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A Monopoli

Publications and source records attributed to A Monopoli.

At least 19 recordsLinked to original sources

The nitric oxide-donating pravastatin derivative, NCX 6550 [(1S-[1alpha(betaS*, deltaS*), 2alpha, 6alpha, 8beta-(R*), 8a alpha]]-1,2,6,7,8,8a-Hexahydro-beta, delta, 6-trihydroxy-2-methyl-8-(2-methyl-1-oxobutoxy)-1-naphtalene-heptanoic acid 4-(nitrooxy)butyl ester)], reduces splenocyte adhesion and reactive oxygen species generation in normal and atherosclerotic mice.

Statins possess anti-inflammatory effects that may contribute to their ability to slow atherogenesis, whereas nitric oxide (NO) also influences inflammatory cell adhesion. This study aimed to determine whether a novel NO-donating pravastatin derivative, NCX 6550 [(1S-[1alpha(betaS*,deltaS*),2alpha,6alpha,8beta-(R*),8a alpha]]-1,2,6,7,8,8a-hexahydro-beta,delta,6-trihydroxy-2-methyl-8-(2-methyl-1-oxobutoxy)-1-naphthalene-heptanoic acid 4-(nitrooxy)butyl ester)], has greater anti-inflammatory properties compared with pravastatin in normal and atherosclerotic apolipoprotein E receptor knockout (ApoE-/-) mice. C57BL/6 and ApoE-/- mice were administered pravastatin (40 mg/kg), NCX 6550 (48.5 mg/kg), or vehicle orally for 5 days. Ex vivo studies assessed splenocyte adhesion to arterial segments and splenocyte reactive oxygen species (ROS) generation. NCX 6550 significantly reduced splenocyte adhesion to artery segments in both C57BL/6 (8.8 +/- 1.9% versus 16.6 +/- 6.7% adhesion; P < 0.05) and ApoE-/- mice (9.3 +/- 2.9% versus 23.4 +/- 4.6% adhesion; P < 0.05) concomitant with an inhibition of endothelial intercellular adhesion molecule-1 expression. NCX 6550 also significantly reduced phorbol 12-myristate 13-acetate-induced ROS production that was enhanced in isolated ApoE-/- splenocytes. Conversely, pravastatin had no significant effects on adhesion in normal or ApoE-/- mice but reduced the enhanced ROS production from ApoE-/- splenocytes. In separate groups of ApoE-/- mice, NCX 6550 significantly enhanced endothelium-dependent relaxation to carbachol in aortic segments precon-tracted with phenylephrine (-logEC(50), 6.37 +/- 0.37) compared with both vehicle-treated (-logEC50, 5.81 +/- 0.15; P < 0.001) and pravastatin-treated (-logEC50, 5.57 +/- 0.45; P < 0.05) mice. NCX 6550 also significantly reduced plasma monocyte chemoattractant protein-1 levels (648.8 pg/ml) compared with both vehicle (1191.1 pg/ml; P < 0.001) and pravastatin (847 +/- 71.0 pg/ml; P < 0.05) treatment. These data show that NCX 6550 exerts superior anti-inflammatory actions compared with pravastatin, possibly through NO-related mechanisms.

Animals↗

A novel nitric oxide-releasing statin derivative exerts an antiplatelet/antithrombotic activity and inhibits tissue factor expression.

BACKGROUND: NO-releasing statins are new chemical entities, combining HMG-CoA reductase inhibition and slow NO release, that possess stronger anti-inflammatory and antiproliferative activities than the native statins. OBJECTIVE: We evaluated the antithrombotic effects of nitropravastatin (NCX-6550) by assessing its activity on platelet activation and tissue factor (TF) expression by mononuclear cells in vitro and in vivo. METHODS AND RESULTS: In vitro, NCX-6550 inhibited (1) U46619- and collagen-induced platelet aggregation in buffer and plasma; (2) collagen-induced P-selectin expression in whole blood and (3) platelet adhesion to collagen-coated coverslips under high shear stress. These effects were displayed at concentrations of NCX-6550 ranging from 25 to 100 mum, and were totally reverted by the guanylylcyclase inhibitor ODQ (10 microm). Equimolar concentrations of pravastatin had no influence on these parameters of platelet function. LPS- and PMA-induced TF expression by blood mononuclear cells was also inhibited by NCX-6550 (IC50 13 microm), but not by pravastatin, as assessed by functional and immunological assays and by real-time PCR. In a mouse model of platelet pulmonary thromboembolism, induced by the i.v. injection of collagen plus epinephrine, pretreatment with NCX-6550 (24-48 mg kg(-1)) significantly reduced platelet consumption, lung vessel occlusion and mortality. Moreover, nitropravastatin markedly inhibited the generation of procoagulant activity by spleen mononuclear cells and peritoneal macrophages in mice treated with LPS. In these in vivo models too, pravastatin failed to affect platelet activation and monocyte/macrophage procoagulant activity. CONCLUSIONS: Our results show that nitropravastatin exerts strong antithrombotic effects in vitro and in vivo, and may represent an interesting antiatherothrombotic agent for testing in acute coronary syndromes.

