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Biomedical subjects

I Cakici

Publications and source records attributed to I Cakici.

At least 19 recordsLinked to original sources

The role of L-arginine/nitric oxide pathway in the antinociceptive activity of pyridoxine in mouse.

In the present study the role of L-arginine/nitric oxide (NO)/cGMP pathway in the antinociceptive activity of pyridoxine in p-benzoquinone-induced abdominal constriction test in mouse was investigated. Pyridoxine (CAS 58-56-0) displayed dose-dependent antinociceptive activity at 0.0625-1 mg/kg (s.c.) doses. L-arginine (CAS 1119-34-2), a NO precursor, displayed a triphasic pattern as antinociception-nociception-antinociception (61.8 +/- 7.8, -36.5 +/- 12.7 and 17.0 +/- 4.3%, 5, 40 and 50 mg/kg, s.c., respectively). The antinociceptive effect of pyridoxine at ED50 dose (0.43 mg/kg, s.c.) (47.7 +/- 3.9%) was significantly decreased by L-arginine at 40 and 50 mg/kg doses (4.1 +/- 9.3 and 37.8 +/- 1.6%, respectively) while 5 mg/kg dose of L-arginine significantly potentiated the pyridoxine analgesia. On the other hand, pyridoxine reversed the L-arginine-induced nociception to antinociception (4.1 +/- 9.3%) and augmented the antinociceptive effect of L-arginine (37.8 +/- 1.6%). L-NG-nitroarginine methyl ester (CAS 51298-62-5), a NO synthase inhibitor, at 75 mg/kg, s.c. produced antinociception and significantly increased the antinociceptive effect of pyridoxine (63.7 +/- 1.2%). Methylene blue (CAS 61-73-4, MB), a guanylyl cyclase and/or NO synthase inhibitor, was antinociceptive and nociceptive at 5 and 40 mg/kg doses, respectively, 5 mg/kg dose of MB significantly increased the antinociceptive effect of pyridoxine, but did not change it at 40 mg/kg dose. On the other hand, pyridoxine significantly decreased the antinociceptive effect of MB and reversed the MB-induced nociception to antinociception. Combination of pyridoxine and morphine (CAS 57-27-2) (ED50: 0.13 mg/kg, s.c.) at 49.8 +/- 1.9% revealed a significant antinociceptive potentiation (69.1 +/- 1.8%). The findings of the present study emphasise the contribution of central and/or peripheral L-arginine/NO/cGMP nociceptive processes in pyridoxine-induced antinociception.

Analgesics↗

Role of L-arginine/nitric oxide pathway in the antinociceptive activities of morphine and mepyramine in mice.

The p-benzoquinone (PBQ)-induced abdominal constriction test was used to assess the involvement of L-arginine/nitric oxide (NO) pathway in the antinociceptive activity of the subcutaneously administered H1-receptor antagonist, mepyramine (CAS 59-33-6), and an opioid receptor agonist, morphine (CAS 57-27-2), in mice. Mepyramine (ED50: 5.6 mg/kg) and morphine (ED50: 0.13 mg/kg) produced antinociceptive effects. The NO precursor L-arginine (CAS 1119-34-2) (50 mg/kg) also produced antinociception similar to mepyramine, but significantly less than morphine. The NO synthase (NOS) inhibitor L-NG-monomethylarginine (L-NMMA) (CAS 53308-83-1) (50 mg/kg) did not significantly change p-benzoquinone-induced abdominal constrictions. L-arginine significantly increased the antinociceptive effects of morphine and mepyramine. The antinociceptive activity of morphine, but not that of mepyramine, was completely abolished when combined with L-NMMA. L-NMMA also significantly decreased the antinociception induced by morphine or mepyramine in combination with L-arginine. The present results suggest that morphine and mepyramine could produce peripheral antinociception by the involvement of L-arginine/NO cascade or other related pathways of nociceptive processes induced by NO.

Abdomen↗

Effects of peroxynitrite on the reactivity of diabetic rat aorta.

