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Effects of combined pre- and postnatal ethanol exposure (three trimester equivalency) on glial cell development in rat optic nerve.

This study evaluated the effects of a combined gestational and 10 day postnatal alcohol exposure (human three trimester equivalency) on the development of glial cells in the rat optic nerve. Pregnant rats were exposed to alcohol via a liquid diet, then their pups were artificially reared and further exposed to alcohol for 10 postnatal days via a gastrostomy fed liquid diet. Control animals, born of pair fed dams, were artificially reared on pair fed isocaloric diets. Optic nerve tissues were prepared for light and electron microscopic studies from animals on gestational days (G) 15 and 20 and postnatal days (P) 5, 10, 15, 20 and 90. There were fewer glial cells per cross-section on day 15 and the cross-sectional areas of optic nerves were smaller on days G20, P15 and P90 in the ethanol exposed animals. There was an alcohol-induced delay in the appearance of immature cells within the oligodendroglia lineage and a decrease in the number of oligodendroglia present at 15 and 20 days, indicating a delay in the maturation of oligodendroglial cells. These effects were compensated for by 90 days. Maturation of the astrocytic cell lineage was generally unaffected by the alcohol although there was evidence of increased numbers of cells in the lineage. There was no consistent indication of alcohol-induced degeneration of glial cells or their organelles. Thus, alcohol exposure for all of gestation and 10 postnatal days in the rat causes a delay in oligodendrocyte maturation but appears to have no long-term effects on the glial cell population of the optic nerve. Such a delay, by contributing to delays in myelin development, could help to explain some of the neurological dysfunctions associated with developmental alcohol exposures.

Aging↗

The effect of prenatal alcohol exposure on attention in the rat.

The effect of prenatal exposure to alcohol on the development of basal heart rate and on the elicitation and habituation of the heart rate orienting response was examined in three experiments with rats. In all experiments, Etoh dams consumed large, daily amounts of alcohol and their weight gain during pregnancy was less than that of ad lib or pairfed dams. In addition, Etoh-exposed pups weighed less and grew more slowly than their ad lib or pairfed counterparts. Although prenatal exposure to alcohol had a significant effect on the ontogeny of basal heart rate, there was no effect on the magnitude of the heart-rate response to a novel olfactory stimulus or on habituation of the heart-rate response to that stimulus. Implications of the present findings for models of alcohol-induced attention deficits are discussed.

Animals↗

Alcohol and nutrition.

Alcoholic patients frequently have evidence of nutritional deficiency the consequences of which may be seen in all systems of the body. Alcoholism is theoretically a completely preventable disorder which requires more attention by the general public, practising physicians and research workers. Rehabilitation of the established alcoholic will sometimes be limited by failure to modify behaviour or because of nutritionally induced brain damage but we are beginning to understand some of the mechanisms by which malnutrition evolves (Figure 2). Better methods must be developed to limit alcohol-induced tissue injury in patients whose drinking cannot be controlled. The final mechanisms of liver injury remain to be established. Cirrhosis may be induced in animals ingesting a good diet but this does not ensure adequate delivery and utilization of nutrients at the subcellular level. Cirrhosis takes a long time to evolve and the natural history, including longitudinal nutritional profiles in man, has not been established. Therefore, although normal liver morphology is sometimes seen in alcoholics with gross stigmata of malnutrition suggesting that factors other than malnutrition are important, it may be that critical nutrients have not been deficient for long enough in these individuals or severe depletion has been intermittent. Whether or not malnutrition is of decisive importance in the toxicity of alcoholic liver injury in man, adequate replacement is essential for protection and repair of liver cells. Established daily minimal requirements are not adequate for patients with active liver disease. Hepatocyte injury reduces the capacity of this major storage site and causes release of vitamins (co-enzymes) into the circulation in the form of holoenzymes. Liver damage reduces the conversion of nutrients into their metabolically useful forms required for catabolic processes and to meet increased needs for DNA/RNA synthesis necessary for repair of damaged cells and to replace necrotic cells. The choice and route of therapy must take account of the patient's metabolic needs and their absorptive defects. The effects of alcohol and maternal undernutrition on the fetus/neonate may cause intra-uterine death or varying degrees of brain damage, thus limiting the potential of the next generation.

Alcoholism↗

Isolated corticotrophin-deficiency found through alcohol-induced hypoglycemic coma.

