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Biomedical subjects

G Freund

Publications and source records attributed to G Freund.

At least 37 records · Page 2Linked to original sources

Effects of aging and alcohol on the biochemical composition of histologically normal human brain.

Human brains were removed at autopsy and examined grossly and histologically for any abnormality or evidence of disease. Sixty-two brains appearing normal by these criteria were examined further. First, a detailed record of alcohol consumption was obtained. Second, frozen punches of gray and white matter were used to determine the compositional change associated with age and drinking patterns. Increased age was associated with an increase in the water content, particularly in the white matter, a decline in RNA content in gray matter, a decline in total protein in white matter, and a decline in both myelin and the myelin-like subfraction. The loss of myelin membrane in white matter corresponded to a similar increase in water content, although there was an additional loss of some nonmyelin protein. There was no significant shift in the density between the myelin and the myelin-like membranes, and the protein composition of myelin was not significantly altered by age. A history of heavy alcohol consumption was associated with a relative increase in total protein in white matter even though heavy drinking accelerated the age-related loss of myelin. Presumably, alcohol produced a lag in the rate at which nonmyelin proteins are lost or accelerated the accumulation of abnormal protein. Alcohol consumption did not influence the myelin composition or the ratio of myelin and myelin-like membranes. The interval between patient death and autopsy was shown to have little or no effect on the samples used in this study. These data show that normal aging, uncomplicated by other disease processes, can have a significant effect on the composition of brain tissue, particularly the white matter, and that heavy alcohol consumption accelerates degenerative change, even in tissue appearing normal by histology.

Aged↗

Loss of cholinergic muscarinic receptors in the frontal cortex of alcohol abusers.

Alcohol abuse causes impairment of cognitive function ranging from mild forms to end-stage dementia. Alcohol-related dementia accounts for nearly 20% of all admissions to state mental hospitals and may result from head trauma, thiamine deficiency, Alzheimer's, and other brain diseases that can be diagnosed conclusively only at autopsy. However, we postulate that after all these conditions have been excluded, an "alcohol encephalopathy" remains. This is characterized by impaired synaptic function, which underlies the continuum of impaired intellectual function. We found in 79 histologically normal brains of a nondemented general hospital population a 40% decrease in the density of cholinergic muscarinic receptors in the frontal cortex of alcoholics when compared with matched controls of the same age. Only alcohol abuse and not aging, postmortem changes, medications, clinical (including liver) diseases, or differences in causes of death could account for this loss.

Age Factors↗

Membrane fluidization increases low-affinity muscarinic receptor binding in brain: changes with aging.

Specific cholinergic muscarinic receptor binding was determined with L-[3H]quinuclidinyl benzilate ([3H]QNB) in homogenates from crude synaptosomal pellets prepared from mouse whole-brain homogenates. Specific total (high- and low-affinity) binding was determined in the absence of the agonist carbachol and low-affinity binding in its presence. These membrane preparations were fluidized by adding in vitro aliphatic alcohols ranging from ethanol to hexanol and by increasing the incubation temperatures. At 23 degrees C hexanol (14.7 mM) nearly doubled the low-affinity binding in the presence of carbachol (0.32 mM) and decreased high-affinity binding by the same amount. This suggested a change of muscarinic receptors from high- to low-affinity conformation. Increase of incubation temperature from 24 degrees C to 37 degrees C nearly tripled low-affinity binding. Brain homogenates from female C57BL/6J mice, ages 6, 12, 18, and 30 months, showed a progressively lower stimulation by hexanol of low-affinity [3H]QNB binding in the presence of carbachol. We postulate that this diminished change with age of [3H]QNB-receptor binding in response to alcohols may be a result of increasing membrane rigidity with advancing age. Rigidity of membranes may link aging at the membrane level, synaptic receptors, and impaired learning behavior.

Aging↗

The effect of vaginal prostaglandin E2 pessaries on induction of labor.

In a prospective randomized study, patients with a valid obstetric indication for induction of labor received either 3 mg prostaglandin E2 vaginal pessaries immediately prior to oxytocin (prostaglandin group, n = 99), or oxytocin alone (oxytocin group, n = 103). At the conclusion of the second day of induction, a significant reduction was noted in the incidence of failed induction in the prostaglandin group (4%) as compared to the oxytocin group (13%) (p less than 0.05). Twenty percent of patients in the prostaglandin group experienced successful induction with prostaglandin pessaries only. When oxytocin was required in the prostaglandin group, the maximal concentration of oxytocin infused and the duration at this concentration were significantly less than in the oxytocin group. No perinatal complications were attributed to the use of prostaglandin. Three minor maternal complications that were attributed to vaginal prostaglandin E2 did not require treatment. Our conclusion is that patients who require an induction of labor, when artificial rupture of the membranes is not feasible, benefit from the use of prostaglandin pessaries before the administration of oxytocin.

Cesarean Section↗

Neurobiological relationships between aging and alcohol abuse.

