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Biomedical subjects

G Pescarmona

Publications and source records attributed to G Pescarmona.

At least 19 recordsLinked to original sources

Human endothelial cells are target for platelet-activating factor. II. Platelet-activating factor induces platelet-activating factor synthesis in human umbilical vein endothelial cells.

Platelet-activating factor (PAF), a phospholipid mediator with broad and potent biologic activities, is synthesized by several inflammatory cells including endothelial cells (EC). PAF is also an effective stimulating agent for EC leading to increased cell permeability and adhesivity. We examined the synthesis of PAF in human umbilical cord vein EC after stimulation of EC with PAF or with its nonmetabolizable analog 1-O-alkyl-2-N-methyl-carbamyl-sn-glycero-3-phosphocholine (C-PAF). PAF (1 to 100 nM) induced a dose- and time-dependent increase of PAF synthesis as detected by [3H]acetate incorporation into PAF fraction. Stimulation of PAF synthesis occurred via activation of the "remodeling pathway" as the 1-O-alkyl-2-lyso-sn-glycero-3-phosphocholine (lyso-PAF):acetyl-CoA acetyltransferase was dose-dependently increased after PAF treatment. The de novo pathway of PAF synthesis was not activated under these conditions. C-PAF was able to mimic the effect of authentic PAF on [3H] acetate incorporation. The inactive metabolite lyso-PAF (100 nM) had no influence on PAF synthesis in EC. CV-3988, BN 52021, and WEB 2086, potent and specific antagonists of PAF suppressed PAF effects on the remodeling pathway completely. The PAF- and C-PAF-induced [3H]PAF remained 93% cell-associated and was not degraded up to 10 min after stimulation. Characterization of the [3H]acetate-labeled material co-migrating with authentic PAF revealed that a significant proportion (approximately 57%) was actually 1-acyl-2-acetyl-sn-glycero-3-phosphocholine. PAF-induced PAF synthesis might be an important mechanism for amplifying original PAF signals and potentiating adhesive interactions of circulating cells with the endothelium.

Acetates

Nitrovasodilators inhibit thrombin-induced platelet-activating factor synthesis in human endothelial cells.

In response to inflammatory agents such as thrombin, cultured endothelial cells produce platelet-activating factor (PAF), which has been linked with most inflammatory and immune processes, and is a potent coronary constrictor. Sodium nitroprusside (SNP) and SIN-1 (3-morpholinosydnonimine), which spontaneously release the free radical nitric oxide (NO), cause direct relaxation of blood vessels and inhibition of platelet aggregation by activating soluble guanylate cyclase. In the present study we report that in human umbilical vein endothelial cells (HUVEC) these compounds stimulate the production of cGMP and inhibit thrombin-induced PAF synthesis in a concentration-dependent manner. 8-bromo-cGMP, a permeant non-hydrolysable analogue of cGMP, mimics the inhibitory effect of NO-generating vasodilators. PAF synthesis requires phospholipase A2-mediated hydrolysis of membrane precursors to lyso-PAF, which is in turn converted into PAF by an acetyltransferase. The thrombin-elicited activation of both enzymes is inhibited in a dose-dependent way in HUVEC pretreated with SNP and SIN-1. The inhibitory effect of SNP and SIN-1 on the thrombin-mediated PAF synthesis suggests a new mechanism of action whereby the endogenous NO can affect vascular tone and endothelium-dependent intercellular adhesion. Moreover, PAF production in endothelial cells appears to be an important target for the pharmacological action of nitrovasodilators.

Acetyltransferases

Characterization of a new compound, S35b, as a guanylate cyclase activator in human platelets.

The effects of S35b (4-methyl-3-phenyl sulfonylfuroxan), a new phenyl sulfonylfuroxan compound, were investigated on human platelets activated by different agonists. Platelet aggregation evoked by arachidonic acid (AA), collagen, ADP and thrombin was inhibited by the drug in a dose-dependent manner. S35b inhibited the AA-induced increase of cytosolic free Ca2+ ([Ca2+]i) and production of malondialdehyde. A primary action of the compound on cyclooxygenase is unlikely since: (1) U-46619 (15s-hydroxy-11,9-[epoxymethano]-prosta-5Z,13E-dienoic acid, a stable epoxymethano analog of prostaglandin H2) could not reverse the inhibitory effect of S35b on AA-induced aggregation and [Ca2+]i increase; (2) U-46619-induced aggregation and [Ca2+]i rise were inhibited by S35b; and (3) at high collagen concentrations platelet aggregation (which is unresponsive to aspirin under such conditions) was blocked by S35b as well. Thus the drug action is likely to be exerted at an early step of the platelet activation pathway. The elevation in the platelet cGMP level evoked by S35b in a time- and concentration-dependent manner can account for the inhibitory effect: increased cGMP levels could interfere, for instance, with G protein-phospholipase C coupling and subsequent phosphoinositide hydrolysis.

