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P Gresele

Publications and source records attributed to P Gresele.

At least 55 records · Page 3Linked to original sources

[Pregnancy and labor in a primigravida with Glanzmann's thrombasthenia].

Glanzmann's thrombasthenia is an autosomal, recessive, inherited haemorrhagic disorder due to the lack of the glycoprotein IIb/IIIa (GP IIb/IIIa) complex of the platelet membrane. The disease is characterized by a prolonged bleeding time and by a severe haemorrhagic mucocutaneous diathesis. The only possible antihaemorrhagic therapeutic measure is the infusion of platelet concentrates, but this is almost constantly associated with the production of antibodies against the GP IIb/IIIa complex that lead to the rapid removal of the infused platelets from the circulation. For this reason, platelet transfusions are usually without efficacy and must be limited to severe, profuse haemorrhages. We report the case of a primigravidae with Glanzmann's thrombasthenia in which a spontaneous delivery was made possible by a series of measures taken during the parturition to avoid haemorrhagic complications, without the use of platelet transfusions.

Adult↗

Prostaglandin E2 potentiates platelet aggregation by priming protein kinase C.

Prostaglandin E2 (PGE2) is produced by activated platelets and by several other cells, including capillary endothelial cells. PGE2 exerts a dual effect on platelet aggregation: inhibitory, at high, supraphysiologic concentrations, and potentiating, at low concentrations. No information exists on the biochemical mechanisms through which PGE2 exerts its proaggregatory effect on human platelets. We have evaluated the activity of PGE2 on human platelets and have analyzed the second messenger pathways involved. PGE2 (5 to 500 nmol/L) significantly enhanced aggregation induced by subthreshold concentrations of U46619, thrombin, adenosine diphosphate (ADP), and phorbol 12-myristate 13-acetate (PMA) without simultaneously increasing calcium transients. At a high concentration (50 mumol/L), PGE2 inhibited both aggregation and calcium movements. PGE2 (5 to 500 nmol/L) significantly enhanced secretion of beta-thromboglobulin (beta TG) and adenosine triphosphate from U46619- and ADP-stimulated platelets, but it did not affect platelet shape change. PGE2 also increased the binding of radiolabeled fibrinogen to the platelet surface and increased the phosphorylation of the 47-kD protein in 32P-labeled platelets stimulated with subthreshold doses of U46619. Finally, the amplification of U46619-induced aggregation by PGE2 (500 nmol/L) was abolished by four different protein kinase C (PKC) inhibitors (calphostin C, staurosporine, H7, and TMB8). Our results suggest that PGE2 exerts its facilitating activity on agonist-induced platelet activation by priming PKC to activation by other agonists. PGE2 potentiates platelet activation at concentrations produced by activated platelets and may thus be of pathophysiologic relevance.

Blood Platelets↗

Cloricromene inhibits leukotriene formation by human polymorphonuclear leucocytes by suppressing arachidonate release from membrane phospholipids.

Cloricromene, an antithrombotic agent known to inhibit the release of arachidonic acid (AA) in stimulated human platelets, was tested for its effects on arachidonate release and metabolism in human polymorphonuclear leucocytes (PMNs). Cloricromene dose-dependently suppressed the release of leukotriene B4 (LTB4), as assessed by radioimmunoassay, from both isolated PMNs and human whole blood stimulated with the calcium ionophore A23187 or with serum-treated zymosan (STZ). The inhibitory effect was higher when the concentration of the stimulating agent was weaker. Cloricromene also inhibited dose-dependently the liberation of LTB4, LTC4, LTD4 and 5-hydroxy-6,8,11,14-eicosatraenoic acid as assessed by HPLC in the supernantant of A23187-stimulated PMNs. Finally, the drug was able to suppress the release of [3H]AA from purified human PMNs prelabeled with the radioactive fatty acid and stimulated with either A23187 or with STZ. The A23187-induced decrease in the radioactivity of phosphatidylinositol, the phospholipid class mainly involved in AA release in stimulated PMNs, was also inhibited by cloricromene. Cloricromene suppresses leukotriene formation in human PMNs by reducing AA release from membrane phospholipids, possibly through interference with phospholipase A2 activation; this activity may contribute to the leucocyte-inhibitory effects reported previously for cloricromene.

