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M Ioculano

Publications and source records attributed to M Ioculano.

36 records · Page 2Linked to original sources

Protective effects of IRFI-016, a new antioxidant agent, in myocardial damage, following coronary artery occlusion and reperfusion in the rat.

The new free radical scavenger IRFI-016 [2(2,3-dihydro-5-acetoxy 4,6,7-trimethyl-benzofuranyl) acetic acid] was assessed in a rat model of myocardial injury induced by 1 h of left coronary artery occlusion followed by 30 min of reperfusion. Myocardial ischaemia plus reperfusion (MI/R) produced severe cardiac necrosis, neutrophil infiltration in the jeopardized tissue, increased serum creatine kinase (CK) and ST segment of the electrocardiogram (ECG), lowered the pressure rate index (PRI), increased serum levels of tumour necrosis factor (TNF-alpha) and caused a decrease in the survival rate. Administration of IRFI-016 (100 and 200 mg/kg i.p.) 30 min before occlusion resulted in a significant protective effect in post-ischaemic reperfusion. Compared with untreated rats, IRFI-016, in particular the dose of 200 mg/kg, caused a reduction of the necrotic zone whether the necrotic area was expressed as a percentage of the area at risk (55 +/- 4% in the MI/R vehicle group and 24 +/- 2.5% in the MI/R treated group; p < 0.001) or as a percentage of the total left ventricle (23 +/- 3.4% in the MI/R vehicle group and 8 +/- 2.1% in the MI/R treated group; p < 0.005), reduced the myeloperoxidase activity, an index of neutrophil infiltration in the necrotic area (from 4.8 +/- 0.8 to 1.6 +/- 0.4 U/g tissue; p < 0.005), reduced the serum levels of TNF-alpha (from 216 +/- 13 to 45 +/- 7 U/ml; p < 0.001), blunted the rise of the ST segment of the ECG (from 0.47 +/- 0.13 mV in the vehicle group to 0.3 +/- 0.18 mV in the treated group; p < 0.001), reduced the loss of CK (from 220 +/- 15 to 88 +/- 13 IU/ml of blood; p < 0.001) and improved the depressed PRI (from 56 +/- 4% to 78 +/- 3% mm Hg/beats/min; p < 0.005). Finally, IRFI-016 significantly enhanced the survival rate evaluated at the end of the experiment. The results strongly indicate that IRFI-016 is a promising drug for cardiac ischaemia and reperfusion.

Animals↗

Beneficial effects of BAY u3405, a novel thromboxane A2 receptor antagonist, in splanchnic artery occlusion shock.

Splanchnic artery occlusion shock was induced in male anaesthetized rats by clamping the splanchnic artery for 45 min. The arteries were then released and survival rate, mean survival time, mean arterial blood pressure, plasma levels of thromboxane B2 and 6-keto-PGF1 alpha, macrophage phagocytosis activity and plasma levels of myocardial depressant factor were evaluated. In addition, the neutrophilic infiltrate was quantified in the ileum and lung using a myeloperoxidase (MPO) assay. Sham splanchnic-artery-occlusion-shocked rats were used as controls. Splanchnic-artery-occlusion-shocked rats died within 93 +/- 7 min, while all sham-shocked animals survived more than 3 h. Splanchnic artery occlusion shock caused changes in mean arterial blood pressure, significantly increased the plasma levels of thromboxane B2 (7.5 +/- 1.3 ng/ml; p < 0.001 vs. sham), 6-keto-PGF1 alpha (8.9 +/- 1.7 ng/ml; p < 0.001 vs. sham) and myocardial depressant factor (114 +/- 11 U/ml), and reduced macrophage phagocytosis. Furthermore, MPO activity was significantly elevated (0.12 +/- 0.03 x 10(-3) and 1.8 +/- 0.5 x 10(-3) U/g protein in the ileum and lung, respectively) 70 min after starting reperfusion. Administration of BAY u3405, a novel thromboxane A2 receptor antagonist (30 mg/kg i.v., 30 min before occlusion), significantly increased survival time (187 +/- 3.7 min) and survival rate, improved mean arterial blood pressure, reduced the plasma levels of myocardial depressant factor (54 +/- 3 U/ml), partially restored macrophage phagocytosis and lowered MPO activity in both the ileum and the lung. Our data are consistent with an involvement of thromboxane A2 in splanchnic artery occlusion shock and suggest that BAY u3405 might be of benefit in low-flow states such as circulatory shock.