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

Stimulation of platelet-activating factor synthesis in human endothelial cells by activation of the de novo pathway. Phorbol 12-myristate 13-acetate activates 1-alkyl-2-lyso-sn-glycero-3-phosphate:acetyl-CoA acetyltransferase and dithiothreitol-insensitive 1-alkyl-2-acetyl-sn-glycerol:CDP-choline cholinephosphotransferase.

Human umbilical vein endothelial cells (HUVEC) produce platelet-activating factor (PAF) by a remodeling pathway involving a phospholipase A2 followed by an acetyl-CoA-dependent acetyltransferase which acetylates a lyso-PAF intermediate to form PAF and is stimulated by a variety of agents that generate inflammatory and allergic responses. A second route for PAF synthesis in mammalian tissues is a de novo pathway, which requires the participation of three enzymes: 1-alkyl-2-lyso-sn-glycero-3-phosphate (alkyllyso-GP): acetyl-CoA acetyltransferase, 1-alkyl-2-acetyl-sn-glycero-3-phosphate phosphohydrolase, and dithiothreitol (DDT)-insensitive 1-alkyl-2-acetyl-sn-glycerol (alkylacetyl-G):CDP-cholinecholinephosphotransferase. In the present study we show that protein kinase C activation by phorbol 12-myristate 13-acetate (PMA) induces PAF production in HUVEC by an increase of both alkyllyso-GP:acetyl-CoA acetyltransferase and DTT-insensitive alkylacetyl-G:CDP-choline choline-phosphotransferase. PAF synthesis, labeled precursors [( 3H]acetate and [methyl-3H]choline) incorporation, and both enzyme activities of the de novo pathway increase concomitantly in response to different doses of PMA. PMA does not activate the enzymes of the remodeling pathway. We conclude that both remodeling and the de novo pathway for PAF synthesis are present in HUVEC and might be alternatively activated depending on the conditions of cell stimulation.

Acetates

Protein kinase C and cyclic AMP modulate thrombin-induced platelet-activating factor synthesis in human endothelial cells.

Stimulation of human endothelial cells (EC) by thrombin elicits a rapid increase of intracellular free Ca2+ [(Ca2+]i), platelet-activating factor (PAF) production and 1-O-alkyl-2-lyso-sn-glycero-3- phosphocholine (lyso-PAF): acetyl-CoA acetyltransferase (EC 2.3.1.67) activity. The treatment of EC with thrombin leads to a 90% decrease in the cytosolic protein kinase C (PKC) activity; this dramatic decline is accompanied by an increase of the enzymatic activity in the particulate fraction. The role of PKC in thrombin-mediated PAF synthesis has been assessed: (1) by the blockade of PKC activity with partially selective inhibitors (palmitoyl-carnitine, sphingosine and H-7); (2) by chronic exposure of EC to phorbol 12-myristate 13-acetate (PMA), which results in down-regulation of PKC. In both cases, a strong inhibition of thrombin-induced PAF production is observed, suggesting obligatory requirement of PKC activity for PAF synthesis. It is suggested that PKC regulates EC phospholipase A2 (PLA2) activity as thrombin-induced arachidonic acid (AA) release is 90% inhibited in PKC-depleted cells. Brief exposure of EC to PMA strongly inhibits thrombin-induced [Ca2+]i rise, acetyltransferase activation and PAF production, suggesting that, in addition to the positive forward action, PKC provides a negative feedback control over membrane signalling pathways involved in the thrombin effect on EC. Forskolin and iloprost, two agents that increase the level of cellular cAMP in EC, are very effective in inhibiting thrombin-evoked cytosolic Ca2+ rise, acetyltransferase activation and PAF production; this suggests that endogenously generated prostacyclin (PGI2) may modulate the synthesis of PAF in human endothelial cells.

Acetyltransferases

Na+/H+ antiporter has different properties in human B lymphocytes according to CD5 expression and malignant phenotype.

