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The influence of aspirin on plasma and platelet catecholamine levels, and platelet function in normal man.

The aim of the study was to determine whether aspirin influences sympathoadrenal output in normal human subjects. Plasma and platelet adrenaline and noradrenaline levels were measured before and after chronic administration of oral aspirin (300 mg per day for 7 days). Catecholamine concentrations measured immediately following aspirin did not differ from control (pre-treatment) values. Platelet noradrenaline and plasma adrenaline levels were, however, significantly increased 2 weeks after cessation of treatment. Platelet TxB2 generation was significantly reduced following aspirin treatment indicating that platelet cyclooxygenase had been inhibited. Catecholamine concentrations did not correlate with TxB2 generation. In vitro platelet aggregation induced by ADP, adrenaline and collagen was reduced after aspirin providing additional confirmation of cyclooxygenase inhibition. However, the in vivo markers of platelet function, beta-TG and PF4 were unaffected. These data do not provide convincing evidence for an action of aspirin on sympathoadrenal outflow, either directly or via a prostaglandin (thromboxane) mediated effect, although this does not exclude a later, delayed effect. There was no evidence for interactions between thromboxane, catecholamine levels in plasma and platelets, and platelet function.

Adenosine Diphosphate↗

Soluble saccharides block the inhibition of agonist-induced human platelet aggregation observed after in vitro incubation of human platelet-rich plasma with porcine aortic endothelial cells.

Platelet aggregation is a prominent feature in the hyperacute process of vascularized allografts and xenografts. In a study of extracorporeal connection of pig kidneys to the blood circulation of human volunteers, we observed in one case considerable destruction of human platelets in the pig kidney without signs of hyperacute rejection or microthrombi formation. In the present study, we have investigated the agonist-induced aggregation of human platelets in mixtures with porcine aortic endothelial cells (PAEC). In vitro incubation of human platelet-rich plasma (PRP) with PAEC inhibited platelet aggregation induced by ADP, collagen and arachidonic acid in a time-dependent manner and partially inhibited adrenalin-induced aggregation. Aggregation of the human platelets could not be induced by high concentrations of ADP (20 microM) to overcome the inhibition capacity of the PAEC. The PAEC inhibiting effect could be transferred by the supernatants of PAEC/PRP and PAEC/PPP incubation mixtures. Preincubation of the PAEC with aspirin, but not with NG-methyl-L-Arg, reduced the aggregation inhibitory effect. Control experiments mixing human umbilical vein endothelial cells (HUVEC) and human PRP or mixing porcine PRP and PAEC did not elicit any inhibition of ADP-induced platelet aggregation. The aggregation inhibition effect could partially be blocked by preincubation of PRP with soluble Gal alpha 1-3Gal, Gal alpha 1-3 beta 1-4GlcNAc, lactose, galactose, and glucose, but not by lactosamine, galactosamine, or glucosamine. The Gal alpha 1-3Gal disaccharide was most effective in blocking aggregation inhibition, and to a similar extent as its ability to block the human anti-pig lymphocytotoxicity reaction. In conclusion, the data indicate that PAEC, upon stimulation by human anti-pig xenoantibodies in a nondynamic system, inhibits agonist-induced human platelet aggregation, and that this effect is probably at least partially caused by prostacyclin released from the PAEC.

Adenosine Diphosphate↗

Attenuation of platelet activating factor (PAF)-induced stimulation of rabbit platelet GTPase by phorbol ester, dibutyryl cAMP, and desensitization: concomitant effects on PAF receptor binding characteristics.