6-Ketoprostaglandin F1 alpha↗

Evidence for a role of platelet activating factor in hypovolemic shock in the rat.

An extremely severe circulatory shock was produced in two different manners in urethane-anaesthetized rats in order to evaluate the key role of platelet-activating factor (PAF) and myocardial depressant factor (MDF) in low flow states. Haemorrhagic shock was induced by intermittently withdrawing about 50% of the estimated blood volume until mean arterial blood pressure (MAP) stabilized in the range of 20-25 mmHg. Vehicle-treated shocked rats died within 20-30 min after the last bleeding and exhibited elevated plasma activity of MDF (159.6 +/- 7.4 U/ml). Treatment with a specific PAF receptor antagonist, L-659,989, at doses of 500 or 1000 nmol/kg i.v., significantly increased survival rate, blunted the rise in plasma MDF activity and maintained MAP at higher values compared to vehicle shocked rats. Similarly, in another group of rats PAF (15 nmol/kg, i.v.) produced a shock-like state characterized by a serious hypotension in the range of 20-30 mmHg, elevated plasma MDF activity (79.7 +/- 7,7 U/ml) and death within 20-25 min after administration. L-659,989, given 5 min after the PAF-induced sharp decrease of MAP, improved survival rate, ameliorated MAP and reduced plasma levels of MDF. The results of this study, therefore, confirm that PAF plays a role in cardiovascular changes of hypovolemic circulatory shock both directly and by inducing the release of other factors such as MDF.

Animals↗

Tumor necrosis factor involvement in myocardial ischaemia-reperfusion injury.

The role of tumor necrosis factor-alpha was investigated in an anaesthetized rat model of coronary artery ligation (60 min) and reperfusion (MI/R). Sham-occluded rats (sham MI/R) were used as controls. Survival rate, myocardial necrosis, myocardial myeloperoxidase activity, serum creatinine kinase activity and serum and macrophage tumor necrosis factor-alpha were studied. Ischaemia-reperfusion injury significantly reduced survival rate (45%), produced marked myocardial injury, increased serum creatinine kinase activity and increased myocardial myeloperoxidase activity in the area-at-risk and in the necrotic area. Serum tumor necrosis factor-alpha was undetectable during the occlusion period, but increased significantly upon release of the coronary artery. At the end of reperfusion, macrophage tumor necrosis factor-alpha was also increased. Passive immunization with a hyperimmune serum containing antibodies against murine tumor necrosis factor-alpha significantly increased survival rate (80%), lowered myocardial necrosis, reduced the increase in serum creatinine kinase activity and decreased myeloperoxidase activity in the area-at-risk and in the necrotic area. These data are consistent with an involvement of tumor necrosis factor-alpha in myocardial ischaemia-reperfusion injury.

Animals↗

Anorectic activity of NG-nitro-L-arginine, an inhibitor of brain nitric oxide synthase, in obese Zucker rats.

We investigated the effects of NG-nitro-L-arginine (L-NO Arg) administration (12.5, 25 and 50 mg/kg i.p.) on food consumption and body weight of male obese Zucker rats (fa/fa) and in their lean age-matched controls (FA/?; FA/FA), both groups aged 14 weeks. Acute or repeated administration of L-NO Arg reduced food intake and body weight in both obese and lean rats. However the lean rats showed tolerance to the L-NO Arg effects after 5 days of treatment. L-NO Arg anorexia was suppressed by pretreatment with metergoline. These results suggest that L-NO Arg may represent a new anorectic drug.

Amino Acid Oxidoreductases↗

Reduction of myocardial leukocyte accumulation and myocardial infarct size following administration of BAY u3405, a thromboxane A2 receptor antagonist, in myocardial ischaemia-reperfusion injury.