In B chronic lymphocytic leukemia (B-CLL) cells, lipopolysaccharide (LPS) and phorbol esters fail to activate the plasma membrane-associated Na+/H+ antiporter and, subsequently, to elicit a rise in cytosolic pH. Since these events are thought to be a prerequisite for LPS-induced proliferation of B normal lymphocytes, we analyzed the kinetic properties of Na+/H+ antiporter in B-CLL cells as compared to both CD5- and CD5+ normal B lymphocytes. In the present work we report that Na+/H+ exchange rate after acid loading is drastically decreased in B-CLL cells, as compared to normal CD5- B lymphocytes, although the antiporter affinity for external Na+ and internal H+ is not significantly different in both cell populations. Kinetic data account for a reduction in the number of operating antiport units in B-CLL. The Na+/H+ antiporter of CD5+ normal B lymphocytes exhibits both an exchange rate and an ion affinity significantly higher than that observed in both CD5+ B-CLL cells and CD5- B normal lymphocytes, thus suggesting a possible explanation for their activated phenotype.

Antigens, CD

Release of platelet-activating factor in systemic lupus erythematosus.

The biologically active 1-O-alkyl-2-acetyl-sn-glyceryl-3-phosphorylcholine (platelet-activating factor; PAF) is inactivated in plasma mainly by a specific PAF acetylhydrolase (1-alkyl-2-acetyl-sn-glyceryl-3-phosphorylcholine acetylhydrolase; EC 3.1.1.48). In the present study, PAF was released in detectable amounts (5.4 +/- 2.9 ng/ml; mean +/- 1 SD) in the plasma of 8 out of 10 patients with systemic lupus erythematosus (SLE) during the most active phases of the disease. PAF was never detectable in the plasma of patients with inactive SLE or of healthy subjects. PAF acetylhydrolase activity was markedly reduced in sera of 10 patients with active SLE as compared to 7 patients with inactive SLE, 16 patients with rheumatoid arthritis (RA), 5 patients with nephrotic syndrome (NS) and 15 healthy subjects. A kinetic study of the enzyme in patients with active SLE suggested an overall reduced activity rather than an intrinsic defect of the enzyme. PAF acetylhydrolase in sera of patients with active SLE shared with that of healthy subjects the same substrate specificity, sensitivity to enzymatic and chemicophysical treatments and association to low-density lipoprotein (LDL), acting as carrier of PAF acetylhydrolase in plasma. However, the protein concentration of LDL was significantly reduced in patients with active SLE as compared to patients with inactive SLE, RA and NS and to healthy subjects, thereby suggesting that the reduction of PAF acetylhydrolase activity in active SLE might be due at least in part to a carrier defect related to the activity of the disease. In addition, experiments in which serum of patients with active SLE and serum of healthy subjects were mixed in different combinations indicated the absence of factors inhibiting PAF acetylhydrolase activity in SLE patients.

1-Alkyl-2-acetylglycerophosphocholine Esterase

Stimulation of the Na+/H+ exchanger in human endothelial cells activated by granulocyte- and granulocyte-macrophage-colony-stimulating factor. Evidence for a role in proliferation and migration.

It has been shown that human endothelial cells (HEC) are stimulated to migrate and proliferate by granulocyte (G)- and granulocyte-macrophage (GM)-colony-stimulating factor (CSF) (Bussolino, F., Wang, J. M., Defilipii, P. Turrini, F., Sanavio, F., Edgell, C.-J. S., Aglietta, M., Arese, P., and Mantovani, A. (1989) Nature 337, 471-473). The rapid intracellular events initiated by these cytokines on binding to their receptors on HEC are not defined. Addition of G- or GM-CSF to HEC produced a rapid activation of Na+/H+ exchanger resulting in an increase in intracellular pH (pHi). Both cytokines induced an alkaline displacement in the pHi dependence of the exchanger without affecting the affinity for external Na+ (Nao) and the rate of exchanger. Ethylisopropylamiloride, a selective inhibitor of the Na+/H+ exchanger, inhibited the intracellular alkalinization, the migration, and proliferation induced by G- and GM-CSF. The data indicate that G- and GM-CSF initiate a rapid exchange of Na+ and H+ by means of the Na+/H+ exchanger and that this ethylisopropylamiloride-sensitive ions flux is important to the biological effects of these cytokines on HEC.

Amiloride

Role of Na+/H+ exchange in thrombin-induced platelet-activating factor production by human endothelial cells.