Animals↗

Production of leukotrienes in a model of focal cerebral ischaemia in the rat.

1. The aim of this work was to evaluate the role of leukotrienes in brain damage in vivo in a model of focal cerebral ischaemia in the rat, obtained by permanent occlusion of middle cerebral artery. 2. A significant (P < 0.01) elevation of LTC(4), LTD(4) and LTE(4) (cysteinyl-leukotrienes) levels occurred 4 h after ischaemia induction in the ipsilateral cortices of ischaemic compared to sham-operated animals (3998 +/- 475 and 897 +/- 170 fmol g(-1) tissue, respectively, P < 0.01). 3. The NMDA receptor antagonist MK-801 and the adenosine A(2A) receptor antagonist SCH 58261 were administered in vivo at doses known to reduce infarct size and compared with the leukotriene biosynthesis inhibitor MK-886. 4. MK-886 (0.3 and 2 mg kg(-1) i.v.) and MK-801 (3 mg kg(-1) i.p.) decreased cysteinyl-leukotriene levels (-78%, P < 0.05; -100%, P < 0.01; -92%, P < 0.01, respectively) 4 h after permanent occlusion of the middle cerebral artery, whereas SCH 58261 (0.01 mg kg(-1) i.v.) had no significant effects. 5. MK-886 (2 mg kg(-1) i.v.) was also able to significantly reduce the cortical infarct size by 30% (P < 0.05). 6. We conclude that cysteinyl-leukotriene formation is associated with NMDA receptor activation, and that it represents a neurotoxic event, the inhibition of which is able to reduce brain infarct area in a focal ischaemic event.

Animals↗

Rapamycin, but not FK506 and GPI-1046, increases neurite outgrowth in PC12 cells by inhibiting cell cycle progression.

Immunophilin ligands such as rapamycin, FK506 and GPI-1046 have been reported to increase neurite outgrowth in vitro and to have neuroprotective activity in vitro and in vivo. In this study, however, FK506 and GPI-1046 (0.1-1000 nM) had little effect on neurite outgrowth in PC12 cells in either the presence or absence of nerve growth factor. In contrast, rapamycin markedly increased neurite outgrowth in PC12 cells in the presence of a low concentration of nerve growth factor (EC(50)=10 nM). Unlike FK506 and GPI-1046, rapamycin is an inhibitor of cell cycle progression. Other cell cycle inhibitors such as ciclopirox and flavopiridol also increased neurite outgrowth in PC12 cells in the presence of a low concentration of nerve growth factor (EC(50)=250 nM and 100 nM, respectively). The neuroprotective effects of FK506, rapamycin and GPI-1046 were also tested in a rodent model of permanent focal cerebral ischemia. FK506 and rapamycin decreased infarct volume by 40% and 37%, respectively, whereas GPI-1046 was ineffective. These data do not support the previous suggestion that FK506 and GPI-1046 increase neurite outgrowth of PC12 cells in vitro. Rapamycin increases neurite outgrowth of PC12 cells, an effect that can be ascribed to its ability to inhibit cell cycle progression. The neuroprotective effect of FK506 and rapamycin against cerebral ischemia is probably not due to differentiation of neuronal precursors or stimulation of neuronal regeneration.

Animals↗

Keratosis lichenoides chronica. Report of a case associated with B-cell lymphoma and leg panniculitis.