We investigated the effect of BAY u3405, a thromboxane A2 receptor antagonist in pentobarbital anaesthetized rats subjected to left main coronary artery ligation (1 h) followed by reperfusion (1 h; MI/R). Sham operated rats were used as controls (Sham MI/R). Survival rate, myocardial necrosis, myocardial myeloperoxidase activity (investigated as an index of leukocyte adhesion and accumulation) and serum creatine phosphokinase activity were studied. Ischaemia-reperfusion injury significantly reduced the survival rate (45%), caused a marked myocardial necrosis, increased serum creatine phosphokinase activity (Sham MI/R = 26 +/- 10.2 U/ml; MI/R = 213 +/- 19 U/ml) and produced a rise in myocardial myeloperoxidase activity in the area-at-risk and in the necrotic area (6.1 +/- 0.4 U x 10(-3)/g tissue and 6.7 +/- 0.9 U x 10(-3)/g of tissue, respectively). The administration of BAY u3405 (30 and 60 mg/kg/i.v., 30 min before occlusion) significantly increased survival rate, lowered the area of myocardial necrosis, blunted the increase in serum creatine phosphokinase activity and reduced the increase in myeloperoxidase activity in both the area-at-risk and the necrotic area. Furthermore, the protective effect of BAY u3405 was dose-dependent. These data are consistent with an involvement of TXA2 in myocardial ischaemia-reperfusion injury and suggest that BAY u3405 may represent a novel therapeutic approach to the treatment of acute ischaemia-reperfusion injury.

Animals↗

The effect of cloricromene, a coumarine derivative, on leukocyte accumulation, myocardial necrosis and TNF-alpha production in myocardial ischaemia-reperfusion injury.

The effects of cloricromene, a coumarine derivative, were studied in an anaesthetized rat model of coronary artery ligation (60 min) followed by reperfusion (60 min; MI/R). Sham operated rats were used as controls (Sham MI/R). Myocardial ischaemia-reperfusion injury produced a marked myocardial injury (necrotic area/area-at-risk = 68 +/- 4%; necrotic area/total area = 48 +/- 3%) high serum creatinphosphokinase activity (Sham MI/R = 29 +/- 8 U/ml; MI/R = 205 +/- 11 U/ml) and elevated myocardial myeloperoxidase activity (investigated as an index of leukocyte adhesion and accumulation), in the area-at-risk (6.3 +/- 0.2 U x 10(-3)/g tissue) and in necrotic area (6.5 +/- 0.5 U x 10(-3)/g tissue). Furthermore, serum TNF-alpha was undetectable during the occlusion period, but upon the release of the coronary artery significantly increased. At the end of reperfusion, macrophage TNF-alpha was also enhanced. The administration of cloricromene (2 mg/kg, 5 minutes after the onset of reperfusion) significantly reduced myocardial injury (necrotic area/area-at-risk 30 +/- 1.3%; necrotic area/total area = 25 +/- 1.5) blunted the increase in serum creatinphosphokinase activity (92 +/- 5 U/ml) and lowered myeloperoxidase activity in area-at-risk (2.5 +/- 0.2 U x 10(-3)/g tissue) and in necrotic area (2.2 +/- 0.3 U x 10(-3)/g tissue) and decreased the serum and macrophage levels of TNF-alpha. These data indicate that cloricromene exerts beneficial effects on myocardial ischaemia/reperfusion injury. Finally, since we measured increased serum levels of TNF-alpha that were blunted by the cloricromene treatment, our data are consistent with an involvement of TNF-alpha in the reperfusion injury induced by myocardial ischaemia.

Analysis of Variance↗

G619, a dual thromboxane synthase inhibitor and thromboxane A2 receptor antagonist, reduces myocardial damage and polymorphonuclear leukocyte accumulation following coronary artery occlusion and reperfusion in rats.

We investigated the effect of G 619, a dual thromboxane synthase inhibitor and thromboxane A2 (TxA2) receptor antagonist, in pentobarbital-anaesthetized rats subjected to left main coronary artery ligation (1 h) followed by reperfusion (1 h; MI/R). Sham-operated rats were used as controls (sham MI/R). Survival rate, myocardial necrosis, myocardial myeloperoxidase (MPO) activity (investigated as an index of leukocyte adhesion and accumulation) and serum creatine phosphokinase (CPK) activity were studied. MI/R injury significantly reduced survival rate (45%), caused a marked myocardial necrosis, increased serum CPK activity (sham MI/R = 35 +/- 12 U/ml; MI/R = 205 +/- 13 U/ml) and produced an increase in myocardial MPO activity in the area at risk and in the necrotic area (6.3 +/- 0.5 and 6.6 +/- 0.9 U x 10(-3)/g tissue, respectively). The administration of G 619 significantly increased survival rate, lowered the area of necrosis, blunted the increase in serum CPK activity and reduced the increase in MPO activity in both the area at risk and the necrotic area. These data are consistent with an involvement of TxA2 in MI/R injury and suggest that G 619 may represent a novel therapeutic approach to the treatment of acute myocardial infarction.