Thrombin-stimulated endothelial cells produce platelet-activating factor (PAF) in a dose-dependent manner: the activation of a Ca2+-dependent lyso-PAF acetyltransferase is the rate-limiting step in this process. The present study shows that acetyltransferase activation and consequent PAF production induced by thrombin in human endothelial cells are markedly inhibited in Na+-free media or after addition of the amiloride analog 5-(N-ethyl-N-isopropyl)amiloride, suggesting that a Na+/H+ antiport system is present in endothelial cells and plays a prominent role in thrombin-induced PAF synthesis. Accordingly, thrombin elicits a sustained alkalinization in 6-carboxyfluorescein-loaded endothelial cells, that is abolished in either Na+-free or 5-(N-ethyl-N-isopropyl)amiloride-containing medium. Extracellular Ca2+ influx induced by thrombin (as measured by quin2 and 45Ca methods) is completely blocked in the same experimental conditions, and monensin, a Na+/H+ ionophore mimicking the effects of the antiporter activation, evokes a dose-dependent PAF synthesis and a marked Ca2+ influx, which are abolished in Ca2+-free medium. An amiloride-inhibitable Na+/H+ exchanger is present in the membrane of human endothelial cells, its apparent Km for extracellular Na+ is 25 mM, and its activity is greatly enhanced when the cytoplasm is acidified. These results suggest that Na+/H+ exchange activation by thrombin and the resulting intracellular alkalinization play a direct role in the induction of Ca2+ influx and PAF synthesis in human endothelial cells.

Acetyltransferases

Role of Na+/H+ exchange in thrombin- and arachidonic acid-induced Ca2+ influx in platelets.

Platelet activation is accompanied by an increase of cytosolic free Ca2+ concentration, [Ca2+]i, (due to both extracellular Ca2+ influx and Ca2+ movements from the dense tubular system) and an Na+ influx associated with H+ extrusion. The latter event is attributable to the activation of Na+/H+ exchange, which requires Na+ in the extracellular medium and is inhibited by amiloride and its analogs. The present study was carried out to determine whether a link exists between Ca2+ transients (measured by the quin2 method and the 45CaCl2 technique) and Na+/H+ exchange activation (studied with the pH-sensitive intracellular probe, 6-carboxyfluorescein) during platelet stimulation. Washed human platelets, stimulated with thrombin and arachidonic acid, showed: (1) a large and rapid [Ca2+]i rise, mostly due to a Ca2+ influx through the plasma membrane; (2) a marked intracellular alkalinization. Both phenomena were markedly inhibited in the absence of extracellular Na+ or in the presence of an amiloride analog (EIPA). Monensin, a cation exchanger which elicits Na+ influx and alkalinization, and NH4Cl, which induces alkalinization only, were able to evoke an increase in [Ca2+]i, mostly as an influx from the extracellular medium. Our results suggest that Ca2+ influx induced by thrombin and arachidonic acid in human platelets is strictly dependent on Na+/H+-exchange activation.

Ammonium Chloride

Regulation of arachidonic acid-dependent Ca++ influx in human platelets.

Quin2 was used to study the rise in cytoplasmic free calcium ([Ca++]i) and the role of prostaglandin (PG) endoperoxides/thromboxane A2 (TxA2), reduced glutathione (GSH), ADP and the glycoprotein (GP) IIb-IIIa complex in mediating [Ca++]i rise during arachidonic acid (AA)-induced platelet aggregation. Ca++ mobilization, mostly due to an influx across the plasma membrane, is completely inhibited by aspirin and persists after selective blockade of TxA2 synthase by dazoxiben. GSH total depletion causes a complete aggregation block and 90% inhibition of the transient: U-46619, a stable analog of cyclic endoperoxide PGH2, stimulates [Ca++]i transient in aspirin-treated or in GSH-depleted platelets. ADP-scavengers, ATP (which competes for the ADP receptor), and monoclonal antibodies against the GP IIb-IIIa complex reduce AA-induced Ca++ influx. Therefore, PG endoperoxides alone or a PGH2/TxA2 mimetic stimulate Ca++ influx. Synthesis of PGH2 and TxA2 depends on the availability of GSH, which acts as the reducing cofactor for the PG-peroxidase activity. ADP and GP IIb-IIIa are regulating factors of AA-mediated Ca++ influx during platelet activation.

Adenosine Diphosphate

Acetylcholine and dopamine promote the production of platelet activating factor in immature cells of chick embryonic retina.