Arachidonic Acid↗

Impaired superoxide anion, platelet-activating factor, and leukotriene B4 synthesis by neutrophils in cirrhosis.

BACKGROUND: Several alterations of polymorphonuclear leukocyte (PMN) function were found in alcoholic cirrhotics that may contribute to augmented susceptibility to infections. We evaluated function and synthesis of lipid mediators in PMN obtained from nonalcoholic cirrhotics. METHODS: We evaluated the phagocytic and chemotactic response together with superoxide anion (O2-), leukotriene B4, (LTB4) and platelet-activating factor (PAF) production in response to different stimuli in PMN from nonalcoholic cirrhotics as compared with controls. RESULTS: PMN from cirrhotics showed, after stimulation with opsonized zymosan (STZ) and phorbol-12-myristate-13-acetate, a reduced capacity to produce O2- when compared with controls. [3H]acetate incorporation into PAF was significantly higher in PMN obtained from controls in respect to cirrhotics. Gas chromatography/mass spectrometry analysis confirmed a reduced PAF synthesis by PMN obtained from cirrhotics. LTB4 production from PMN, after stimulation with calcium ionophore (A23187) and STZ, was significantly reduced in cirrhotics. [3H]arachidonic acid release from prelabeled PMN, measured upon stimulation with A23187 and STZ, was higher in controls than in cirrhotics. CONCLUSIONS: An altered synthesis of LTB4 and PAF is associated with an impaired O2- production by PMN in nonalcoholic cirrhosis. Reduced synthesis of lipid mediators may be related to an altered phospholipase A, activity.

Adult↗

Altered platelet function associated with the bronchial hyperresponsiveness accompanying nocturnal asthma.

BACKGROUND: Nocturnal awakening is a common feature of bronchial asthma, and yet the mechanisms underlying this phenomenon are poorly understood. We investigated whether nocturnal awakening is associated with changes in platelet function with the use of a variety of markers of platelet activation. METHODS: Ten patients with a history of nocturnal asthma and 10 age- and sex-matched healthy control subjects were studied at 10:00 PM, 4:00 AM, and 10:00 AM on 2 consecutive days. The following parameters were tested: forced expiratory volume in 1 second (FEV1), log dose of methacholine inducing a 20% fall in FEV1, platelet count and volume, platelet aggregation induced by collagen or activating factor, and plasma and intraplatelet levels of beta-thromboglobulin and platelet factor 4. RESULTS: We have demonstrated that altered platelet function and platelet activation occurs at 4:00 AM in patients with nocturnal asthma and is associated with the maximum increases in bronchial reactivity. Such changes were not observed in 10 control subjects. Platelet dysfunction has been detected as a reduced aggregatory response of platelets to collagen and platelet activating factor such that up to 5 times more platelet activating factor and 1.5 times more collagen were required to elicit a threshold aggregatory response in asthmatic subjects when compared with control subjects; this difference was evident at all time points tested. Furthermore, at 4:00 AM there were significantly lower levels of intraplatelet beta-thromboglobulin corresponding to the maximum reduction in peak expiratory flow and to the maximal increase in bronchial responses to inhaled methacholine. CONCLUSIONS: These results suggest that platelet activation accompanies nocturnal asthma and further suggest that platelets may play a role in this common clinical condition.

Adult↗

The effect of defibrotide on thromboembolism in the pulmonary vasculature of mice and rabbits and in the cerebral vasculature of rabbits.