A case of hypoglycemic coma after alcohol ingestion was observed in a chronic alcoholic. Upon close examination isolated corticotrophin-deficiency was found. It is suggested that ethanol-induced hypoglycemia may be consistent with dysfunction of mitochondria in hepatic cells and that there may be disorder of the hypothalamus in the chronic drinker.

Adrenocorticotropic Hormone↗

[MR tomography and computer tomography of alcohol-induced brain tissue changes].

Results of MRI in five alcoholics suffering from acute neurologic disorders such as ataxia, ophthalmoplegia and confusion are presented. The detection of focal cerebral lesions of high signal intensity in T2-weighted Spin-Echo- and Gradient-Echo-images in periventricular white matter, thalamus and pons combined with patients history and clinical presentation led to the diagnosis of Wernicke-Encephalopathia and Pontine Myelinolysis. MRI was far more sensitive compared with CT.

Adult↗

Effects of chronic alcoholism on hemispheric functioning: an examination of gender differences for cognitive and dichotic listening tasks.

A pattern of intact verbal abilities and impaired visuospatial abilities has led to a hypothesis of alcohol-induced right-hemisphere dysfunction in male chronic alcoholics. The applicability of this hypothesis to chronic female alcoholics was examined by administering the WAIS-R, Stark Paired Associates Tasks, and dichotic listening tasks to 15 male and 10 female alcoholics and 15 male and 10 female controls of similar age and education. Alcoholics had significantly lower Full Scale IQ scores on the WAIS-R but neither sex had a Verbal-Performance IQ difference indicative of right-hemisphere dysfunction. Male alcoholics showed deficits on both the Verbal and Visuospatial Stark Tasks, the deficit being greater on the Visuospatial Task. Male alcoholics showed an increased right-ear superiority on the verbal dichotic listening task and a decreased left-ear superiority on the musical dichotic listening task, both indicative of right-hemisphere dysfunction. The results, except for the WAIS-R, support the hypothesis that male but not female chronic alcoholics exhibit right-hemisphere dysfunction. Females, alcoholic or not, appear to be less lateralized in function.

Adult↗

Role of alcohol abuse in nutritional immunosuppression.

Nutritional status is an important determinant of the host resistance against infections and tumors. Alcohol interferes in various ways with the complex system of nutritional immunomodulation. Alcohol acts directly on mechanical barriers in the gastrointestinal tract and increases permeability of intestinal walls, which results in a reduced exclusion of immunogenic material in the intestine. Alcohol further affects granulocytopoiesis and suppresses various immune functions. Indirect effects on the immune response are caused by alcohol-induced malnutrition. Heavy alcohol abuse is associated with a high energy intake derived by alcohol and an inadequate intake of protein, vitamins and minerals. In addition, alcohol abuse impairs absorption, utilization, storage and excretion of nutrients, which together with inadequate nutrient intakes results in nutritional immunosuppression. The high incidence of infections in alcoholics could be one consequence of the alcohol-induced immunosuppression.

Alcoholism↗

New approaches to research on the long-term consequences of prenatal exposure to alcohol.

As the summary presentation of a symposium on prenatal alcohol-induced brain damage and long-term postnatal consequences, this paper proposes the establishment of two main research priorities--to begin to correlate long-term behavioral effects with alterations in underlying neural substrates, and to explore the mechanisms of neuroteratogenicity. To reach these goals, three objectives are described. First, animal and human research must become more interrelated. Second, experimental observations should be integrated into formal models that incorporate both neural structure and function. Third, researchers should choose well-defined dependent measures that are derived from models of brain function based on modern concepts of cognitive neuroscience. Examples of neuropsychological tests that may serve as the bases for structure/function relationships are presented. Incorporating these objectives into future research will facilitate understanding of the fundamental issues concerning prenatal alcohol exposure and will begin to provide the bases for rational intervention or treatment.

Alcohol Drinking↗

Cell population depletion associated with fetal alcohol brain damage: mechanisms of BAC-dependent cell loss.