We have previously shown that platelet-activating factor (PAF), a naturally occurring lipid mediator of cell-to-cell communication, was produced by 3-day-old chick retina stimulated with acetylcholine (ACh) and dopamine (DA), but not with other neurotransmitters. ACh and DA stimulated PAF synthesis via a dithiothreitol (DTT)-insensitive cholinephosphotransferase, without affecting the acetyltransferase pathway, which was stimulated only by the calcium ionophore A23187. Therefore, we attempted to study the effects of neurotransmitters on PAF production and on the activities of the DTT-insensitive cholinephosphotransferase and acetyltransferase in the developing chick embryo retina up to hatching. Our results show that PAF was produced already at 8 days of development, when retinal cells are still rather immature and ganglion and Mueller cells are the only differentiated cells. The stimulation of PAF production occurred with ACh and not with other neurotransmitters. In older stages, DA also stimulated PAF production, as already described in the chick after hatching. DTT-insensitive cholinephosphotransferase and acetyltransferase activities were present in 8-day-old embryos, the earliest stage analyzed. Both enzymatic activities increased with age; DTT-insensitive cholinephosphotransferase increased rapidly from day 12 up to day 18, whereas acetyltransferase activity increased linearly up to the time of hatching. To promote PAF production, ACh and DA activate DTT-insensitive cholinephosphotransferase, but not acetyltransferase.(ABSTRACT TRUNCATED AT 250 WORDS)

Acetylcholine

Free cytoplasmic Ca++ at rest and after cholinergic stimulus is increased in cultured muscle cells from Duchenne muscular dystrophy patients.

We used a fluorescent dye, quin 2, to measure intracellular free calcium ([Ca++]i) in cultured skeletal muscle cells and skin fibroblasts from five Duchenne muscular dystrophy (DMD) patients and from five controls. We observed an enhanced [Ca++]i level, at rest and after acetylcholine (ACh) stimulation, in DMD muscle cells, but we did not detect any difference between DMD and normal skin fibroblasts. The abnormally higher [Ca++]i transient induced by ACh suggests that it plays a critical role in muscle degeneration. The skin fibroblast results suggests that there is no generalized membrane defect.

Acetylcholine

The use of N-(2-mercaptopropionyl)-glycine (MPG) for preparation and storage of platelets.

The SH group containing drug MPG which inhibits platelet aggregation in a reversible manner was used as a cytoprotective substance in some experiments on preparation and storage of human platelets for transfusion. In vitro (n = 6): concentration, morphology score, HSR and aggregation of stored platelets were measured after simulating in vitro the post transfusional conditions by resuspension of stored platelets in fresh drawn plasma (pH 7.4, 37 degrees C). In vivo (n = 2): Autologous platelets stored for 48 h at 22 degrees C were labelled with 111In and retransfused. The results obtained from platelets prepared and stored in plasma containing MPG were compared with those obtained from control platelets without MPG.

Blood Platelets

Human endothelial cells are target for platelet-activating factor. I. Platelet-activating factor induces changes in cytoskeleton structures.

Platelet-activating factor (PAF), but not its deacetylated and biologically inactive metabolite lyso-PAF, in a dose dependent-manner (0.1 to 10 nM), induces human endothelial cells (EC) in culture to change their shape. EC retract and tend to lose reciprocal contact, whereas the distribution of stress fibers is changed and the cells tend to assume a migratory phenotype. The normal localization of vinculin at streaks corresponding to adhesion plaques and located at stress fiber endings is mostly lost and replaced by diffuse distribution of this protein related to the cell-substratum adhesion complex. The effects of PAF are appreciable after 10 min, become maximal after 30 min, and are fully reversible. The disappearance of F-actin in stimulated EC was analyzed by measuring the fluorescence of the cells after staining with fluorosceinated phalloidin, PAF, but not lyso-PAF and the enantiomer of PAF ([S] form), decreases in a time- and concentration-dependent fashion the fluorescence of the cells stained with fluoresceinated phalloidin. EC grown on fibronectin-coated polycarbonate filters restrict the diffusion of 125I-albumin; PAF promotes 125I-albumin diffusion with a concentration dependency similar to that for the PAF-induced cytoskeleton changes. Four different PAF-receptor antagonists belonging to four different series, CV-3988 (PAF-related framework), BN52021 (a natural terpenoid), BN53013 (a natural lignan) and 48740 RP (a synthetic antagonist) prevent the alteration induced by PAF. These findings, coupled to the lack of effect of the enantiomer of PAF ([S] form), support the existence of a specific mechanism of PAF-mediated activation of EC, most probably mediated by a putative receptor. These results explain part of the PAF mechanism of action in inducing the increase of vascular permeability in vivo.

Actin Cytoskeleton