1. Administration of bovine thrombin (100 u kg-1) into the carotid artery of rabbits induces a sustained accumulation of 111 Indium-labelled platelets within the cranial vasculature over the subsequent 3 h. 2. Intracarotid (i.c.) administration of defibrotide (64 mg kg-1 bolus plus 64 mg kg-1 h-1 for 1 h) prior to i.c. thrombin (100 u kg-1) significantly reduces the ability of thrombin to induce cranial thromboembolism in rabbits. 3. Intravenous (i.v.) administration of thrombin (20 u kg-1) in rabbits induces a reversible accumulation of radiolabelled platelets into the thoracic circulation which is significantly reduced by i.v. administration of defibrotide (64 mg kg-1 bolus plus 64 mg kg-1 h-1 for 1 h) prior to i.v. thrombin. In contrast, platelet accumulation in response to adenosine diphosphate (ADP; 20 micrograms kg-1, i.v.) or platelet activating factor (PAF; 50 ng kg-1, i.v.) is not significantly affected by this treatment. 4. Intravenous administration of the nitric oxide (NO)-synthase inhibitor NG-nitro-L-arginine methyl ester (L-NAME; 10 mg kg-1) potentiates platelet accumulation induced by low dose thrombin (10 u kg-1, i.v.) within the pulmonary vasculature of rabbits. The potentiated response is significantly abrogated following pretreatment with defibrotide (64 mg kg-1 bolus plus 64 mg kg-1 h-1 for 1 h, i.v.). 5. Intravenous injection of human thrombin (1250 u kg-1) to mice induces death within the majority of animals which is significantly reduced by pretreatment with defibrotide (150-175 mg kg-1, i.v.). In contrast, death induced by i.v. collagen (1.25 mg kg-1) plus adrenaline (75 microg kg-1) is not significantly affected by defibrotide pretreatment.6. The inhibitory effect of defibrotide in mice is abolished following concomitant treatment with the inhibitor of fribrinolysis, tranexamic acid (100 mg kg-1, i.v.), but is unaffected following treatment with the cyclo-oxygenase inhibitor, aspirin (300 mg kg-1, i.p.).7. The protective effect of defibrotide against thrombin-induced thromboembolism in the mouse is potentiated by recombinant tissue-plasminogen activator (rt-PA; 1 mg kg-1, i.v.) or unfractionated heparin (10 u kg-1, i.v.) administration.8. The results suggest that defibrotide may possess antithrombotic activity on thrombin-induced thromboembolism which, at least in the mouse, may be partially mediated via induction of the fibrinolytic pathway.

Animals↗

Cloricromene inhibits G-protein-mediated activation of phospholipase A2 in human platelets.

The coumarin derivative, cloricromene, an antithrombotic drug previously indicated as AD6, is known to inhibit the release of radioactive arachidonic acid from human platelets prelabelled with arachidonic acid and stimulated with thrombin. This effect might be due to the drug itself or to its catabolite, cloricromene acid. When added to platelet lysates neither compound inhibited phospholipase A2 activity assayed either with endogenous or with exogenous substrates. However, some inhibition was instead shown when intact platelets were first exposed to cloricromene and then enzyme activity was assayed in the lysate. Preincubation of platelets with the drug caused a dose-dependent inhibition of arachidonic acid mobilization in fluoroaluminate-stimulated platelets. beta-Thromboglobulin (beta-TG) release, a phenomenon previously shown to share common steps with phospholipase A2 activation, was also dose-dependently inhibited by cloricromene. Cloricromene also reduced the radioactivity associated with phosphatidic acid in fluoroaluminate-stimulated platelets but not in platelets stimulated with thrombin. These results are consistent with the hypothesis that cloricromene, or its catabolite, inhibits the production of arachidonic acid in stimulated platelets by interfering with a G-protein mediated activation of phospholipase A2 that is independent from the receptor-activated phosphoinositide phospholipase C.

Aluminum↗

The in vivo antiplatelet effects of thromboxane A2 synthase inhibitors are potentiated by simultaneous thromboxane A2/prostaglandin H2 receptor blockade.

