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Biomedical subjects

Iu E Morozov

Publications and source records attributed to Iu E Morozov.

At least 19 recordsLinked to original sources

Effects of chronic alcoholic disease on magnocellular and parvocellular hypothalamic neurons in men.

Although numerous data showing severe morphological impairment of magnocellular and parvocellular hypothalamic neurons due to chronic alcoholic consumption have been gathered from animal experiments, only one study (Harding et al., 1996) was performed on POST MORTEM human brain. This study showed a reduction in the number of vasopressin (VP)-immunoreactive neurons in the supraoptic (SON) and paraventricular (PVN) nuclei, but did not provide any data regarding the effect of chronic alcohol intake on human parvocellular neurons. In order to assess whether the changes observed in the animal model also occur in humans and provide a structural basis for the results of clinical tests, we performed immunohistochemical and morphometric analysis of magnocellular (VP and oxytocin, OT) and parvocellular (corticotropin-releasing hormone, CRH) neurons in post-mortem brains of patients afflicted with chronic alcoholic disease. We analyzed 26-male alcoholics and 22 age-matched controls divided into two age groups--"young" (< 40 yr) and "old" (> 40 yr). Hypothalamic sections were stained for OT, VP, and CRH. The analysis revealed: 1) decrease in VP-immunoreactivity in the SON and PVN as well as OT-immunoreactivity in the SON in alcoholic patients; 2) increase in OT-immunoreactivity in the PVN; 3) increase in CRH-immunoreactivity in parvocellular neurons in the PVN. Furthermore, the proportion of cells containing CRH and VP was increased in alcoholics. These findings indicate that chronic alcohol consumption does indeed impair the morphology of magnocellular neurons. The enhancement of CRH-immunoreactivity and increased co-production of CRH and VP in parvocellular neurons may be due to a decline in glucocorticoid production, implied by the hypoplasic impairment of adrenal cortex we observed in alcoholics during the course of this study.

Adrenal Glands↗

[DNA levels in the cell nuclei of nervous system tumors induced by ethylnitrosourea].

Distribution of DNA in cells of 28 primary ethylnitrosourea-induced tumours of the rat nervous system was studied by the Feulgen cytophotometry method. Out of them 20 had paradiploid DNA quantity, 3 tumours--hypodiploid and 4--hyperdiploid content of DNA. A high heterogeneity of the DNA quantity and the absence of expressed modal class were found only in one case. No correlation is found between the DNA distribution in gliomas and the stage of their malignancy.

Animals↗

[Evaluation of alcoholic intoxication depending of the level of brain ethanol-metabolizing enzymes in death from ischemic heart disease].

Activities of alcohol dehydrogenases (ADG), aldehyde dehydrogenases (AlDG), and NADH+ dehydrogenases were measured by histochemical methods in neurons and capillaries of the gyrus cinguli and medulla oblongata of subjects dead from coronary disease. Enzymatic activities were found to depend on the stage of alcoholic intoxication. During resorption, characterized by reversible ethanol oxidation, the activities of AlDG and NADH+ dehydrogenases decreased, while during elimination the activities of these enzymes increased. ADG activity in cerebral tissue was increased during the entire period of alcoholic intoxication. The duration of alcoholic intoxication is determined by the amount of consumed ethanol and activity of AlDG. These regularities can be used for forensic medical evaluation of the role of alcoholic intoxication in coronary death.

Alcohol Dehydrogenase↗

[Forensic medical significance of enzymatic products of ethanol oxidation in cadaveric brain].

The concentrations of ethanol, acetaldehyde, and the oxidizing enzymes alcohol dehydrogenase (ADH) and aldehyde dehydrogenase (AIDH) were measured in neuronal cytoplasm, limbic cortical capillaries, and cardiovascular center of the medulla oblongata. The measurements were carried out by histochemical methods, gas-liquid chromatography, etc. The results were processed with consideration for the degree and stage of ethanol intoxication in case of death from ethanol poisoning and asphyxia in hanging. Increase of ethanol concentration in the blood was associated with a decrease and then increase in the brain concentrations of ADH and with an increase of AIDH concentration. Enzymatic changes predominated in capillary walls; the minimum shifts were observed in the neuronal cytoplasm of the cerebral limbic cortex, which confirms the neurohumoral nature of detoxication regulation. Lethal ethanol poisoning could occur during any stage of ethanol intoxication. The detected changes in ethanol, acetaldehyde, and metabolizing oxidoreductases in brain tissue can be used for forensic medical diagnosis of ethanol poisoning.

Alcohol Dehydrogenase↗

[Brain acetaldehyde and ethanol: method of determination and diagnostic significance in ethanol poisoning].

The content of ethanol and acetaldehyde in the limbic cortex and reticular formation of the brain was measured by gas-liquid chromatography in lethal ethanol poisoning. The content of acetaldehyde was significantly increased in the gyrus cinguli of the brain. Lethal poisonings occurred during any stage of ethanol intoxication. The data characterizing individual ethanol tolerance were obtained, which can be used for differential diagnosis of ethanol poisoning in practical forensic medicine.

Acetaldehyde↗