The GTPase activities of rabbit platelet membrane were stimulated by platelet activating factor (PAF) in a receptor-mediated manner. The activities of the GTPase were investigated in the platelets which had been pretreated with tetradecanoyl phorbol acetate (TPA), dibutyryl cAMP, and PAF. The specific binding of PAF to intact platelet cells was also determined in these treated cells. In platelets which had been pretreated with PAF and then specifically desensitized to PAF, higher concentrations were required for stimulation of the receptor-coupled GTPase. In addition the extent of stimulation of the GTPase by PAF was also decreased. By contrast thrombin stimulation of GTPase activity was unaffected by this process. In platelets pretreated with high levels of dibutyryl cAMP (greater than 4 mM), the specific binding of PAF was reduced to nearly 50% of the control. Although this specific binding apparently was not inhibited by lower concentrations of dibutyryl cAMP (less than 2 mM), PAF could stimulate the receptor-coupled GTPase only to a much lower extent in these treated cells. TPA had virtually no effect on PAF specific binding. However, higher concentrations were needed for stimulation of the GTPase. On the other hand, the extent of PAF stimulation of the GTPase was not altered. Interestingly in the TPA-treated platelet membrane, thrombin stimulated GTPase activity to a higher level than that in untreated platelet membrane. Thus, TPA, dibutyryl cAMP, and desensitization affected the PAF receptor binding and the receptor-coupled GTPase activities in a characteristic fashion. The molecular mechanisms of these effects are discussed.

Animals↗

Inhibition of binding of the platelet-activating factor AGEPC to platelets by the AGEPC analog rac-3-(N-n-octadecylcarbamoyloxy)-2-methoxypropyl 2-thiazolioethyl phosphate (CV-3988).

CV-3988, rac-3-(N-n-octadecylcarbamoyloxy)-2-methoxypropyl 2-thiazolioethyl phosphate, is a specific inhibitor of the platelet-activating activity of 1-O-alkyl-2-acetyl-sn-glycero-3-phosphorylcholine (AGEPC or PAFacether). Concentrations of CV-3988 between 10(-8) and 10(-7) M inhibited AGEPC-induced aggregation of washed human platelets in a dose-related manner (IC50 = 2.9 +/- 1.1 X 10(-8) M CV-3988) whereas concentrations of CV-3988 as high as 4 X 10(-6) M did not diminish platelet aggregation by thrombin or adenosine diphosphate. The binding of [3H] AGEPC to platelets was inhibited by CV-3988 in a concentration-dependent manner (IC50 = 6.7 +/- 1.8 X 10(-8) M). Compared to AGEPC, CV-3988 has a 1000-fold lower affinity for the AGEPC receptor. CV-3988 did not stimulate platelet metabolism of AGEPC as assessed by thin-layer chromatographic analysis of [3H] AGEPC extracted from platelet suspensions after four hours of incubation. Thus these studies indicate that CV-3988 inhibits platelet activation by AGEPC by inhibiting binding of AGEPC to its specific platelet receptor.

Blood Platelets↗

Platelet activating factor and sheep platelets: a sensitive new bioassay.

The in vitro response of sheep platelets to platelet activating factor (PAF) was investigated. Sheep platelet-rich plasma aggregated in response to PAF with an EC50 of 10 nM. Platelets isolated via arabinogalactan density gradient centrifugation displayed an EC50 of 50 pM with a threshold response at 0.1 pM. PAF-induced release of 14C-serotonin from isolated sheep platelets was comparable with an EC50 of 50 pM and threshold release at 10 fM. PAF-induced aggregation was specific in that it could be blocked by the competitive receptor antagonists Alprazolam (Upjohn, IC50 = 40 microM), L-652,731 (MSD, IC50 = 6 microM), and WEB 2086 (Boehringer Ingelheim, IC50 = 0.8 microM). At micromolar concentrations, WEB 2086 did not inhibit ADP- or thrombin-induced aggregation nor thrombin-induced serotonin release. However, at higher concentrations of WEB 2086 some inhibition of thrombin-induced platelet aggregation and release was observed. Subsequent experiments demonstrated that high concentrations of WEB 2086 can inhibit thrombin-induced clotting (Ki = 866 microM) and cleavage of the chromogenic substrate Spectrozyme-TH (Ki = 842 microM). In summary, the response of isolated sheep platelets to PAF was specifically inhibitable and was 10 to 100 times more sensitive than washed rabbit platelets, the most popular bioassay currently in use.