Endogenous nitric oxide (NO) reacts with superoxide to form peroxynitrite, which is capable of either oxidizing or nitrating various biological substrates. We compared the vasodilatory effect of exogenous peroxynitrite with the effects of decomposed peroxynitrite or sodium nitrite in precontracted aorta isolated from streptozotocin-induced diabetic and age-matched control rats. Peroxynitrite (10 nmol/l to 300 micromol/l) produced a concentration-dependent relaxation in aortic rings with or without endothelium. Relaxation was also observed with a higher concentration of its decomposition product or sodium nitrite, although these relaxations were considerably slower and with reduced sensitivity. Endothelium-containing rings were less sensitive to the vasorelaxant effect of peroxynitrite than the endothelium-denuded rings in control (pD(2) was 5.19 +/- 0.06 in rings with endothelium and 5.86 +/- 0.03 in rings without endothelium, p < 0.01) but not in diabetic aorta (pD(2) was 5.97 +/- 0.05 in rings with endothelium and 6.12 +/- 0.06 in rings without endothelium, p > 0.05). The maximum relaxation to peroxynitrite also increased in diabetics, but did not change by removal of the endothelium either in diabetic or control rings. Diabetes did not alter the relaxations elicited by both decomposed peroxynitrite and sodium nitrite. Peroxynitrite-induced relaxation was not inhibited by diethylenetriaminepentaacetic acid, an inhibitor of hydroxyl radical formation. Pretreatment with peroxynitrite (1 micromol/l, 15 min) significantly suppressed the phenylephrine-induced tone and acetylcholine-stimulated endothelium-dependent relaxation, both effects were more pronounced in diabetic than in control aorta. The increased responsiveness of diabetic vessels to exogenous peroxynitrite seems to be related to depressed basal NO bioavailability and may be considered as a compensatory way against activated contractile mechanisms of diabetic vascular smooth muscle.

Acetylcholine↗

Peroxynitrite produces relaxations on the rat anococcygeus muscle.

Effects of peroxynitrite (ONOO-), its stable product 3-nitrotyrosine (NT) and sodium nitroprusside (SNP) on isolated rat anococcygeus muscle were investigated. Administration of 0.1-1.0 mM ONOO- or 0.01-100.0 microM SNP produced concentration-dependent relaxations on the phenylephrine (2 microM)-precontracted muscle. Time courses of these relaxations to ONOO- and SNP were not similar and decomposed ONOO- caused a biphasic response composed of an initial contraction followed by a relaxation. NT (0.01-0.1 mM) either incubated for 20 min prior to precontraction or given during precontraction plateau did not attenuate precontraction or ONOO(-)-induced relaxations. Results of the present study demonstrate that ONOO- relaxes rat anococcygeus muscle specifically while its stable metabolite NT has no effect.

Animals↗

Does remote organ ischaemia trigger cardiac preconditioning during coronary artery surgery?

The aim of this study is to provide biochemical evidence of the occurrence of cardiac preconditioning via remote organ ischaemia on the patients undergoing coronary artery surgery. Eight male patients were randomly allocated into two groups. Blood samples were collected via coronary perfusion catheter immediately before cardiopulmonary bypass (point 0), prior to declamping aorta (point 1) and 5 min after declamping the aorta (point 2) to determine creatinine phosphokinase (CPK), CPK-MB and lactate dehydrogenase (LDH) levels in the control group. A tourniquet wrapped around the right upper extremity of the patient was inflated and deflated twice to perform 3 min of ischaemia separated with 2 min of reperfusion in the preconditioning group. Blood samples were withdrawn as described for the control group. Only LDH levels at point 2 were found to be significantly higher than the control group's. These data implied that preconditioning appeared to protect myocardium by enhancing anaerobic glycolysis.

Aged↗

Participation of the components of L-arginine/nitric oxide/cGMP cascade by chemically-induced abdominal constriction in the mouse.

The purpose of this study was to investigate the role of the L-arginine/nitric oxide (NO)/cGMP pathway in p-benzoquinone-induced writhing model in mouse. L-arginine, a NO precursor, displayed antinociceptive effects at the doses of 0.125-1.0 mg/kg. When the doses of L-arginine were increased gradually to 10-100 mg/kg, a dose-dependent triphasic pattern of nociception-antinociception-nociception was obtained. The NO synthase (NOS) inhibitor, NG-nitro-L-arginine methyl ester (L-NAME) (18.7515 mg/kg), possessed antinociceptive activity. Methylene blue (MB), a guanylyl cyclase and/or NOS inhibitor, (5-160 mg/kg) also produced a dose-dependent triphasic response. When L-arginine (50 mg/ kg) was combined with L-NAME (75 mg/kg). L-arginine-induced antinociception did not change significantly. Cotreatment of L-arginine with 5 mg/kg MB significantly decreased MB-induced antinociception and reversed the nociception induced by 40 mg/kg MB to antinociception. It is concluded that the components of L-arginine/nitric oxide/cGMP cascade may participate in nociceptive processes both peripherally and centrally by a direct effect on nociceptors or by the involvement of other related pathways of nociceptive processes induced by NO.