Keratosis lichenoides chronica (KLC) is a rare chronic dermatosis characterized by lichenoid hyperkeratotic papules arranged in a linear and reticular pattern, and seborrheic-dermatitis-like lesions on the face. Less frequently, palmoplantar keratoderma, nail dystrophies, mucosal as well as eye lesions are present. KLC affects adults and very few cases have been reported in childhood. Although infrequently, KLC has been associated with systemic diseases, including chronic infectious diseases, kidney disorders and lymphoma. Here we report the case of an adult KLC patient with skin, nail and mucosal involvement, and onset in the first year of life who developed a leg panniculitis and a mantle cell lymphoma. Following chemotherapy for the lymphoma, panniculitis resolved completely, and skin and mucosal KLC lesions ameliorated.

Adult↗

The spectrum of pericardial effusion in acute myocardial infarction: an echocardiographic study.

BACKGROUND: The aim of this study was to assess the prevalence of pericardial effusion in acute myocardial infarction and the different prognosis associated with distinct patterns of pericardial effusion (anechoic/hypoechoic vs hyperechoic effusion). METHODS: Five hundred eighty-five consecutive patients admitted to the Coronary Care Unit for acute myocardial infarction were initially considered. Forty of them were excluded due to a technically poor acoustic window. The remaining 545 patients were studied by two-dimensional echocardiography at admission, before discharge (after an average of 9 days in the Coronary Care Unit) and whenever there was an important change in the clinical status (chest pain, lipothymia or syncope, hemodynamic deterioration with systolic blood pressure < 90 mmHg, cardiac arrest). RESULTS: Pericardial effusion was found in 51 patients (9%). Three distinct textural patterns of pericardial effusion were noted on the basis of the echogenic properties: 1) anechoic or hypoechoic pericardial effusion was frequent (30 patients), mild or moderate and generally benign; 2) hyperechoic type "A" effusion pattern was rare (2 patients) and associated with fever, leukocytosis and pericardial rubs; 3) hyperechoic type "B" was frequent (19 patients), large and always associated with major complications (all cases cardiac tamponade and/or death). CONCLUSIONS: Pericardial effusion is not an uncommon finding in serial echo evaluation of patients with acute myocardial infarction, especially when infarction is anterior, extensive and Q wave. Echocardiographically detected pericardial effusion shows different textural patterns with hypoanechoic effusion more frequent, limited and prognostically benign than hyperechoic effusion larger and often associated with adverse events.

Aged↗

Role of A2A receptor in the modulation of myocardial reperfusion damage.

Adenosine protects myocardium from ischemia and reperfusion damage; however, the mechanism of action is still under discussion. We investigated whether (a) adenosine protects isolated crystalloid-perfused rabbit heart from ischemia/ reperfusion injury; (b) this action is receptor mediated and what receptor subtypes are involved, and (c) this action is dependent on an enhanced nitric oxide production. Our results showed a cardioprotective effect of adenosine (10(-4) M), of nonselective adenosine-receptor agonist 5'-N-ethyl-carboxamidoadenosine (NECA; 5 x 10(-6) M), and of A2A agonists CGS 21680 (10(-8) and 10(-6) M), 2-hexynylNECA (10(-7) M). On the contrary, A1 agonist CCPA (10(-8) and 10(-6) M) does not provide any protection. The effect has been achieved in terms of significant reduction in contracture development during reperfusion [diastolic pressure was 46.8 +/- 7.1 mm Hg (p < 0.01); 46.1 +/- 7.8 mm Hg (p < 0.01); 46.9 +/- 5.5 mm Hg (p < 0.01); and 59.3 +/- 6.7 mm Hg (p < 0.05) with 10(-4) M adenosine, 5 x 10(-6) M NECA, 10(-6) M CGS 21680, and 10(-7) M 2-hexynylNECA, respectively, versus 77.6 +/- 5.0 mm Hg in control]; reduced creatine phosphokinase release (13.5 +/- 1.6, 22.2 +/- 7.9, 14.2 +/- 3.3, and 14.1 +/- 4.5 U/gww in treated hearts vs. 34.6 +/- 7.2 U/gww in controls; p < 0.05); improved energy metabolism [adenosine triphosphate (ATP) content is 9.9 +/- 0.5, 10.4 +/- 0.6, 9.8 +/- 0.5, and 10.5 +/- 0.5 micromol/gdw in treated hearts vs. 7.6 +/- 0.2 micromol/gdw; p < 0.05]. Moreover, our data indirectly show a functional presence of A2A receptors on cardiomyocytes as the protection is A2A mediated and exerted only during reperfusion, although in the absence of blood and coronary flow changes. These activities appear independent of nitric oxide pathways, as adenosine and 2-hexynylNECA effects are not affected by the presence of a nitric oxide-synthase inhibitor (10(-4) M L-NNA).