Adenosine Diphosphate↗

Platelet function and platelet-leukocyte adhesion in symptomatic coronary heart disease. Effects of intravenous magnesium.

Spontaneous P-selectin surface expression on platelets and platelet-leukocyte adhesion was increased in patients with symptomatic coronary heart disease (n = 12) compared to normal controls (n = 10) (p < 0.05). ADP-induced P-selectin expression and platelet-leukocyte adhesion was also enhanced in the patient group (p < 0.05). Administration of intravenous Mg2+ significantly reduced both platelet surface expression of P-selectin and platelet-leukocyte adhesion ex vivo (p < 0.02). The effect of extracellular Mg2+ was evaluated in in vitro experiments. Both in whole blood and in isolated neutrophil suspension Mg2+ inhibited platelet adhesion to neutrophils dose dependently with half maximal effects at 4 mM. Moreover, Mg2+ inhibited adhesion of isolated platelet membranes to neutrophils. We conclude that platelet function is altered in symptomatic coronary heart disease and can be modulated by administration of intravenous Mg2+.

Adenosine Diphosphate↗

In vitro effect of trichosanic acid, a major component of Trichosanthes japonica on platelet aggregation and arachidonic acid metabolism in human platelets.

The in vitro effect of trichosanic acid (TCA; C18:3, omega-5), a major component of Trichosanthes japonica, on platelet aggregation and arachidonic acid (AA) metabolism in human platelets was studied. TCA dose-dependently suppressed platelet aggregation of platelet rich plasma and washed platelets. TCA decreased collagen (50 micrograms/ml)-stimulated production of thromboxane B2 (TXB2) and 12-hydroxyhepta-decatrienoic acid (HHT) in a dose-dependent manner, while that of 12-hydroxyeicosatetraenoic acid (12-HETE) was rather enhanced. The conversion of exogenously added [14C]AA to [14C]TXB2 and [14C]HHT in washed platelets was dose-dependently reduced by the addition of TCA, while that to [14C]12-HETE was increased. Similar observations were obtained when linolenic acid (LNA; C18:3, omega-3) was used. These results suggest that TCA may decrease TXA2 formation in platelets, probably due to the inhibition of cyclooxygenase pathway, and thereby reduce platelet aggregation.

12-Hydroxy-5,8,10,14-eicosatetraenoic Acid↗

Effect of doxazosin gastrointestinal therapeutic system on platelet degranulation and platelet-leukocyte microaggregate formation induced by physiologic shear stress in hypertension.

INTRODUCTION: In this prospective, ex vivo, single-blind study, the effect of doxazosin on platelet function was studied in patients with hypertension. MATERIALS AND METHODS: Platelet activation by shear stress was measured in whole blood samples of 22 hypertensive patients and 22 normotensive controls, using flow cytometry. Sheared samples were evaluated for CD62 expression, microaggregate formation, and Ca2+ mobilization. Results were collected at baseline and after 1 and 2 months of single-dose (4 mg/d) extended-release doxazosin gastrointestinal therapeutic system therapy. RESULTS: Doxazosin normalized blood pressure in hypertensive patients after 1 and 2 months of treatment. Hypertensive patients had a higher baseline percentage (mean+/-SD) of degranulated platelets (CD62+) than the normotensive control group (4.14+/-1.05 vs. 2.47+/-0.68, P<0.01). After 2 months of doxazosin gastrointestinal therapeutic system treatment, the percentage of CD62+ in the experimental group significantly decreased (P<0.05). At baseline, the number of platelet-leukocyte aggregates in vivo was greater in hypertensive patients (P<0.01); doxazosin did not normalize this measurement. Following shearing, platelet expression of CD62 increased significantly in the hypertensive group (P<0.001 vs. control). Shear stress-induced platelet activation and microaggregate formation were also greater in hypertensive patients. Intraplatelet-free calcium concentration was higher in hypertensive patients at baseline than in the normotensive group (P<0.001). At 2 months, doxazosin significantly reduced thrombin-stimulated Ca2+ mobilization in hypertensive patients (P<0.01 vs. baseline). CONCLUSIONS: Platelets from hypertensive patients are more readily activated by shear stress and demonstrate significant alterations in cytoplasmic-free calcium mobilization. Doxazosin treatment reduced blood pressure and normalized alterations in platelet function.