Animals↗

Platelet activating factor interaction with tumor necrosis factor in myocardial ischaemia-reperfusion injury.

The role played by platelet-activating factor (PAF) and tumor necrosis factor (TNF-alpha) in myocardial ischaemia-reperfusion injury was investigated. Pentobarbital anaesthetized rats were subjected to left main coronary artery ligation (1 h) followed by reperfusion (1 h; MI/R). Sham-operated rats were used as controls (Sham MI/R). Myocardial ischaemia-reperfusion injury produced a marked myocardial injury (necrotic area/area-at-risk = 60 +/- 5%; necrotic area/total area = 50 +/- 6%), high serum creatine phosphokinase activity (Sham MI/R = 25 +/- 10 U/ml; MI/R = 190 +/- 12 U/ml), a severe leukopenia (Sham MI/R = 10367 +/- 630 WBC x mm3; MI/R = 4123 +/- 120 WBC x mm3) and elevated myocardial myeloperoxidase activity (investigated as an index of leukocytes adhesion and accumulation) in the area-at-risk (6.2 +/- 0.5 U x 10(-3)/g tissue) and in necrotic area (6.6 +/- 0.7 U x 10(-3)/g tissue. Plasma PAF and serum TNF-alpha were significantly increased only during reperfusion. The peak of PAF plasma levels (6.5 +/- 1.2 pmol/ml) occurred earlier (15 min of reperfusion) than the peak of serum TNF-alpha (150 U/ml at 30 min of reperfusion). At the end of reperfusion, macrophage TNF-alpha was also enhanced (Sham MI/R = undetectable; MI/R = 148 +/- 12 U/ml). The administration of CV 6209, a specific PAF receptor antagonist (5 mg/kg, 5 min after occlusion), significantly reduced myocardial injury (necrotic area/area-at-risk = 27 +/- 3%, P < 0.001; necrotic area/total area = 10 +/- 2%, P < 0.001), blunted the increase in serum creatine phosphokinase (70 +/- 12 U/ml), partially restored leukopenia (8234 +/- 143 WBC x mm3) and lowered myeloperoxidase activity in area-at-risk (2.3 +/- 0.3 U x 10(-3)/g tissue; P < 0.001) and in necrotic area (2.8 +/- 0.5 U x 10(-3)/g tissue). In addition, administration of CV 6209 reduced the serum and macrophage levels of TNF-alpha. The results of this study, therefore, suggest that PAF and TNF-alpha are key mediators of myocardial ischaemia-reperfusion injury and that PAF plays a permissive role in inducing the release of other factor(s) relevant to reperfusion injury.

Analysis of Variance↗

[Tumor necrosis factor in myocardial ischemia and reperfusion].

The role of tumor necrosis factor (TNF-alpha) was investigated in an anaesthetized rat model of coronary artery ligation (60 min) followed by reperfusion (60 min; MI/R). Sham operated rats were used as controls (Sham MI/R). Myocardial necrosis, myocardial myeloperoxidase activity (MPO; investigated as an index of leukocyte adhesion and accumulation), serum creatinphosphokinase (CPK) activity and serum and macrophage TNF-alpha were studied. Ischemia and reperfusion produced a marked myocardial injury, with enhancement of serum CPK levels and myocardial MPO activity in the area at risk and in the necrotic area. Furthermore, serum TNF-alpha was undetectable during the occlusion period, but increased significantly after release of the coronary artery. At the end of reperfusion, macrophage TNF-alpha was also enhanced. A passive immunization with a hyperimmune serum containing antibodies against murine TNF-alpha or administration of an inhibitor of TNF-alpha synthesis, such as cloricromene, significantly lowered myocardial necrosis, reduced the increase in serum CPK and decreased MPO activity in the area at risk and in the necrotic area. Finally, the administration of the specific anti-TNF-alpha antibodies neutralized the serum levels of TNF-alpha and the injection of cloricromene reduced both serum and macrophage TNF-alpha. These data are consistent with an involvement of TNF-alpha in myocardial ischemia-reperfusion injury and suggest that drugs capable of reducing TNF-alpha might represent a novel therapeutic approach to the treatment of myocardial reperfusion injury.