Abdominal Pain↗

Enhancement of luminol chemiluminescence by cysteine and glutathione.

Cysteine enhancement of cobalt(II)-catalysed chemiluminescence of hydrogen peroxide and luminol occurs in carbonate buffer (but not in borate buffer), whether cysteine mixes with hydrogen peroxide before it mixes with luminol-cobalt(II) or vice versa. Enhancement was measured by the ratio of the signals in the presence and absence of cysteine; standard errors were generally < 5% of the mean ratio. Cystine in sufficiently acidic solution also enhances the chemiluminescence but otherwise diminishes the emission. The emission is also inhibited by glutathione. A mixed solution of cysteine and cystine gives rise to enhanced signals. In all the above cases, enhancement occurs only in the presence of a cobalt(II) catalyst. Luminol-peroxynitrite chemiluminescence is enhanced by cysteine and by glutathione without the presence of a catalyst.

Cobalt↗

Role of guanylyl cyclase activation via thiamine in suppressing chemically-induced writhing in mouse.

The possible role of L-arginine/nitric oxide (L-arginine/NO) pathway in the antinociceptive activity of thiamine (vitamin B1) in p-benzoquinone-induced mouse writhing model was investigated. Thiamine (ED50, 0.11 mg/kg), L-arginine (50 mg/kg), NG-nitro L-arginine methyl ester (L-NAME, 75 mg/kg) and morphine (ED50: 0.13 mg/kg) displayed antinociceptions following s.c. administrations (52.4 +/- 5.5%, 36.8 +/- 7.7%, 27.8 +/- 11.1%, 66.1 +/- 3.5%, respectively). However, methylene blue (MB, 40 mg/kg, s.c.) produced a nociception (-32.1 +/- 9.9%). Coadministration of B1 with L-arginine did not significantly change L-arginine-induced antinociception (48.9 +/- 3.7%). Cotreatment of thiamine with L-NAME and MB significantly increased the L-NAME-induced antinociception (53.9 +/- 3.9%) and reversed the MB-induced nociception to antinociception (46.0 +/- 4.2%). L-Arginine and L-NAME-induced antinociceptions were significantly increased (55.9 +/- 3.9% and 61.1 +/- 5.0%, respectively) by morphine. MB-induced nociception significantly reversed to antinociception by the concomitant administration of morphine (41.6 +/- 8.9%). Thiamine and morphine coadministration displayed antinociception (46.0 +/- 4.2%). The present results suggest that thiamine could produce antinociception by the activation of guanylyl cyclase mediated by cyclic guanosine monophosphate (cGMP) that may trigger the possible involvement of central and/or peripheral L-arginine/NO/cGMP pathway.

Animals↗

The beneficial effects of peroxynitrite on ischaemia-reperfusion arrhythmias in rat isolated hearts.

The simultaneous production of nitric oxide (NO) and superoxide leads to the formation of a potent toxic metabolite peroxynitrite (ONOO(-)). However, ONOO(-) at low concentrations has been found to exert cardioprotective effects. The purpose of the present study was to investigate the effects of exogenous ONOO(-) on ischaemia-reperfusion arrhythmias. We studied the concentration-response effects of ONOO(-) (0.4, 4, 40 microM ml(-1) min(-1) for 20 min) in rat isolated hearts perfused with Krebs-Henseleit solution. The 0.4 microM concentration of ONOO(-) was selected for further experiments since it did not affect the sinus rhythm. In the hearts subjected to 10 min of ischaemia followed by 10 min of reperfusion during 0.4 microM ml(-1) min(-1) ONOO(-) infusion, the incidence of ventricular fibrillation was decreased significantly from 93% to 38% (n=8) and none of the hearts had an irreversible ventricular fibrillation. Urate, a ONOO(-) scavenger (at 1 mM, n=7), added to the perfusate 5 min prior to the coronary artery occlusion and maintained throughout the experimental period, did not significantly modify the beneficial effects of ONOO(-). Although L-N(G)-nitroarginine methylester (L-NAME) (100 microM, n=8) had no effect, superoxide dismutase (10 U ml(-1))+catalase (100 U ml(-1)) increased the number of ventricular ectopic beats from 91+/-32 to 286+/-83 (n=5) and augmented the incidence of irreversible ventricular fibrillation from 0% to 60%. There were no marked changes in the time of onset of the first arrhythmias in any group. These results suggest that ONOO(-) at a low concentration may exert beneficial effects on ischaemia-reperfusion-induced arrhythmias in rat isolated hearts.