Adenosine↗

Striatal outflow of adenosine, excitatory amino acids, gamma-aminobutyric acid, and taurine in awake freely moving rats after middle cerebral artery occlusion: correlations with neurological deficit and histopathological damage.

BACKGROUND AND PURPOSE: While a number of studies have investigated transmitter outflow in anesthetized animals after middle cerebral artery occlusion (MCAO) performed by craniectomy, studies have never been performed after MCAO induced by intraluminal filament. In addition, it has been reported that after MCAO, infarct volume correlates with functional outcome and with transmitter outflow, although there are no studies that demonstrate a direct correlation between transmitter outflow and functional outcome. The purpose of the present study was to assess excitatory amino acids, gamma-aminobutyric acid, taurine, and adenosine outflow in awake rats after intraluminal MCAO and to determine whether, in the same animal, outflow was correlated with neurological outcome and histological damage. METHODS: Vertical microdialysis probes were placed in the striatum of male Wistar rats. After 24 hours, permanent MCAO was induced by the intraluminal suture technique. The transmitter concentrations in the dialysate were determined by high-performance liquid chromatography. Twenty-four hours after MCAO, neurological deficit and histological outcome were evaluated. RESULTS: All transmitters significantly increased after MCAO. Twenty-four hours after MCAO, the rats showed a severe sensorimotor deficit and massive ischemic damage in the striatum and in the cortex (9+/-2% and 25+/-6% of hemispheric volume, respectively). Significant correlations were found between the efflux of all transmitters, neurological score, and striatal infarct volume. CONCLUSIONS: In this study, for the first time, amino acid and adenosine extracellular concentrations during MCAO by the intraluminal suture technique were determined in awake and freely moving rats, and a significant correlation was found between transmitter outflow and neurological deficit. The evaluation of neurological deficit, histological damage, and transmitter outflow in the same animal may represent a useful approach for studying neuroprotective properties of new drugs/agents against focal ischemia.

Adenosine↗

Blockade of adenosine A2A receptors by SCH 58261 results in neuroprotective effects in cerebral ischaemia in rats.

Blockade of adenosine receptors can reduce cerebral infarct size in the model of global ischaemia. Using the potent and selective A2A adenosine receptor antagonist, SCH 58261, we assessed whether A2A receptors are involved in the neuronal damage following focal cerebral ischaemia as induced by occluding the left middle cerebral artery. SCH 58261 (0.01 mg/kg either i.p. or i.v.) administered to normotensive rats 10 min after ischaemia markedly reduced cortical infarct volume as measured 24 h later (30% vs controls, p < 0.05). Similar effects were observed when SCH 58261 (0.01 mg/kg, i.p.) was administered to hypertensive rats (28% infarct volume reduction vs controls, p < 0.05). Neuroprotective properties of SCH 58261 administered after ischaemia indicate that blockade of A2A adenosine receptors is a potentially useful biological target for the reduction of brain injury.

Animals↗

A2A-adenosine receptor reserve for coronary vasodilation.