Animals↗

Platelet activating factor interaction with tumor necrosis factor and myocardial depressant factor in splanchnic artery occlusion shock.

Anaesthetized rats, subjected to total occlusion of the superior mesenteric artery and the celiac trunk for 45 min, developed a severe shock state (splanchnic artery occlusion shock) resulting in a fatal outcome within 75-90 min after release of the occlusion. Shocked rats, treated with an intravenous bolus of L-659,989, a specific platelet activating factor (PAF) receptor antagonist (12.5, 25 or 50 nmol/kg, 4 min after reperfusion followed, 8 min thereafter, by a continuous infusion of 125, 250 or 500 nmol/kg for 30 min), maintained post-release mean arterial blood pressure at significantly higher values than did rats receiving the vehicle. Treatment with L-659,989 significantly increased survival rate, blunted the rise in plasma myocardial depressant factor activity and lowered serum and macrophage levels of tumor necrosis factor (TNF-alpha). In addition, the drug completely restored macrophage phagocytosis, improved macrophage killing and significantly inhibited leukopenia. To investigate the interaction between PAF, TNF-alpha and myocardial depressant factor, the blood levels of these three mediators were evaluated: shocked rats exhibited increased PAF levels with a peak at 30 min. The plasma levels of PAF peaked earlier than did either serum TNF-alpha or plasma myocardial depressant factor. Both peaks occurred 75 min after the release of occlusion. The results of this study therefore suggest that PAF is a key mediator of splanchnic artery occlusion shock and plays a permissive role in inducing the release of other factors (i.e. TNF-alpha and myocardial depressant factor) that are relevant to shock.

Anesthesia↗

Cloricromene, a coumarine derivative, protects against lethal endotoxin shock in rats.

Endotoxin shock was induced in male rats by an intravenous (i.v.) injection of Salmonella enteriditis lipopolysaccharide (LPS; 20 mg/kg i.v.). Survival rate, macrophage and serum tumor necrosis factor (TNF-alpha), mean arterial blood pressure (MAP) and white blood cell count were then evaluated. Furthermore the in vitro effect of cloricromene on peritoneal macrophage phagocytosis and TNF-alpha release by primed peritoneal macrophages was investigated. LPS administration caused animal death (0% survival 24 h after endotoxin challenge), hypotension, marked leukopenia and increased the levels of TNF-alpha in both serum and macrophage supernatants. Cloricromene administration (0.5, 1 and 2 mg/kg i.v. 15 min after endotoxin) protected against LPS-induced lethality (100% survival rate 24 h after endotoxin challenge), reverted LPS-induced hypotension and leukopenia, and decreased TNF-alpha in both serum and macrophage supernatants. Finally, cloricromene, added in vitro to peritoneal macrophages collected from endotoxin-treated rats increased macrophage phagocytosis and reduced TNF-alpha formation by activated mononuclear phagocytes. Our data suggest that cloricromene increases survival rate in endotoxin shock through an inhibition of TNF-alpha production.

Animals↗

Passive immunization with antibodies against tumor necrosis factor (TNF-alpha) protects from the lethality of splanchnic artery occlusion shock.