The aim of the present study was twofold: 1) to assess whether inhibition of thromboxane A2 (TxA2) synthase exerts more potent antiplatelet effects when applied concomitantly with TxA2 and prostaglandin (PG)H2 receptor blockade and 2) whether these effects are mediated through redirection of PG endoperoxides toward the synthesis of antiplatelet PGs, such as PGI2 and PGE2. Thus, cyclic flow variations (CFVs), due to recurrent platelet aggregation, were initiated in the stenotic, endothelially injured carotid arteries of 39 rabbits. After 30 min of CFVs, the animals received: 1) SQ29548 (up to 0.6 mg/kg bolus + 0.2 mg kg-1 hr-1, n = 13), a TxA2/PGH2 receptor antagonist; 2) dazoxiben (up to 15 mg/kg bolus + 5 mg kg-1 hr-1, n = 13), a TxA2 synthase inhibitor and 3) picotamide (up to 20 mg/kg bolus + 20 mg kg-1 hr-1, n = 13), a drug with simultaneous TxA2 synthase and receptor blocking properties. CFVs were abolished in 6, 7, and 12 animals treated with SQ29548, dazoxiben, and picotamide, respectively (P < .01 for picotamide versus SQ29548 and dazoxiben). The animals in which CFVs were not abolished by SQ29548 or dazoxiben received the other drug at the same dose. CFVs were abolished by dazoxiben in five of seven rabbits that initially did not respond to SQ29548 and by SQ29548 in five of six animals that did not respond to dazoxiben. All animals that responded to the combination of SQ29548 and dazoxiben, as well as those that responded to picotamide, received increasing intravenous infusions of epinephrine to restore CFVs.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Activation of phospholipase A2 and beta-thromboglobulin release in human platelets: comparative effects of thrombin and fluoroaluminate stimulation.

Several reports have suggested that the activity of platelet phospholipase A2 is modulated by GTP-binding protein(s) whose nature and properties need to be defined. Fluoroaluminate is known to activate G-proteins and this leads to a number of cellular responses including the activation of phospholipases. This paper demonstrates that human platelets, prelabelled with [3H]arachidonic acid, produce free arachidonic acid when stimulated with fluoroaluminate and this effect is time- and dose-dependent. The production of arachidonic acid is not inhibited by neomycin, a PI-cycle inhibitor, but is completely abolished by mepacrine, an inhibitor of both phospholipase A2 and C. At low concentration of fluoroaluminate (10 mM NaF) phospholipase A2 but not phospholipase C is activated. In addition, fluoroaluminate treatment releases beta-thromboglobulin (beta-TG) and this effect is not inhibited by acetylsalicylic acid. Under identical conditions both neomycin and mepacrine suppress the release of arachidonic acid and beta-TG induced by thrombin. Sodium nitroprusside, which increases cGMP levels in platelets, inhibits arachidonic acid liberation and beta-TG release in thrombin-stimulated platelets but has no effect in fluoroaluminate-treated platelets; cGMP was reported to suppress phospholipase C activation. These results are consistent with the hypothesis that, in thrombin-stimulated platelets, the liberation of arachidonic acid and beta-TG are strictly dependent on the activation of phospholipase C. We have also provided evidence for the existence of a phospholipase A2 activated by a G-protein which is independent from the degradation of phosphoinositides and, contrary to phospholipase C, it is not down regulated by cGMP.

Aluminum↗

Evidence for a storage pool defect in platelets from cirrhotic patients with defective aggregation.

The mechanisms underlying the defective platelet function in cirrhotic patients were investigated. Eleven cirrhotic patients with mild disease (group 1), 20 patients with severe cirrhosis (group 2), and 31 controls were studied. Platelet aggregation was significantly reduced in cirrhotics compared with controls. Compared with controls, cirrhotic patients in group 2 showed a significant reduction in the total content of adenosine triphosphate (57.8 +/- 7.8 vs. 26.1 +/- 6.3 mumol/10(11) platelets; P less than 0.05), 5-hydroxytryptamine (285 +/- 26 vs. 104 +/- 38 nmol/10(11) platelets; P less than 0.05), beta-thromboglobulin (2129 +/- 120 vs. 1223 +/- 161 ng/10(8) platelets; P less than 0.01), and platelet factor 4 (1389 +/- 108 vs. 805 +/- 176 ng/10(8) platelets; P less than 0.05). In patients with severe disease, an increase in plasma beta-thromboglobulin-platelet factor 4 ratio, an index of in vivo platelet activation, was observed (controls, 3.50 +/- 0.50; group 1, 4.02 +/- 0.80; and group 2, 6.59 +/- 1.15). Our data indicate the existence of a platelet storage pool defect, which may favor the bleeding tendency of cirrhotic patients.

Adenosine Triphosphate↗

Thromboxane synthase inhibitors, thromboxane receptor antagonists and dual blockers in thrombotic disorders.