BACKGROUND: Adenosine is a potent coronary vasodilator and causes an increase of coronary blood flow by activation of A2A-adenosine receptors (A2A-AdoRs). The purpose of this study was to test the hypothesis that the high potency of adenosine and adenosine analogues to cause coronary vasodilation is explained by the presence of a large A2A-AdoR reserve ("spare receptors"). METHODS AND RESULTS: A novel, irreversible antagonist of A2A-AdoRs was used to inactivate receptors and reduce the response to agonist. Agonist-induced increases of coronary conductance before and after exposure of hearts to the irreversible antagonist were compared. Three agonists were studied: 2-p-(2-carboxyethyl)-phenethylamino-5'-N-ethylcarboxamidoadenosine (CGS21680), adenosine, and 2-chloro-N6-cyclopentyladenosine (CCPA). Data were analyzed to determine agonist KA (equilibrium dissociation constant) and EC50 values. Values of KA for activation of A2A-AdoRs by CGS21680, adenosine, and CCPA were 105, 1800, and 2630 nmol/L, respectively. In contrast, values of EC50 for CGS21680, adenosine, and CCPA to increase coronary conductance were 1.5, 85, and 243 nmol/L, respectively. By use of the law of mass action, it was calculated that half-maximal responses to CGS21680, adenosine, and CCPA occurred when only 1.3%, 5%, and 9%, respectively, of A2A-AdoRs were occupied by agonist. CONCLUSIONS: Receptor reserves for 3 A2A-AdoR agonists were large. The receptor reserve for A2A-AdoRs to cause an increase of coronary conductance can explain both the high potency of adenosine to cause coronary vasodilation and the observation that an A2A-AdoR agonist can cause coronary vasodilation without systemic effects.

Adenosine↗

Nonsteroidal anti-inflammatory drugs increase tumor necrosis factor production in the periphery but not in the central nervous system in mice and rats.

Nonsteroidal anti-inflammatory drugs (NSAIDs), which inhibit prostaglandin (PG) synthesis, augment production of tumor necrosis factor (TNF) in most experimental models. We investigated the effect of two NSAIDs, indomethacin and ibuprofen, on the production of TNF in the CNS induced by intracerebroventricular injection of lipopolysaccharide (LPS). Indomethacin and ibuprofen, administered intraperitoneally, augmented (three- to ninefold) the levels of TNF in serum and peripheral organs of mice injected intraperitoneally with LPS and in rats with adjuvant arthritis (up to a sevenfold increase). However, NSAIDs (intraperitoneally or intracerebroventricularly) did not increase brain TNF production induced by intravenous LPS. In fact, indomethacin decreased (1.4-1.8-fold) TNF levels in the spinal cord of rats with experimental autoimmune encephalomyelitis and in the cortex of rats with focal cerebral ischemia. Systemic administration of iloprost inhibited serum TNF levels after intraperitoneal LPS, whereas intracerebroventricular injection of iloprost or PGE2 did not inhibit brain TNF induced by intracerebroventricular LPS. Both peripheral and central TNF productions were inhibited by cyclic AMP level-elevating agents or dexamethasone. Thus, a PG-driven negative feedback controls TNF production in the periphery but not in the CNS.

Animals↗

The A2A adenosine receptor mediates coronary vasodilation.

The coronary vasodilation caused by adenosine is due to activation of A2 adenosine receptors (A2AdoRs), but the subtype or subtypes of A2AdoR (A2A and/or A2B) that mediate this action are uncertain. The purpose of this study was to test the hypothesis that A2AAdoRs mediate coronary vasodilation caused by exogenous or endogenous adenosine in the guinea pig isolated perfused heart. The newly described A2AAdoR antagonist SCH58261 was used to selectively block A2AAdoRs. Attenuations by SCH58261 of increases in coronary conductance (A2 response) and of atrioventricular nodal conduction time (A1 response) caused by exogenous and endogenous adenosine and by agonists with relative selectivity for A2A and A1AdoRs were measured. The CGS21680-induced increase of coronary conductance was antagonized by SCH58261 in a concentration-dependent and competitive manner with a KB value of 5.01 nm. Also reversed by SCH58261 (60 nmol/L) were the increases in coronary conductance caused by the relatively selective A1AdoR agonists CCPA (70 nM), and (R)-(-)N(b)-(2-phenyl-isopropyl)adenosine (60 nM) but not those caused by sodium nitroprusside (1.2 microM) and diltiazem (0.4 microM). SCH58261 (< or = 100 nM) did not attenuate the A1AdoR-mediated prolongations of S-H interval caused by either adenosine or CCPA. SCH58261 attenuated the coronary vasodilation caused by 50 nM adenosine with an IC50 value of 6.8 +/- 0.6 nM. The coronary vasodilations caused by the nucleoside uptake inhibitor draflazine and the adenosine kinase inhibitor iodotubercidin were completely reversed by 60 nM SCH58261 or adenosine deaminase (7 U/ml). Thus, the A2AAdoR plays a major role as mediator of coronary vasodilation caused by exogenous and endogenous adenosine and by AdoR agonists.