Blood Platelets↗

Inhibitory effect of curcumin, a food spice from turmeric, on platelet-activating factor- and arachidonic acid-mediated platelet aggregation through inhibition of thromboxane formation and Ca2+ signaling.

Curcumin, a dietary spice from turmeric, is known to be anti-inflammatory, anticarcinogenic, and antithrombotic. Here, we studied the mechanism of the antiplatelet action of curcumin. We show that curcumin inhibited platelet aggregation mediated by the platelet agonists epinephrine (200 microM), ADP (4 microM), platelet-activating factor (PAF; 800 nM), collagen (20 microg/mL), and arachidonic acid (AA: 0.75 mM). Curcumin preferentially inhibited PAF- and AA-induced aggregation (IC50; 25-20 microM), whereas much higher concentrations of curcumin were required to inhibit aggregation induced by other platelet agonists. Pretreatment of platelets with curcumin resulted in inhibition of platelet aggregation induced by calcium ionophore A-23187 (IC50; 100 microM), but curcumin up to 250 microM had no inhibitory effect on aggregation induced by the protein kinase C (PKC) activator phorbol myrsitate acetate (1 microM). Curcumin (100 microM) inhibited the A-23187-induced mobilization of intracellular Ca2+ as determined by using fura-2 acetoxymethyl ester. Curcumin also inhibited the formation of thromboxane A2 (TXA2) by platelets (IC50; 70 microM). These results suggest that the curcumin-mediated preferential inhibition of PAF- and AA-induced platelet aggregation involves inhibitory effects on TXA2 synthesis and Ca2+ signaling, but without the involvement of PKC.

Anti-Inflammatory Agents, Non-Steroidal↗

HLA (class I) antigens on platelets are involved in platelet function.

HLA (Class I) antigens are ubiquitous in their cellular distribution and, while their function in major histocompatibility complex (MHC)-restricted phenomena are clear, their function on other cells, such as platelets, is not so obvious. We now report that several anti-HLA monoclonal antibodies (including an anti-beta 2 microglobulin antibody) selectively affect platelet function in that three different anti-HLA monoclonal antibodies caused not only the aggregation of human platelets, but also caused the release of 14C-serotonin. In addition, the anti-HLA antibodies could selectively block the binding of several platelet agonists such as collagen, adrenalin, ADP, but not the binding of others such as thrombin and arachidonic acid. In blocking studies there also appeared to be an association between platelet glycoprotein IIb-IIIa and HLA Class I antigens. We propose that both heavy and light chains of Class I HLA antigens on platelets may be involved in platelet aggregation and release and suggest an additional role for HLA antigens on platelets.

Antibodies, Monoclonal↗

Thrombin-induced conversion of fibrinogen to fibrin results in rapid platelet trapping which is not dependent on platelet activation or GPIb.