Animals↗

Does prevention of free radical reactions influence digoxin-arrhythmias?

In the present study, the possible role of oxygen-derived free radicals (OFR) on digoxin- (0.6 mg/kg(-1) IV bolus) induced arrhythmias of anesthetized guinea-pigs has been investigated. Guinea-pigs (300400 g) of either sex were anesthetized with urethane (1.5 g/kg(-1),IP), and their trachea for respiration, left common carotid artery for blood pressure monitoring, and right jugular vein for drug administration were cannulated. ECG and haemodynamics were recorded throughout the experiments. None of the agents used [N-acetyl-L-cysteine (20 mg/kg(-1)IV bolus), or SOD (30,000 IU/kg(-1) IV bolus) + catalase (15,000 IU/kg(-1) IV bolus)] significantly inhibited the arrhythmias except desferrioxamine which reduced the incidence of ventricular fibrillation and arrhythmia score. Desferrioxamine, by acting intracellularly unlike other agents used, might prevent the reduction of Fe(+3) by ascorbate and superoxide anion thus inhibiting the formation of cytotoxic hydroxyl radical in this experimental setting.

Animals↗

The role of nitric oxide in digoxin-induced arrhythmias in guinea-pigs.

We have investigated the effects of nitric oxide synthase inhibitor (L-NAME), nitric oxide precursor (L-arginine) and nitric oxide donor (sodium nitroprusside) on digoxin-induced arrhythmias both in guinea-pig isolated hearts and in anaesthetised animals. Sodium nitroprusside (0.1 mumol kg-1 min.-1 for 70 min.) caused a marked inhibition in mortality and arrhythmia score but L-NAME (10 mg kg-1) and L-arginine (30 mg kg-1 intravenous bolus followed by 10 mg kg-1 min.-1 for 60 min.) treatments were ineffective in anaesthetised guinea-pigs. None of the drugs markedly affected the time of onset of first arrhythmias or ventricular fibrillation incidence. In isolated heart experiments, nitric oxide generated by either L-arginine (1 mM) or sodium nitroprusside (1 mM) significantly reduced the arrhythmia score whereas L-NAME (1 mM) had no effect. Ventricular fibrillation incidence was totally abolished by sodium nitroprusside and none of the hearts treated with L-arginine had an irreversible ventricular fibrillation. L-NAME decreased ventricular tachycardia duration but increased ventricular fibrillation duration. There were no marked changes in the time of onset of first arrhythmias with these drugs in in vitro experiments. These results suggest that nitric oxide may play a modulatory role in the digoxin-induced arrhythmias in guinea-pigs.

Animals↗

Comparison of nitric oxide production by monocyte/macrophages in healthy subjects and patients with active pulmonary tuberculosis.

The aim of the present study was to determine the NO production by human cultured macrophages (m phi) and to compare the NO production between healthy subjects and patients with active pulmonary tuberculosis. The bioassay method was used for assessment of validation. Lipopolysaccharide (125 ng ml-1)-activated m phi from healthy and diseased subjects released a substantial amount of NO. NO synthase inhibitor, NG-nitro-L-arginine methyl ester, (0.1 mmol l-1) suppressed NO synthesis significantly in m phi of healthy subjects. Nitrite formation measured by the diazotization method in the supernatants taken from cultured m phi of tuberculous patients were significantly lower than the healthy subjects. The supernatants obtained in both subjects caused relaxation of guinea-pig aorta reversed by methylene blue (10 mumol l-1). There was a significant difference between relaxations of healthy and diseased supernatants. Nitrite formation measured by the bioassay method in the supernatants taken from cultured m phi of tuberculous patients was significantly higher than the healthy subjects. It was concluded that NO production appeared to be decreased in tuberculosis. The reason for decreased production of NO in tuberculosis may be related to the interaction of several cytokines and/or eicosanoids by means of the disease related induction of immune reactions.