Adenosine↗

Cardiovascular pharmacology of the A2A adenosine receptor antagonist, SCH 58261, in the rat.

We characterized the in vivo cardiovascular profile of SCH 58261, 7-(2-phenylethyl)-5-amino-2-(2-furyl)-pyrazolo-[4,3-e]-1,2, 4-triazolo[1,5-c] pyrimidine, a selective A2A adenosine receptor antagonist, in conscious, freely moving rats by use of the telemetry system. In normotensive rats, SCH 58261, at 10 mg/kg i.p., significantly (P < .05) inhibited hypotension and tachycardia induced by the A2A receptor agonist 2-hexynyl-5'-N-ethylcarboxamidoadenosine (0.01 mg/kg i.p.), but not the bradycardic effect caused by the A1 receptor agonist 2-chloro-N6-cyclopentyladenosine (0.03 mg/kg i.p.). SCH 58261, when administered alone, at 0.1 and 1 mg/kg i.p., did not induce significant hemodynamic changes, but at 10 mg/kg i.p., it slightly increased both systolic blood pressure (SBP) and diastolic blood pressure (DBP) (+19 +/- 3 and +16 +/- 2 mm Hg, respectively; P < . 01) and heart rate (HR) (+85 +/- 5 beats/min; P < .01). These effects were inhibited by adrenergic blockade with propranolol (30 mg/kg i.p.) and phentolamine (10 mg/kg i.p.): -5 +/- 3 mm Hg on DBP and -12 +/- 11 beats/min on HR (P < .01). In spontaneously hypertensive rats, SCH 58261, at 3 and 10 mg/kg i.p., increased weakly both SBP (+19 +/- 5 mm Hg and +25 +/- 4 mm Hg) and DBP (+14 +/- 4 mm Hg and +23 +/- 4 mm Hg) vs. vehicle (P < .01) and HR (+45 +/- 17 and +64 +/- 18 beats/min vs. vehicle, respectively; P < .01). The data indicate that SCH 58261 retains A2A selective receptor antagonist properties in vivo. Its effect on cardiovascular sympathetic outflow further suggests that endogenous adenosine exerts a tonic vascular regulation through A2A receptors. Therefore, SCH 58261 can be a useful pharmacological tool for clarifying A2A-mediated cardiovascular actions of adenosine.

Adrenergic Antagonists↗

Hemodynamic changes do not mediate the cardioprotection induced by the A1, adenosine receptor agonist CCPA in the rabbit.

Stimulation of adenosine A1 receptors is known to reduce infarct size in the rabbit heart. The aim of the present study was to verify whether a protective activity similar to that of the selective A1 receptor agonist, 2-chloro-N6-cyclopentyladenosine (CCPA), could also be obtained by inducing comparable hemodynamic effects with drugs having different mechanisms of action. The effects of the beta-adrenoceptor blocker atenolol, the calcium channel blocker felodipine, the A2A-selective adenosine receptor agonist 2-hexynyl-5'-N-ethyl-carboxamidoadenosine (2HE-NECA), and the non-selective adenosine receptor agonist 5'-N-ethyl-carboxamidoadenosine (NECA) were tested. Groups of 12-15 anesthetized open-chest rabbits received a 5-min infusion of CCPA (50 micrograms kg-1 min-1), atenolol (1 mg kg-1 min-1), felodipine (50 micrograms kg-1 min-1), 2HE-NECA (1 microgram kg-1 min-1), and NECA ( 1 microgram kg-1 min-1). Myocardial infarction was induced by a 30-min occlusion of a branch of the left coronary artery, followed by 3-h reperfusion. Infarct size was measured by tetrazolium staining. In controls, infarct size was about 40% of the zone at risk. Pretreatment with CCPA induced a marked decrease in heart rate (-40%) and blood pressure (-48%), and showed antiischemic activity (28% of the zone at risk). The other drugs tested produced similar effects on either heart rate (atenolol, -25%), or blood pressure (felodipine, 2HE-NECA and NECA, about -45%), but did not affect infarct size. IN this model, the reduction in infarct size by CCPA is most likely mediated by A1 receptors, since comparable hemodynamic effects, induced by other means, are not effective. A2A receptor stimulation does not appear to exert a protective effect.

Adenosine↗

Cardioprotective effects of adenosine A1 and A2A receptor agonists in the isolated rat heart.