1. Activation of human platelets by thrombin is mediated by the proteolytic cleavage of two G-protein coupled protease-activated receptors, PAR-1 and PAR-4. However, thrombin also binds specifically to the platelet surface glycoprotein GPIb. It has been claimed that thrombin can induce aggregation of platelets via a novel GPIb-mediated pathway, which is independent of PAR activation and fibrinogen binding to alpha(IIb)beta(3) integrin, but dependent upon polymerizing fibrin and the generation of intracellular signals. 2. In the presence of both fibrinogen and the alpha(IIb)beta(3) receptor antagonist lotrafiban, thrombin induced a biphasic platelet aggregation response. The initial primary response was small but consistent and associated with the release of platelet granules. The delayed secondary response was more substantial and was abolished by the fibrin polymerization blocking peptide GPRP. 3. Cleavage of the extracellular portion of GPIb by mocarhagin partially inhibited thrombin-induced alpha(IIb)beta(3)-dependent aggregation and release, but had no effect on the secondary fibrin-dependent response. 4. Fixing of the platelets abolished alpha(IIb)beta(3)-dependent aggregation and release of adenine nucleotides, whereas the fibrin-dependent response remained, indicating that platelet activation and intracellular signalling are not necessary for this secondary 'aggregation'. 5. In conclusion, the secondary fibrin-dependent 'aggregation' response observed in the presence of fibrinogen and lotrafiban is a platelet trapping phenomenon dependent primarily on the conversion of soluble fibrinogen to polymerizing fibrin by thrombin.

Dose-Response Relationship, Drug↗

Thrombin-receptor agonist peptides, in contrast to thrombin itself, are not full agonists for activation and signal transduction in human platelets in the absence of platelet-derived secondary mediators.

Synthetic thrombin receptor peptides (TRPs), comprising the first 6-14 amino acids of the new N-terminus tethered ligand of the thrombin receptor that is generated by thrombin's proteolytic activity, were reported to activate platelets equally with thrombin itself and are considered to be full agonists [Vu et al. (1991) Cell 64, 1057-1068]. Using aspirin plus ADP-scavengers or the ADP-receptor antagonist adenosine 5'-[alpha-thio]triphosphate to prevent the secondary effects of the potent agonists that are normally released from stimulated platelets (i.e. ADP and thromboxane A2), we assessed the direct actions of thrombin and TRPs (i.e. TRP42-47 and TRP42-55). Compared with thrombin, under these conditions, TRPs: (1) failed to aggregate platelets completely; (2) produced less activation of glycoprotein (GP)IIb-IIIa; (3) did not cause association of GPIIb and pp60c-src with the cytoskeleton; and (4) caused less alpha-granule secretion, phosphorylation of cytoplasmic phospholipase A2, arachidonic acid release and phosphatidyl inositol (PtdOH) production. Furthermore, TRPs induced transient increases in protein phosphorylation mediated by protein kinase C and protein tyrosine phosphorylation, whereas these same responses to thrombin were greater and more sustained. Hirudin added after thrombin accelerated protein dephosphorylation, thereby mimicking the rate of spontaneous dephosphorylation seen after stimulation by TRPs. Platelets totally desensitized to very high concentrations of TRPs, by prior exposure to maximally effective concentrations of the peptides, remained responsive to alpha- and gamma-thrombins. Thrombin-stimulated PtdOH production in permeabilized platelets desensitized to TRPs was abolished by guanosine 5'-[beta-thio]diphosphate (GDP[beta S]), as in normal platelets. These results are discussed in terms of the allosteric Ternary Complex Model for G-protein linked receptors [Samama et al. (1993) J. Biol. Chem. 268, 4625-4636]. We conclude that: (1) TRPs are partial agonists for the thrombin receptor and produce incomplete receptor desensitization in keeping with their lower intrinsic activity; (2) thrombin's effects in platelets, even in TRP-desensitized platelets, are entirely mediated through the recently cloned G-protein linked receptor, and (3) thrombin's ability to produce sustained signals, compared with TRPs, may require the continued progressive proteolytic activation of naive thrombin receptors.

Adenosine Diphosphate↗

Inhibitory effects of ZK 36374, a stable prostacyclin analogue, on adhesion of rabbit platelets to damaged aorta and serotonin release by adherent platelets.