Adult↗

Effects of WEB 2086 on the protective role of preconditioning against arrhythmias in rats.

The purpose of the present study was to investigate a possible role of platelet activating factor (PAF) in ischaemic preconditioning (PC). Since both PC and PAF act through protein kinase C (PKC), PAF could play a role in PC. To test this hypothesis, anaesthetized, open-chest male rats were subjected to four different protocols. Group I was subjected to 30 min of left coronary artery occlusion. In Group II, WEB 2086 (10 mg kg-1 i.v. bolus+1 mg kg-1 h-1 i.v. infusion) a selective PAF antagonist was given to non-preconditioned rats 23 min before the 30-min occlusion period. In Group III and IV ischaemic PC was elicited by one cycle of 3 min occlusion and 5 min reperfusion and also in Group IV, WEB 2086 (10 mg kg-1 i.v. bolus+1 mg kg-1 h-1 i.v. infusion) was given 23 min before the 30 min occlusion period. Ventricular ectopic beats (VEB), ventricular tachycardia (VT), and ventricular fibrillation (VF) that occurred during 30 min occlusion were determined. WEB 2086 administration or PC reduced the VEBs significantly. Incidence of VT and VF were not affected by WEB 2086 compared with control values, although PC decreased the incidence of VT and VF. WEB 2086 administration did not attenuate PC-induced improvement of arrhythmia parameters. These data demonstrated that a specific PAF antagonist, WEB 2086 did not abolish PC-induced protection against arrhythmias.

Animals↗

Effects of free radical production and scavengers on occlusion-reperfusion induced arrhythmias.

Ventricular arrhythmias were studied in rat isolated hearts subjected to coronary artery occlusion and reperfusion. Free radicals in the perfusate were detected by continuous flow luminol-enhanced chemiluminescence. Administration of purine (2.3 mM) and xanthine oxidase (0.12 U ml-1 min-1) did not significantly modify the severity of reperfusion-induced arrhythmias but did generate free radicals. No free radical generation was detected during the period of coronary artery occlusion or reperfusion. Superoxide dismutase (SOD) 20-80 U ml-1 did not alter the severity of reperfusion arrhythmias but, in the presence of 80 U ml-1 SOD, occlusion-induced arrhythmias were augmented. SOD did not produce any effect on haemodynamics at the concentrations tested. Ventricular arrhythmias and cardiac haemodynamics were also not significantly changed by the combination of scavengers, SOD (10 U ml-1), catalase (100 U ml-1) and mannitol (20 mM). These data suggest that the superoxide free radical is unlikely to be the primary cause of reperfusion induced arrhythmias in rat isolated hearts subjected to regional ischaemia.

Animals↗

Bradykinin-induced responses in a coaxial bioassay system composed of rat anococcygeus muscle and guinea pig trachea.

1. Epithelium-dependent effects of bradykinin (BK) were investigated in a coaxial bioassay system which consisted of guinea pig trachea as donor organ and rat anococcygeus muscle as test tissue. 2. BK (10(-9) to 10(-5) M) produced concentration-dependent relaxations on the phenylephrine (3 x 10(-6) M)-precontracted rat anococcygeus muscle mounted alone. Relaxations decreased significantly when muscle was mounted in epithelium-intact trachea. There was also a significant difference between the relaxations obtained in the muscle within epithelium-intact and epithelium-denuded trachea (at 10(-7) to 10(-5) M concentrations). 3. Capsaicin (10(-5) M) pretreatment did not change BK (10(-9) to 10(-5) M)-induced relaxations in each preparation compared with vehicle pretreatment. Indomethacin (10(-6) M) in combination with thiorphan (10(-5) M) and atropine (10(-6) M) did not affect the BK-induced relaxations of the muscle within capsaicin-pretreated epithelium-intact or denuded trachea. 4. CGS 8515 (a specific 5-lipoxygenase inhibitor, 10(-6) M) did not change BK (10(-5) M)-induced relaxation on the muscle alone, and caused an increase of BK-induced relaxation on the muscle within epithelium-intact trachea compared with that obtained without CGS 8515. 5. Results showed that epithelial or nonepithelial factors were capable of modulating the responsiveness of rat anococcygeus muscle to BK. The decreased relaxation by BK in anococcygeus muscle did not occur by the release of cyclooxygenase products or tachykinins from tracheal epithelium, but it may have occurred by the contractile action of lipoxygenase product secreted by nonepithelial sources. In addition, BK might stimulate the secretion of an epithelium-derived inhibitory factor from the trachea.

