg-1 was administered via a cannula in the antecubital vein. Venous blood samples were obtained before induction and 10 min after administration of propofol. Platelet aggregation measurements were made for adenosine diphosphate (ADP), collagen and adrenaline. The results show that propofol does not affect platelet aggregation in the concentrations used.

Abdomen↗

Platelet aggregation secondary to coronary obstruction.

From many observations made at autopsy it is apparent that thrombosis in a coronary artery is usually, if not always, associated with rupture of an atheromatous plaque. The sequelae of such rupture include hemorrhage into the plaque with further narrowing of the lumen, formation of an occlusive thrombus or of a non-occlusive thrombus. A developing thrombus in an artery undergoes fragmentation with showering of the distal microcirculation by aggregates of platelets possibly with some admixture of fibrin. In many cases of sudden cardiac death associated with severe atherosclerotic stenosis of the coronary vessels, an occlusive thrombus is not found and the myocardium shows no morphological lesion or else focal patchy early damage in the subendocardial region. One possible mechanism that might explain these findings is microembolism from mural nonobstructing coronary thrombus. Such a mechanism is well established in transient ischemia of the brain and retina related to ulcerated atheroma of the internal carotid artery. Experimental observations indicate that platelet aggregates in the myocardial circulation cause arrhythmias, sudden death, vasculitis, and myocardial ischemic damage. Induction of an occlusive coronary artery thrombus is associated with development of an infarct involving the full thickness of the myocardium. A nonocclusive thrombus is associated with either no myocardial damage or focal subendocardial ischemic injury. It is possible that further aggregation of platelets may facilitate the extension of infarction subsequent to an occlusive event, although there is little evidence on this point. A number of clinical studies show increased platelet reactivity to agents causing aggregation, such as norepinephrine or collagen, in subjects experiencing thromboembolic episodes. It seems unlikely, however, that in vitro tests of platelet function can identify or predict clinical arterial thrombotic disease, although studies of platelet survival and turnover may be more helpful. There is also evidence that platelet survival may be prolonged by drugs having a therapeutic benefit in coronary artery disease and arterial thromboembolism. There is a need for better designed and coordinated clinical trials and for better experimental approaches to explore the relationships among coronary thrombosis, embolsim of the myocardial microcirculation, myocardial ischemia, and sudden death.

Animals↗

Defective ristocetin-induced platelet aggregation in von Willebrand's disease and its correction by factor VIII.

The antibiotic ristocetin, in concentrations of 1.0-1.5 mg/ml, aggregated normal platelets in citrated platelet-rich plasma by a mechanism in which the release reaction played only a minor role. Platelet aggregation by ristocetin in a concentration of 1.2 mg/ml was absent or markedly decreased in 10 patients with von Willebrand's disease. Lesser degrees of abnormality were obtained with a concentration of 1.5 mg/ml. The magnitude of the defect in ristocetin-induced platelet aggregation correlated well with the degree of abnormality of the bleeding time and the levels of antihemophilic factor (AHF, VIII(AHF)) procoagulant activity. In all patients, the defect in ristocetin-induced platelet aggregation was corrected in vitro by normal plasma. Correction was also obtained with a fraction of normal cryoprecipitate that eluted in the void volume with VIII(AHF) after chromatography on a gel that excludes molecules larger than 5 x 10(6). A similar fraction, devoid of VIII(AHF) activity, obtained from patients with von Willebrand's disease had no corrective effect, but fractions obtained from patients with hemophilia were just as effective as those obtained from normal subjects. The correction activity of plasma and partially purified factor VIII was inhibited by a rabbit antibody to human factor VIII but not by a human antibody against VIII(AHF) procoagulant activity. The studies provide further evidence that patients with von Willebrand's disease are deficient in a plasma factor that is necessary for normal platelet function. The activity of this factor appears to be associated with factor VIII but is unrelated to VIII(AHF) procoagulant activity.

Adenosine↗

Critical role of the carbohydrate side chains of collagen in platelet aggregation.

The reaction between human platelet membrane glucosyl transferase and collagen has recently been proposed as the mechanism for pletelet-collagen adhesion. Collagen contains glucosyl-galactose and galactose side chains linked through the galactose to hydroxylysine. Oxidation of the 6-hydroxymethyl position of the galactosyl residue to aldehydes with galactose oxidase completely abolishes platelet aggregation. This enzymatic modification of collagen can be fully reversed by reduction of the aldehydes formed by NaBH(4) with complete restoration of platelet aggregating ability. Limited digestion with bacterial collagenase abolishes the ability of collagen to aggregate platelets. Removal of the N-terminal telopeptides from collagen with trypsin does not affect platelet aggregation. Tertiary structure of soluble collagen is essential for platelet aggregation. Normal collagen is less effective than lathyritic collagen, which contains only a small number of cross-links. The decreased number of aldehyde groups in the lathyritic collagen are not responsible for the increase in aggregating ability, since reduction with NaBH(4) does not alter platelet aggregation. These results suggest that integrity and accessibility of the galactose receptor site may be crucial for the formation of a ternary collagenenzyme-platelet membrane complex which must precede platelet aggregation.

Alcohol Oxidoreductases↗