The effects of ZK 36374, a prostacyclin analogue, were studied on adhesion of rabbit platelets to damaged rabbit aorta and on activation of platelets (judged by release of serotonin and formation of thromboxane-B2) in response to the processes of adhesion to the vessel surface and aggregation in response to microfibrillar collagen in suspension. In the presence of ZK 36374 (10-100 nmol/l), platelet adhesion and thromboxane-B2 formation were progressively reduced. The extent of serotonin release from adherent platelets was similar to that found for platelets aggregated with collagen. However, higher concentrations of ZK 36374 were required to inhibit serotonin release from adherent platelets than from aggregated platelets. The results indicate that ZK 36374 acts similarly to native prostacyclin on adhesion and collagen-induced aggregation and unlike previously described analogues is equipotent. The mechanism of release of serotonin induced by adhesion of platelets is less sensitive to the action of ZK 36374 than that of release induced by aggregation in response to microfibrillar collagen in suspension.

6-Ketoprostaglandin F1 alpha↗

In vivo platelet activation in atherothrombotic stroke is not determined by polymorphisms of human platelet glycoprotein IIIa or Ib.

Platelet membrane glycoprotein polymorphisms are candidate risk factors for thrombosis, but epidemiological data are conflicting. Thus, demonstration of a genotype-dependent alteration in function is desirable to resolve these inconsistencies. We investigated in vivo platelet activation in acute thrombosis and related this to platelet genotype. Frequencies of the 1b and 2b alleles of the HPA 1a/1b and HPA 2a/2b platelet glycoprotein polymorphisms were determined in 150 (52 men/98 women, mean age 58.3 years) patients with atherothrombotic stroke, and the influence of genotype on markers of platelet activation was assessed. Platelet P-selectin (CD62P) expression and fibrinogen binding was measured using whole blood flow cytometry within 24 h of stroke and 3 months later in 77 patients who provided a repeat blood sample. Results were compared with matched controls. Neither the 1b allele [allele frequency 0.11 vs. 0.13, odds ratio (OR) confidence interval (CI) 0.8 (0.5-1.3)] nor the 2b allele [0.09 vs. 0.07, OR (CI) 1.4 (0.8-2.4)] was significantly over-represented in patients. Increased numbers of activated platelets were found following stroke (acute mean P-selectin expression 0.64% vs. control 0.35%, P < 0.001; acute mean fibrinogen binding 1.6% vs. control 0.9%, P < 0.001). Activation persisted in the convalescent phase (P < 0.001 and P = 0.005 vs. controls for P-selectin and fibrinogen respectively). Expression of P-selectin and fibrinogen was not influenced by either the HPA 1a/1b genotype (P > 0.95 for each marker, Scheffe's test) or the 2a/2b genotype (P > 0.95 for each). Although persisting platelet activation is seen in atherothrombotic stroke, it is independent of HPA 1a/1b and 2a/2b genotypes. These data suggest an underlying prothrombotic state, but do not support the polymorphisms studied as risk factors for thrombotic stroke in this population.

Case-Control Studies↗

The influence of bromelain on platelet count and platelet activity in vitro.

Bromelain is a general name for a family of sulfhydryl-containing, proteolytic enzymes from the pineapple plant. The aim of the present study was to investigate the influence of bromelain on platelet count, platelet aggregation and platelet activity in vitro. Blood samples were taken from the antecubital vein of 10 healthy male non-smokers. Platelet count decreased after incubation with 2.5 and 5 mg bromelain/ml from 277 +/- 17 platelets/nl before to 256 +/- 21 and 247 +/- 19 platelets/nl after the treatment. The ADP and TRAP-6 induced platelet aggregation led to a significant decrease after the incubation with 2.5 mg (ADP: 48.6 +/- 25.7%; TRAP-6: 49.6 +/- 28.9%) or 5 mg (ADP: 5.0 +/- 4.6%; TRAP-6: 9.0 +/- 4.9%) bromelain/ml in comparison to control (ADP: 81.4 +/- 5.0%; TRAP-6: 77.4 +/- 10.4%). The percentage of unstimulated CD62P positive platelets which were investigated by flow cytometry was minimally higher after incubation with 5 mg bromelain/ml (0.57 +/- 0.48% PC) in comparison to control (0.22 +/- 0.11% PC), but after TRAP-6 stimulation the incubation with 5 mg bromelain/ml led to a remarkable decrease in comparison to the untreated control (50.4 +/- 20.2 to 0.9 +/- 0.8% PC). The changes of CD62P (TRAP-stimulated) and the results of platelet aggregation after incubation with bromelain in vitro may demonstrate the potential of bromelain as a substance for platelet inhibition.

