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Postbinge effects of acute alcohol intoxication on hepatic free radical formation.

The present studies were performed to test the hypothesis that Kupffer and endothelial cells are activated after recovery from an acute alcohol binge, which is accompanied by formation of oxygen-derived radicals. These radicals have been implicated in the pathogenesis of alcohol-mediated tissue injury in a number of organs. Male Sprague-Dawley rats received an intravenous injection of 20% ethanol in saline (1.75 g/kg), followed by an intravenous infusion (250 to 300 mg/kg/hr) for 12 hr. At the end of 12-hr infusion, ethanol was replaced by saline, and the infusion was continued for a further 6 hr. This was referred to as the recovery period. The 6-hr recovery period was selected because superoxide anion generation by the perfused liver peaked at this time point. Superoxide anion formation by the perfused liver was measured by the superoxide dismutase-inhibitable reduction of ferricytochrome c. Kupffer and endothelial cells were isolated for the determination of in vivo glucose uptake and in vitro superoxide anion release. Results show that a significant (p < 0.05) amount of superoxide (1.54 nmol/min/g) was generated by the perfused liver at 6 hr recovery after 12 hr of ethanol infusion. Serum ALT activity was also elevated in this treatment group. Time-matched control-saline infused animals or ethanol-treated animals without a recovery period released < 0.2 nmol/min/g of superoxide. The postrecovery superoxide production and an accompanying increase in the in vivo glucose uptake were also observed in isolated Kupffer and endothelial cells. Depletion of Kupffer cells by gadolinium chloride before ethanol treatment and recovery was associated with significant attenuation of free radical formation by the perfused liver and reduction of serum ALT. These studies demonstrate that recovery from an acute alcohol binge has a stimulating effect on hepatic sinusoidal superoxide production, and it may also affect liver function.

Alcoholic Intoxication↗

[Therapeutic tactics in treatment of patients with cranio-cerebral injury and alcoholic intoxication].

Case-histories of 1077 victims of cerebro-cranial injuries, 38 per cent of whom were admitted in the state of alcoholic ebriation, were analyzed. Alcoholic ebriation was found to materially change the clinical picture of the cerebro-cranial trauma, simulating, sometimes, a picture of a traumatic brain lesion. Curative measures aimed at the treatment of the traumatic lesion of the brain were applied in a complex set, depending upon the nature and the severity of the cerebro-cranial injury, the phase (stage) and degree of alcoholic ebriation.

Alcoholic Intoxication↗

Acute alcohol intoxication decreases cell proliferation and nitric oxide synthase expression in dentate gyrus of rats.

To study the dose-dependence of the effect of alcohol on cell proliferation and nitric oxide synthase expression, rats were first divided into the control group, the 0.5 g/kg alcohol-treated group, the 1 g/kg alcohol-treated group, the 2 g/kg alcohol-treated group, and the 4 g/kg alcohol-treated group. To study the duration-dependence of this effect, animals were divided into the control, the 1-day-alcohol-treated group, the 3-days-alcohol-treated group, and the 6-days alcohol-treated group; 2 g/kg of alcohol was applied to rats over the respective number of days. Alcohol injection reduced the number of both 5-bromo-2'-deoxyuridine-positive and nicotinamide adenine dinucleotide phosphate-diaphorase-positive cells in the dentate gyrus of rats in a dose- and duration-dependent manner. These results suggest that alcohol-induced impairment in memory is due to the inhibition of new cell formation, and it is possible that nitric oxide, its synthesis is affected adversely by alcohol, plays an important role in the regulation of cell proliferation.

Alcoholic Intoxication↗