Anal Canal↗

Peroxynitrite: a putative cytotoxin.

In recent years it has become apparent that peroxynitrite, which is one of the toxic metabolites originating from the reaction of nitric oxide and superoxide presents a number of pathologic states in which free radicals are thought to be involved. Peroxynitrite is capable of oxidizing a wide variety of biomolecules including plasma, proteins, lipids, carbohydrates and nucleic acids. Peroxynitrite is involved in the hydroxylation of aromatic compounds and acts as a nitrating agent. It modifies free or protein-associated tyrosine residues to give nitrotyrosines, leaving a marker detectable in vivo. Peroxynitrite has been implicated in the pathophysiology of a variety of diseases including inflammation, atherosclerosis, arthritis, endotoxemia, ischaemia-reperfusion injury, or acute respiratory distress syndrome. Development of specific peroxynitrite scavengers may provide new approaches for the effective treatment of these disease states.

Animals↗

Antinociceptive effect of some amaryllidaceae plants in mice.

The antinociceptive effects of ethanolic extracts of Pancratium maritimum L., Narcissus tazetta subspecies tazetta and Leucojum aestivum L. bulbs have been investigated in mice using the p-benzoquinone-induced abdominal constriction and hot-plate tests. In the p-benzoquinone-induced abdominal constriction test the ethanolic extracts of P. maritimum (300, 600 or 1200 mg kg-1, s.c.) and N. tazetta subsp. tazetta (5, 50, 100 or 200 mg kg-1, s.c.) caused dose-dependent inhibition of abdominal constrictions whereas a fluctuating response was obtained from ethanolic extracts of L aestivum (2.5-500 mg kg-1, s.c.). In the hot-plate test P. maritimum and L. aestivum caused a significant increase of latency only at the highest concentrations used (1200 mg kg-1 and 500 mg kg-1, i.p., respectively). However, at these concentrations they also caused significant toxic effects. In contrast with P. maritimum and L. aestivum, N. tazetta subsp. tazetta (5-500 mg kg-1, i.p.) extracts had no antinociceptive effect in this test. These findings indicate that the antinociceptive effect of Amaryllidaceae plants differs depending on the model of nociception investigated.

Abdomen↗

Effects of platelet-activating factor antagonists WEB 2086 and BN 50730 on digoxin-induced arrhythmias.

Effects of platelet-activating receptor antagonists WEB 2086 (1.0-30.0 mg.kg-1 intravenously) and BN 50730 (10.0 mg.kg-1 intravenously) alone or in combination with CGS 8515 (a specific 5-lipoxygenase inhibitor, 0.3 mg.kg-1 intravenously) and Dazmegrel (a thromboxane synthase inhibitor, 1.0 mg.kg-1.hr-1 intravenous infusion) on digoxin-induced arrhythmias were investigated in anaesthetised guinea-pigs. ECG, mean arterial blood pressure, heart rate and arrhythmias were recorded, starting 30 min. before digoxin administration and continuing for 60 min. afterwards. WEB 2086 (10.0 mg.kg-1 intravenously) reduced the mortality rate and arrhythmia score significantly compared to the control values. However, in combination with CGS 8515, it did not affect the mortality rate. BN 50730 (10.0 mg.kg-1) reduced the incidence of ventricular fibrillation and also arrhythmia score. BN 50730 in combination with Dazmegrel was reduced the arrhythmia score, incidence of ventricular fibrillation and mortality rate significantly, compared to control values. Digoxin-induced acute rise in mean arterial blood pressure was not affected by any of drug treatment except WEB 2086 (10.0 mg.kg-1) in combination with CGS 8515. Heart rate values did not differ between groups. However, pressure-rate index was reduced by WEB 2086 alone or in combination with CGS 8615. Results showed that although two different platelet-activating factor antagonists have different effects on the incidence of ventricular fibrillation and mortality, they improved the digoxin-induced arrhythmias when they were used either separately or in combination with CGS 8515 or Dazmegrel by implicating that platelet-activating factor has a role on digoxin-induced arrhythmias.

Animals↗