Adenosine Diphosphate↗

Differential actions of naftopidil, doxazosin and nifedipine on platelet thromboxane generation and platelet-derived growth factor efflux in vitro.

We examined the effects of the alpha(1)-adrenoreceptor blockers naftopidil and doxazosin and the Ca(2+) antagonist nifedipine on platelet function with reference to stimulus-induced thromboxane (TxB(2)) generation and platelet-derived growth factor (PDGF) efflux. Collagen (5 micro g/ml) caused a 12.5-fold increase in TxB(2) generation, from a basal level of 7.69 +/- 1.28 ng/10(8) platelets to 96.34 +/- 13.37 ng/10(8) platelets (P<0.001). Adrenaline (16 micro M) increased TxB(2) production 3-fold from 2.44 +/- 0.61 to 8.02 +/- 1.08 ng/10(8) platelets (P<0.01). Adrenaline-induced TxB(2) generation was inhibited 42.5 +/- 10.3% (P<0.05) and 81.8 +/- 7.5% (P<0.05) by 10 and 40micro M naftopidil, respectively. Collagen-stimulated TxB(2) generation was inhibited 59.5 +/- 9.2% (P<0.01) by 40 micro M naftopidil and 53.7 +/- 11.3% (P<0.01) by 28 micro M nifedipine. Doxazosin (7.5 and 30 micro M) did not influence adrenaline- or collagen-induced TxB(2) synthesis. Collagen increased PDGF efflux from 1.17 +/- 0.39 to 4.25 +/- 0.51 ng/10(8) platelets (P<0.01), whilst adrenaline raised concentrations from 1.08 +/- 0.19 to 5.37 + 1.02 ng/10(8) platelets (P<0.01). Naftopidil had no effect on collagen-induced PDGF release. Adrenaline-stimulated PDGF efflux was, however, inhibited 82.9 +/- 13.7% (P<0.001) and 125.7 +/- 16.3% (P<0.001) by 10 and 40 micro M naftopidil, respectively. Doxazosin (30 micro M) inhibited adrenaline-induced PDGF release by 70.3 +/- 31.5% (P<0.05), whilst nifedipine (28 micro M) had no effect on collagen-stimulated release. We conclude that naftopidil, like nifedipine, may block stimulated TxB(2) generation via inhibition of phospholipase A(2), the Ca(2+)-dependent, rate-limiting enzyme in thromboxane synthesis. Although adrenaline-induced PDGF release was inhibited by naftopidil and doxazosin, collagen-induced release was unaffected by either alpha(1)-adrenoreceptor blocker or nifedipine, indicating that platelet alpha-granular release is not dependent on Ca(2+) mobilisation or thromboxane generation. Thus, the effects of these drugs on PDGF release may be mediated through alternative cellular signalling mechanisms.

Adrenergic alpha-Antagonists↗

Role of cyclic AMP in adenosine inhibition of intracellular calcium rise in human platelets. Comparison of adenosine effects on thrombin- and epinephrine-induced platelet stimulation.