Neuronal death is one of the most serious consequences of alcohol exposure during development. Studies described in this paper used a neonatal rat model to address factors affecting neuronal death following alcohol exposure during the period of rapid brain growth, and relate them to possible mechanisms of damage. The profile of blood alcohol concentrations (BACs) is an important variable influencing both brain growth deficits and neuronal death--a smaller daily dose of alcohol can be more damaging than a larger daily dose, if it is consumed in a binge-like pattern that produces relatively higher BACs. Alcohol exposure for a single day also can be damaging, producing both brain growth deficits and neuron loss, if high BACs are obtained. Various brain regions and different neuronal populations within a given brain area exhibit different degrees of vulnerability. Some neuronal loss clearly is a function of cell death due to direct effects of alcohol, while other deficits may be due to either primary or secondary effects of the alcohol insult. In the cerebellum, a maturational or metabolic factor also appears to be involved with alcohol-induced neuronal death. Immunocytochemical studies using a monoclonal antibody against microtubule-associated protein 2 (MAP2) indicated that cerebellar lobules containing Purkinje cells that are in the process of extending dendrites are ones that are more vulnerable to alcohol than lobules containing Purkinje cells that mature later. Alcohol exposure during brain development may be producing neuron attrition in multiple ways, including disruption of membrane integrity, inhibition of protein synthesis or other alterations such as lipid solubility, or by disruption of cytoskeletal elements.

Animals↗

Effect of drugs of abuse on psychiatric symptoms among hospitalized schizophrenics.

In a group of 71 inpatient schizophrenics with no other concurrent psychiatric diagnosis except for dependence on one drug, we ascertained the subjective effect their drug of abuse had on their psychiatric symptoms 2 weeks prior to hospitalization. Psychiatric symptoms were assessed by means of the Hopkins Symptom Checklist (Revised) (SCL-90R). Cocaine addicts, but not alcoholics, reported aggravation more often than improvement of symptoms. Alcoholics reported alcohol-induced symptom improvement with a similar frequency as alcohol-induced symptom aggravation.

Adult↗

Differential Expression of Erythrocyte Proteins in Patients with Alcohol Use Disorder.

Alcohol Use Disorder (AUD) poses global health challenges, and causes hematological alterations such as macrocytosis and oxidative stress. Disruption of protein structures by alcohol and/or its metabolites may exacerbate AUDs; proteomics can elucidate the underlying biological mechanisms. This study examined the proteins differentially expressed in the cytosol and membrane fractions of erythrocytes obtained from 30 male patients with AUD, comparing them to samples from 15 age- and BMI-matched social drinkers (SDs) and 15 non-drinkers (control). The analysis aimed to identify the molecular differences related to alcohol consumption. The AUD patient subgrouping was based on mean corpuscular volume (MCV), with 16 individuals classified as having a normal MCV and 14 having a high MCV. Proteins were separated via two-dimensional(2D)-gel electrophoresis, digested with trypsin, and identified via Matrix-Assisted Laser Desorption/Ionization Time-of-Flight (TOF) mass spectrometry (MALDI-TOF/TOF). Additionally, levels of malondialdehyde and 4-hydroxyalkenals (MDA + HAE), reduced glutathione (GSH), oxidized glutathione (GSSG), serum carbohydrate-deficient transferrin (%CDT), disialotransferrin (%DST), and sialic acid (SA) were analyzed. The results showed increased MDA + HAE and decreased total thiols in AUD patients, with GSSG elevated and the GSH/GSSG ratio reduced in the AUD MCV-high subgroup. Serum %CDT, %DST, and SA were significantly higher in AUD. Compared to the control profiles, the AUD group exhibited differential protein expression. Few proteins, such as bisphosphoglycerate mutase, were downregulated in AUD versus control and SD, as well as in the MCV-high AUD subgroup. Conversely, endoplasmin and gelsolin were upregulated in AUD relative to control. Cytoskeletal proteins, including spectrin-alpha chain, actin cytoplasmic 2, were overexpressed in the AUD group and MCV-high AUD subgroup. Several proteins, such as 14-3-3 isoforms, alpha-synuclein, translation initiation factors, heat shock proteins, and others, were upregulated in the MCV-high AUD subgroup. Under-expressed proteins in this subgroup include band 3 anion transport protein, bisphosphoglycerate mutase, tropomyosin alpha-3 chain, uroporphyrinogen decarboxylase, and WD repeat-containing protein 1. Our findings highlight the specific changes in protein expression associated with oxidative stress, cytoskeletal alterations, and metabolic dysregulation, specifically in AUD patients with an elevated MCV. Understanding these mechanisms is crucial for developing targeted interventions and identifying biomarkers of alcohol-induced cellular damage. The complex interplay between oxidative stress, membrane composition, and cellular function illustrates how chronic alcohol exposure affects cellular physiology.