Thromboxane A2 (TXA2) plays a pivotal role in platelet activation and is involved in the development of thrombosis. Thromboxane synthase inhibitors suppress TXA2 formation and increase the synthesis of the antiaggregatory prostaglandins PGI2 and PGD2; however, accumulated PGH2 may interact with the platelet and vessel wall TXA2 receptor, thus reducing the antiplatelet effects of this class of drug. TXA2 receptor antagonists block the activity of both TXA2 and PGH2 on platelets and the vessel wall. Very recently, drugs possessing both thromboxane synthase-inhibitory and thromboxane receptor-antagonist properties have been developed. Paolo Gresele and colleagues explain here why these drugs can be more efficacious than traditional antiplatelet agents and review the available experimental studies involving these drugs.

Animals↗

Effect of glyceryl trinitrate on distensibility of peripheral muscular arteries in humans is not mediated by prostaglandins.

STUDY OBJECTIVE: Vasodilator prostaglandins have been claimed to be responsible for the coronary haemodynamic and venodilator effects of glyceryl trinitrate, although conflicting results have been reported. The aim of this study was to evaluate whether vasodilator prostaglandins play a role in the effect of glyceryl trinitrate on the distensibility of peripheral muscular arteries in healthy humans. DESIGN: A non-invasive technique, impedance plethysmography, was applied to the assessment of the effects of sublingual glyceryl trinitrate on the compliance of the forearm and digital arteries. The subjects studied received placebo (on two separate occasions), indomethacin (100 mg orally), or ibuprofen (800 mg orally) 1 h before glyceryl trinitrate (0.3 mg sublingual) on four occasions separated from each other by at least 48 h. Blood pressure and heart rate were measured by standard techniques; changes in peripheral arterial compliance were evaluated by impedance plethysmography of the forearm and finger. The study was double blind, cross over, placebo controlled, and randomised. SUBJECTS: 12 healthy male volunteers were enrolled in the study. All subjects were fasting for at least 10 h and had abstained from smoking and from methylxanthine or alcohol containing beverages. MEASUREMENTS AND MAIN RESULTS: Glyceryl trinitrate increased heart rate by 11.6(SEM 1.6) beats.min-1 (p less than 0.0005) and diastolic blood pressure by 8.7(1) mm Hg (p less than 0.01), and decreased systolic blood pressure by 8.7(1.5) mm Hg (p less than 0.01) in placebo treated volunteers; the amplitude of the plethysmograph c wave in the forearm and in the finger was also augmented, by 120(11)% and 78(13)% respectively, indicating an increase in arterial compliance. The results obtained in the two placebo sessions did not differ, indicating good reproducibility of the system. Pretreatment with either indomethacin or ibuprofen did not modify the effects of glyceryl trinitrate on heart rate, blood pressure, and arterial compliance in the forearm and the finger. Both indomethacin and ibuprofen suppressed prostaglandin synthesis, as shown by the striking inhibition of serum TxA2 concentration, by 97.2(1.5)% and 93.7(3.0)%, respectively. CONCLUSIONS: Sublingual glyceryl trinitrate, in doses used clinically, induces a reproducible increase in peripheral arterial compliance in healthy volunteers; prostaglandins do not play any significant role in this effect.

Adult↗

Generation of arachidonic acid metabolites from stimulated whole blood in patients with chronic myeloproliferative disorders.

We have evaluated the arachidonic acid (AA) metabolism in patients with myeloproliferative disorders (MPD). In essential thrombocythemia (ET), the generation of thromboxane B2 was found significantly reduced and inversely correlated with platelet count. Polycythemia vera (PV) patients showed an increased formation of this metabolite of AA. Prostaglandin E2 and 6-keto-PGF1 alpha generation were markedly reduced in patients with chronic myelogenous leukemia. Our study confirms that the arachidonate metabolism is frequently deranged in patients with MPD. The opposite changes in thromboxane formation in ET and PV could be one of the factors responsible for the different incidences of thrombotic and hemorrhagic complications in these diseases.

6-Ketoprostaglandin F1 alpha↗

Red cell deformability alterations in normal late pregnancy: possible role of plasma components.