Splanchnic artery occlusion shock was induced in anesthetized rats by clamping splanchnic arteries for 45 min. Survival rate, serum and macrophage tumor necrosis factor (TNF-alpha), peritoneal macrophage phagocytosis, and killing activities were evaluated. Shocked rats died within 2 hr, whilst all sham-shocked rats survived more than 6 hr. Serum and macrophage TNF-alpha was undetectable in sham-shocked rats while shocked rats exhibited increased serum (110 +/- 5 U/ml 90 min after release of occlusion) and macrophage levels (122 +/- 4.5 U/ml 90 min after release of occlusion) of TNF-alpha. Furthermore, splanchnic artery occlusion shock produced cardiovascular changes, reduced macrophage phagocytosis (23 +/- 4.6%) and killing (6 +/- 1.1%) activities, and induced a massive necrosis of the ileum. A passive immunization with a hyperimmune serum containing antibodies against murine TNF-alpha significantly protected rats from the lethal effects of splanchnic artery occlusion shock, lowered serum TNF-alpha (6 +/- 2.1 U/ml), and completely reverted the impairment in peritoneal macrophage phagocytosis (48 +/- 4.8%) and killing (13 +/- 1.5%) activities. In addition passive immunization had beneficial effects on the cardiovascular changes occurring during splanchnic artery occlusion shock and prevented necrosis of the ileum induced by this model of shock. By contrast, pretreatment with polymyxin B, an "antiendotoxin" antibiotic, did not modify the lethal effects and the TNF-alpha production induced by splanchnic artery occlusion shock. Furthermore, endotoxin was undetectable in the blood of splanchnic artery occlusion shocked rats. These findings are consistent with the involvement of TNF-alpha in splanchnic artery occlusion shock and suggest that the cytokine represents an important mediator of non-septic shock.

Animals↗

IRFI-016, a new radical scavenger, limits ischemic damage following coronary artery occlusion in rats.

The effects of IRFI-016 [2(2,3 Dihydro-5-Acetoxy 4,6,7-Trimethyl-Benzofuranyl) acetic acid] a new radical scavenger were studied following six hours of myocardial ischemia, induced by left coronary artery occlusion in male rats. The loss of myocardial Creatinine Phosphokinase activity (CPK), myocardial Myeloperoxidase Activity (MPO), ECG, survival rate, and Pressure Rate Index (PRI) were evaluated in SHAM, control (vehicle i.p. injection) and IRFI-016 (200 mg/kg i.p., 30 minutes before occlusion) treated animals. CPK was significantly reduced and MPO significantly enhanced in the ischemic areas of the hearts obtained from vehicle treated rats when compared to SHAM operated ones. Pretreatment with IRFI-016 significantly attenuated (52%) loss of CPK activity in ischemic hearts and the increase in MPO activity, but did not increase PRI, thus indicating that this substance reduces the myocardial ischemic demand for oxygen. Occlusion of the coronary artery, furthermore, was associated with an immediate rise in the ST segment of the ECG, which was significantly attenuated by IRFI-016. These findings further support the important role of free radicals in the pathogenesis of acute myocardial ischemia and suggest that IRFI-016 may be a useful agent in the treatment of myocardial occlusion injury.

Animals↗

Splanchnic artery occlusion shock: vinblastine-induced leukopenia reduces tumour necrosis factor and thromboxane A2 formation, and increases survival rate.

This study was designed to assess the role of leukocytes in rats subjected to splanchnic artery occlusion for 45 min followed by reperfusion (SAO shock). Leukopenia was induced by an intravenous injection of vinblastine (1 mg/kg) 72 h before SAO shock. Survival rate (within 6 h), plasma levels of thromboxane B2 (TxB2), serum levels of tumour necrosis factor (TNF-alpha), and histological alteration of the intestinal tract were investigated. Control rats [white blood cells (WBC) = 10362 +/- 630/mm3] died within 2 h following ischaemia and reperfusion. Leukopenic (WBC = 1263 +/- 311/mm3) animals which underwent SAO shock survived more than 2 h and 50% of them were still alive after 6 h. Plasma TxB2 levels significantly increased in WBC count normal rats subjected to SAO shock (8.4 +/- 2.1 ng/ml), compared to sham animals (0.4 +/- 0.08 ng/ml); however SAO shock raised TxB2 levels significantly less (2.1 +/- 1.1 ng/ml) in leukopenic rats. Serum TNF-alpha, undetectable in sham-shocked rats (either with normal WBC count or without), rose up to 150 +/- 12 U/ml in shocked rate and to 45 +/- 5 U/ml (P < 0.01) in shocked animals with leukopenia. SAO shock induced a massive necrosis of the intestinal tract in rats with normal WBC count. Leukopenia prevented ileum necrosis in SAO shock. These data indicate that leukocytes play an important role in splanchnic artery occlusion and reperfusion.

Animals↗

Protective effects of BAY U 3405, a thromboxane A2 receptor antagonist, in endotoxin shock.