Humans↗

Alcohol intoxication results in rapid loss in free magnesium in brain and disturbances in brain bioenergetics: relation to cerebrovasospasm, alcohol-induced strokes, and barbiturate anesthesia-induced deaths.

In vivo 31P-nuclear magnetic resonance (31P-NMR) spectroscopy and ion-selective electrode measurements were undertaken to determine if administration of acute doses of alcohol (ALC, 0.2-6.6 g/kg), and lethal doses of barbiturate anesthesia, exert any influence on: (1) brain cellular bioenergetics, intracellular free Mg ([Mg2+]i) and intracellular pH (pHi), and (2) serum levels of ionized Mg (IMg2+), ionized calcium (ICa2+) and K+. Approximately 20-30 min after intraperitoneal administration of ALC to anesthetized rats, brain phosphocreatine (PCr)/ATP and PCr/inorganic phosphate (P(i)) ratios dropped from 2.5 to 1.7 and from 6.6 to 2.2, respectively, P(i) rose 20-200% (depending upon ALC dose), and free ADP and creatine rose significantly. ALC induced rapid decreases in the cytosolic phosphorylation potential (CPP) and free energy of ATP hydrolysis (-delta G/delta E). Following ALC administration, brain [Mg2+]i dropped rapidly (within 4-30 min) and significantly; the greater the dose of ALC, the greater the loss in brain [Mg2+]. Correlations were found between [Mg2+]i, PCr/ATP, CPP and delta G/delta E after ALC but not in control brains. Rats that exhibited ALC-induced strokes and death (unlike barbiturate death) exhibited huge elevations in [Mg2+]i. Although ALC administration does not alter brain pHi at least (up to 70 min), ALC- and barbiturate-induced death produces rapid brain intracellular acidosis. Concomitant with ALC-induced alterations in [Mg2+]i and brain cellular bioenergetics, we noted that ALC administration results in rapid elevations in serum IMg2+ and K+ but not ICa2+. These results suggest that ALC administration and heavy or binge-drinking of ALC (1) can result in rapid alterations in brain bioenergetics, [Mg2+]i and pHi, and (2) result in rapid elevations in serum IMg2+ and K+ in rats. In addition, ALC- and barbiturate-induced deaths do not appear to produce identical alterations in brain bioenergetics and [Mg2+]i, and lastly binge or heavy drinking of ALC may result in stroke-like events and sudden death via rapid alterations in brain cellular bioenergetics.

Alcoholic Intoxication↗

Alcohol-related diseases and carcinogenesis.

Possible mechanisms whereby alcohol abuse and alcohol-related diseases may promote the development of cancer are analyzed. The mechanisms discussed include: (a) contact-related local effects on the upper gastrointestinal tract; (b) the presence of low levels of carcinogens in alcoholic beverages; (c) induction of microsomal enzymes involved in carcinogen metabolism; (d) various types of cellular injury produced by ethanol and its metabolites and their relationship to cancer, particularly in the liver; (e) the nutritional disturbances frequently associated with alcohol abuse. The relationship between alcohol-induced cirrhosis and hepatocellular carcinoma is also discussed, and case histories of patients seen at the Bronx Veterans Administration Medical Center with hepatocellular carcinoma in the absence of cirrhosis are reviewed. Data are presented demonstrating the induction, by chronic ethanol consumption, of microsomal enzymes which convert procarcinogens to carcinogens. These data were derived from experiments in which the ability of microsomes isolated from liver, intestine, and lung tissues of ethanol-fed and control rats to activate several test carcinogens was examined in the Ames Salmonella-mutagenicity test. The hypothesis is presented that ethanol-mediated induction of enzyme systems which activate procarcinogens to carcinogens in various tissues contributes to the enhanced incidence of cancer in the alcoholic.

Alcoholism↗

Relationship between neuropsychological performance and alcohol consumption in alcoholics.

Cognitive performance in drug-free alcoholic patients (n = 95) within 7 days of their last drink was significantly predicted by chronic and recent drinking practices. Conceptually distinct cognitive functions were differentially influenced by various combinations of drinking variables. Consideration of curvilinear relationships enhanced the amount of variance explained, and it is suggested that certain patterns of consumption may accelerate the alcohol-induced decline of brain function.

Adult↗