Red cell deformability of 30 nonpregnant volunteers and 20 normal pregnant women in the 3rd trimester was assessed by determination of filterability of red cells suspended either in autologous plasma or in buffer by St. George's filtrometer method. Total red cell deformability was decreased in normal pregnancy [transit time (Tc) = 7.79 +/- 0.86 vs. 6.99 +/- 0.65, p less than 0.01] as compared to nonpregnant women when erythrocytes were studied in buffer suspensions, while the number of profoundly rigid red cells was lower in pregnant patients [clogging particles (CP) = 0.864 +/- 0.225 vs. 1.103 +/- 0.246, p less than 0.01]. Total red cell deformability was no longer reduced in pregnant women when erythrocytes were suspended in autologous plasma (Tc = 7.25 +/- 0.66 vs. 7.13 +/- 0.69, p = NS) while the number of rigid erythrocytes was still lower (CP = 0.802 +/- 0.157 vs. 1.055 +/- 0.210, p less than 0.01). Our data suggest that by the end of normal pregnancy, red cell deformability decreases with a consequent accelerated turnover and a fast elimination of very poorly deformable erythrocytes; plasma alterations in late pregnancy partly counteract the intrinsic loss of deformability of red blood cells.

Adult↗

[Picotamide does not interfere with the anticoagulant activity of warfarin in patients wearing heart valve prostheses].

Picotamide, a new antiplatelet drug which has only slight effects on bleeding time, could be useful, in combination with oral anticoagulants, for the prevention of thromboembolic complications in patients with heart valve prostheses. We have evaluated in a randomized, controlled, double-blind, cross-over study, the effect of picotamide on the anticoagulant activity of warfarin. Administration of 300 mg t.i.d. for 10 days to 10 patients with aortic or mitral valve prostheses did not modify significantly either the level of anticoagulation or the mean daily dosage of warfarin. We observed a trend towards a reduction of plasma levels of beta-thromboglobulin. In conclusion the results of this study show that picotamide does not interfere with the anticoagulant activity of warfarin.

Aged↗

Picotamide protects mice from death in a pulmonary embolism model by a mechanism independent from thromboxane suppression.

We have previously characterized the new antiplatelet agent picotamide as a dual thromboxane synthase inhibitor/thromboxane A2 receptor antagonist in human platelets. We have now studied the antithrombotic activity of this drug in a simple animal model of lung platelet thromboembolism in the mouse. Picotamide, given i.p. 1 hr before the thrombotic challenge, protected mice from death caused by the i.v. injection of collagen plus epinephrine in a dose-dependent way; the dose reducing mortality by 50% was 277 mg/kg while for aspirin it was 300 mg/kg. Picotamide was also able to reduce the mortality provoked by the i.v. injection of the stable TxA2 mimetic U46619; BM 13.505, a pure TxA2-receptor blocker, was also effective while aspirin was totally inactive. Picotamide, finally, reduced the lethal consequences of the i.v. injection of a 12.5% suspension of hardened rat red blood cells, a model in which platelets are not involved; aspirin was totally ineffective in this model while nicardipine, a calcium channel blocker, was active. Picotamide did not inhibit the formation of TxB2 in serum at any of the doses tested (100 to 750 mg/kg i.p.) while it did enhance significantly PGI2-synthesis from mice aortae and, even more, from mice lungs. The i.v. administration of picotamide (250 mg/kg 2 min before the thrombotic challenge) lead to a strong inhibition of serum TxB2 (-84.6%) and was associated with a higher antithrombotic effect.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Effects of the medium on the filterability of human red blood cells.

Red blood cell filterability as an appropriate method for evaluating red blood cell deformability was studied with different suspending media of erythrocytes. Comparison of autologous plasma and buffer suspensions of healthy subjects' erythrocytes showed no significant difference in filterability. Albumin alone resulted in a dose-dependent increase, while fibrinogen caused a decrease in red cell filterability. In the presence of fibrinogen, albumin showed controversial effects. The results suggest that measurements of red blood cells in their original surroundings give more accurate information about the microcirculation because plasma components may have a crucial influence on erythrocyte deformability.

Adult↗