It has been postulated that the adenosine A1 receptor subtype, but also A2a receptors, are involved in mediating the beneficial properties of adenosine during ischemia and reperfusion. We investigated the effects of the selective A1 adenosine receptor agonist, 2-chloro-N6-cyclopentyladenosine (CCPA), the selective A2A adenosine receptor agonists, 2-[p-(2-carboxyethyl)phenetylamino]-5'-N-ethylcarboxamidoadenosine (CGS 21680), 2-hexynyl-5'-N-ethylcarboxamidoadenosine (2HE-NECA), and the non selective agonist, 5'-N-ethylcarboxamidoadenosine (NECA), on ischemia-reperfusion injury in Langendorff-perfused rat hearts. Global ischemia was induced for 15 min in paced hearts followed by 60 min reperfusion. Control hearts developed left ventricular dysfunction, as indicated by the increase in end diastolic pressure to 40.8 +/- 5.1 vs 5.9 +/- 1.0 mm Hg baseline, and in coronary perfusion pressure to 57.6 +/- 8.4 vs 28.8 +/- 2.2 mm Hg before ischemia. After 15 min of reperfusion, ventricular function (LVDP) recovered by 83%, but creatine kinase levels were still significantly increased (294 +/- 55 IUl(-1) vs basal), indicating the occurrence of myocardial injury. All adenosine agonists added to the perfusion medium 15 min prior to ischemia exerted protective effects against myocardial dysfunction and reperfusion injury. Thus, 2HE-NECA (100 nM), CGS 21680 (10 nM), CCPA (3 nM) and NECA (100 nM) significantly (P < 0.05) decreased end diastolic pressure by 50-75% as compared with the control group. Similarly, all compounds significantly (P < 0.05) reduced coronary perfusion pressure by 30-45% vs control. For all drugs, recovery of LVDP occurred immediately after restoration of coronary flow. At 15-min reperfusion the adenosine agonists decreased myocardial creatine kinase release by 80-95% (P < 0.05 vs control). These findings indicate that both A1 and A2A adenosine receptors are involved in protecting the myocardium against ischemia and reperfusion in isolated rat heart, even if through different mechanisms.

Adenosine↗

Prolonged exposure to 5'-N-ethylcarboxamidoadenosine (NECA) does not affect the adenosine A2A-mediated vasodilation in porcine coronary arteries.

At present, four distinct adenosine receptors (A1, A2A, A2B, and A3) have been cloned and characterized in several species. It is known that prolonged exposure of tissues to receptor agonists induces A1 receptor desensitization. However, controversial data are reported on whether or not prolonged stimulation of A2A adenosine receptors induces tolerance. Using the porcine coronary artery, a sensitive vascular model, studies were designed, with the aim to clarify how prolonged exposure to the adenosine agonist 5'-N-ethylcarboxamidoadenosine (NECA) affects A2A receptor responsiveness. The arteries were precontracted with PGF2alpha (3 microM) and cumulative dose-response curves to either NECA itself, or the selective A2A agonists, 2-[4-2(2-carboxyethyl)phenethylamino]-5'-N-ethylcarboxamidoadenosi ne (CGS 21680) and 2-hexynyl-5'-N-ethylcarboxamidoadenosine (2HE-NECA) were obtained. In separate experiments, coronary rings were incubated with NECA (10 microM) for 30 min or 2 h. After 2 h washout period, functional response was assessed. The arteries showed high sensitivity to adenosine agonist-induced vasorelaxation. EC50 (nM) values were 71.8 (35.5-145), 20.0 (11.2-32.7) and 40.2 (20.4-79.1) for NECA, 2HE-NECA and CGS 21680, respectively. Vasorelaxant response of A2A selective agonists 2HE-NECA and CGS 21680 was not influenced by preincubation with NECA for 30 min or 2 h. Conversely, dose-response curves to NECA were shifted toward the right by preincubation with NECA itself: ED50 (nM) values were 114 (79.2-165), 211 (161-276) and 412 (132-1290) for 30 min, 2 h and 15 h preincubation, respectively. These effects did not occur after 4 h washout. The present results indicate that prolonged stimulation of A2A receptors does not lead to loss of functional response, suggesting that this receptor subtype does not desensitize after prolonged stimulation by agonists.

Adenosine↗