The present study was designed to investigate the effects of BAY U 3405, a new thromboxane A2 (TxA2) receptor antagonist, in endotoxin shock. Endotoxin shock (ES) was induced in male rats by an i.v. injection of Salmonella enteritidis lipopolysaccharide (LPS; 20 mg kg-1). LPS administration caused animal death (survival = 0%, 48 h after endotoxin challenge), systemic hypotension, depressed phagocytosis and increased blood levels of TNF-alpha, TxB2 and 6-keto-PGF1 alpha, reduced white blood cell (WBC) count (ES = 5.9 +/- 1 x 10(3) mm-3; CTRL = 13.4 +/- 5 x 10(3) mm-3) and enhanced myeloperoxidase (MPO) activity, studied as a quantitative means for assessing leukocyte accumulation, in the ileum (ES = 0.24 +/- 0.7 U g-1 fresh tissue; CTRL = 0.13 +/- 0.04 U g-1 fresh tissue), in the heart (ES = 0.41 +/- 0.1 U g-1 fresh tissue; CTRL = 0.16 +/- 0.08 U g-1 fresh tissue) and in the lung (ES = 0.68 +/- 0.11 U g-1 fresh tissue; CTRL = 0.19 +/- 0.05 U g-1 fresh tissue). Furthermore, endotoxin administration produced characteristic damage of the gastric mucosa consisting of haemmorrhagic infiltrates. BAY U 3405 (30 mg kg-1 i.v., 30 min before endotoxin challenge) increased survival rate (45% survival rate 48 h after endotoxin challenge), reduced hypotension, decreased TNF-alpha levels in serum, enhanced phagocytic activity (ES = 25.6 +/- 1.9%, BAY U 3405 = 45.9 +/- 0.4%, P < 0.001) and lowered MPO activity in the ileum (0.14 +/- 0.05 U g-1 fresh tissue), in the heart (0.18 +/- 0.08 U g-1 fresh tissue) and in the lung (0.44 +/- 0.09 U g-1 fresh tissue). Finally, the gastric alterations were significantly reduced in rats pretreated with BAY U 3405. These data suggest that this thromboxane receptor antagonist might be a useful drug in shock conditions.

Analysis of Variance↗

Soluble E-selectin levels in acute human myocardial infarction.

It has been suggested that leukocyte adhesion mechanisms play a key role in experimental myocardial infarction. We have recently shown that E-selectin, an adhesion molecule belonging to the selectin family, is involved in the pathogenesis of experimental myocardial ischemia. We investigated the circulating levels of E-selectin, studied as a marker of endothelial dysfunction, in acute myocardial infarction. Our study was carried out in 60 patients, 20 hospitalized for acute myocardial infarction, 20 suffered from angina pectoris and 20 healthy control subjects. Patients with acute myocardial infarction had increased serum levels of soluble E-selectin (sE-selectin = 255 +/- 12 ng/ml) compared to both patients with angina pectoris (sE-selectin = 51 +/- 14 ng/ml). Thrombolytic therapy with urokinase (1,000,000 IU as an intravenous bolus in 5 min, followed by producing reperfusion and reduced the serum levels of sE-selectin (71 +/- 19 ng/ml). Our results confirm previous experimental data and indicate that adhesion mechanisms supporting leukocyte-endothelium interaction may also be operative in human acute myocardial infarction.

Adult↗

Recombinant human granulocyte colony-stimulating factor reverts vascular dysfunction.

The aim of our study was to investigate the vascular effects of recombinant human granulocyte colony-stimulating factor (rh G-CSF) in a rat model of irreversible vascular failure. Male anesthetized rats were subjected to the clamping of the splanchnic arteries for 45 min. This surgical procedure resulted in an irreversible state of shock (splanchnic artery occlusion shock) characterized by high mortality rate (0% survival, 120 min following the release of clamps), a profound hypotension and vascular dysfunction consisting of a marked hyporeactivity to phenylephrine (PE 1 nM-10 microM) of aortic rings. Administration of recombinant human granulocyte colony-stimulating factor (20 micrograms/kg i.v. 5 min after the release of occlusion) increased survival rate (90% 4 h after the release of occlusion), blunted the profound hypotension and reverted the marked vascular dysfunction. Finally, rh G-CSF inhibited the activity of inducible nitric oxide synthase in peritoneal macrophages activated with endotoxin. Our data suggest that rh G-CSF may influence vascular function when low-flow states occur.

Acute Disease↗