Thrombin-induced platelet aggregation is associated with an increase in intracellular calcium. Epinephrine provokes aggregation in the absence of a rise in intracellular calcium. Adenosine has been postulated as an endogenous inhibitor of platelet aggregation. In this study, the authors examine the effect of adenosine on the rise in intracellular calcium and on platelet aggregation, and the role of cyclic AMP (cAMP) in these actions. Human platelets were obtained from citrated plasma containing 5 micrograms/mL of indomethacin. Intracellular calcium was determined by fura-2 fluorescent dye. Adenosine inhibited thrombin-induced platelet aggregation and the rise in intracellular calcium in a dose-dependent manner. At a concentration of 100 mumol/L, adenosine completely inhibited thrombin-induced aggregation, but only partly inhibited the rise in intracellular calcium (55%). Adenosine also partially inhibited the rise in calcium produced by thrombin in both calcium-containing and calcium-free media, suggesting that adenosine inhibits both calcium influx and calcium mobilization. The effects of adenosine on intracellular calcium, as in the case of platelet aggregation, appear to be linked to adenylate cyclase, since they were prevented by the adenylate cyclase inhibitor 2',5'-dideoxyadenosine (1-mmol/L) and were potentiated by phospho-diesterase inhibition with papaverine (1 mumol/L). Adenosine and dibutyryl-cAMP also inhibited epinephrine-stimulated platelet aggregation in a dose-dependent manner. Thus, it appears that adenosine may inhibit platelet aggregation independently of its ability to decrease cytosolic free calcium.

Adenosine↗

High-dose droperidol protects against experimental coronary thrombosis in dogs and pigs and attenuates aggregation of porcine platelets and Ca2+ mobilization in human platelets.

BACKGROUND: Activation of platelets after contact with thrombogenic substrates may be an early factor leading to coronary artery thrombosis and myocardial infarction. Haloperidol, a butyrophenone, possesses weak in vitro platelet inhibitory activity. Experiments were designed to determine whether droperidol, a butyrophenone adjunct to anesthesia, protected against experimental coronary thrombosis in intravenously anesthetized open-chest dogs and pigs, attenuated ex vivo porcine platelet aggregation, and inhibited agonist-induced increases in [Ca2+]i in human platelets. METHODS: In dogs and pigs, a lesion consisting of deendothelialization, deep vessel wall injury, and critical stenosis was created in the proximal circumflex arteries, resulting in coronary thrombus formation accompanied by decreased circumflex artery blood flow. Embolization of the thrombus restored flow, but the cycle then repeated, resulting in repetitive cyclical flow reductions (CFRs). These were measured using an electromagnetic flow probe. RESULTS: In dogs, droperidol 0.2 mg/kg intravenous rapidly abolished CFRs in all ten animals, with frequency decreasing from 0.22 +/- 0.01 cycles/min to 0. Droperidol 0.8 mg/kg intravenous rapidly abolished CFRs in seven of eight pigs, with frequency decreasing from 0.15 +/- 0.01 to 0.02 cycles/min (P < 0.005). In both species, additional doses of droperidol were effective against CFRs augmented with intravenous epinephrine, a catecholamine that stimulates thrombosis. Ex vivo platelet aggregation studies were performed in platelet-rich plasma obtained from pigs before and after droperidol 0.8 mg/kg intravenous. Pretreatment with the drug resulted in marked inhibition of aggregation evoked by collagen, modest attenuation of that elicited by adenosine diphosphate (ADP), but no effect on that evoked by arachidonic acid. In human platelets, apparent [Ca2+]i was estimated using the fluorescent indicator indo-1 and flow cytometry. Droperidol 10(-7), 10(-6), and 10(-5)M had a dose-dependent inhibitory effect on the amplitude of increases in [Ca2+]i evoked by 10(-5)M serotonin (plus 10(-7)M epinephrine). The higher droperidol concentration decreased the response to as much as 30% of control (P < 0.001). Droperidol lacked effect on Ca2+ mobilization elicited with 10(-6)M ADP. CONCLUSIONS: The results from three experimental models indicate that droperidol attenuates experimental coronary thrombosis in animals and suggest that this inhibition may result, in part, from a direct droperidol depressant effect on platelet activation and aggregation.

Adenosine Diphosphate↗