Both biological aging and chronic exposure to alcohol may cause impaired learning and memory in man and animals. The chains of processes beginning with molecular changes that in turn alter electrophysiology and morphology and finally culminate in changes of behavior (individual and social) are largely unknown. While these chains originating with molecular events leading to the same behavioral end result may be totally different, they may also overlap at any one of these levels of biological organization, accentuate, attenuate each other, to branch again and to develop parallel to each other. There is currently some evidence from observations in humans and animals that both aging and chronic alcohol toxicity induce the following changes: brain atrophy measured in vivo by computerized tomography, histological loss of the dendritic tree of neurons in various brain regions including hippocampus and cerebellum, and a variety of chemical changes of brain synaptic function, such as loss of benzodiazepine receptors.

Aging↗

Memory and postsynaptic cholinergic receptors in aging mice.

Significant retention deficits were observed on passive avoidance tasks (step-down and step-through) in 15-, 20-, and 25-month-old male C57BL/6 mice compared with 4- and 8-month-old mice. In contrast, cholinergic muscarinic receptor binding ( [3H]quinuclidinyl benzilate) in cerebral cortex, striatum, hippocampus, and cerebellum in these same animals revealed no difference in this 4- to 25-month age range. In a separate comparison of 4- and 29-month-old female mice, [3H]QNB binding was significantly decreased in the older group in cerebral cortex, hippocampus, and striatum. Environmental enrichment, compared with an impoverished environment, significantly improved retention in mice on 24-hr step-down performance but affected QNB binding only minimally (6-7% decrease of QNB binding in cerebral cortex and hippocampus). Benzodiazepine ( [3H]flunitrazepam) receptor binding was significantly (12-15%) decreased in 29-month-old mice compared with 4-month-old mice in the cerebral cortex, hippocampus, cerebellum, and brain stem.

Aging↗

Subacute encephalopathy with seizures in alcoholics: a clinical-electroencephalographic study.

A subacute form of encephalopathy was observed in 7 patients with a history of severe chronic alcoholism. These episodes lasted about 1 to 6 weeks and were characterized by epileptic seizures (grand mal, focal motor), prominent EEG abnormalities with focal features (slowing, spiking, "PLEDs") and neurological deficits such as hemianopsia or hemiparesis. These changes resolved with symptomatic (mainly anticonvulsive) treatment but recurrences occurred in 3 cases. The clinical picture does not fit any of the known CNS complications of chronic alcoholism and there seems to be no relationship to alcohol withdrawal. Impressive EEG abnormalities strongly differ from the mild abnormalities or normal tracings found in other CNS complications of alcoholism. The pathogenetic mechanisms are essentially obscure; vascular changes might play a contributory role in some of the cases.

Adult↗

[Alteration of the early R1-component of the blink reflex in coma: topographical and prognostic value (author's transl)].

Alteration of the early component of the blink reflex (delayed latency or abolished reflex) is considered to be relatively specific for pontine lesions (multiple sclerosis, vacular lesions of the brain-stem, neoplasms, syringes); provided, the trigeminal and facial nerve are unaffected. In comatose patients the electrically, by stimulation of the supraorbital nerve elicited blink reflex was super-imposed (50 or 100 responses) with the LAB 8/e-computer (off-line). It was found that the R1 component was abolished even in cases with supratentorial lesions and secondary brain-stem alterations, while no specific pontine lesions were demonstrated by neuropathological examination. Therefore it is suggested that delayed or abolished blink reflexes in coma due to supratentorial mass lesions are not concluslive for pontine lesions: they rather may reflect an unspecific secondary brain-stem alteration. Recording of the EEG reveals that in some cases the extinction of the early blink reflex precedes corresponding EEG alterations; this may be a matter of prognostic value.

Adolescent↗

[Post-traumatic alpha-and mu-wave-foci (author's transl)].

28 patients with an activated focus (8-12 c/s focus) in the central region were examined for mu-wave-activity utilizing visual and calculation of the coherence function. Over 60% (18 patients) of these foci were mu-wave-foci. This type of mu-waves was decidedly less sensitive to change in vigilance than physiological mu-waves. Seven foci were alpha-foci and three foci could be classified as neither alpha- nor mu-wave-foci since they did not react to sensory and sensomotoric stimuli. Furthermore, it was demonstrated that the pathological mu-waves and the pathological alpha-waves were very similar in their characteristics.

Adolescent↗

Reflections on the topics: EEG frequency bands and regulation of vigilance.

A critical analysis of quantitative pharmaco-electroencephalography begins with parametrization into variables. The determination of frequency bands according to clinical criteria should be reconsidered. Alternatives may be the determination of factor scores or the definition of frequency bands based on factor analysis. If the latter procedure is used, the clinical alpha-band is subdivided into a lower (alpha 1F = 8,5-10.5 HZ) and an upper (alpha 2F = 10.5-12.5 HZ) part. Furthermore parts of the clinical theta-band (and the delta-band are combined into the delta F-band (1.5-6.0 HZ), for awake healthy volunteers with an occipital alpha-rhythm. Existing concepts of vigilance for the awake stages are not contradictory to the following observations: the factor structure of EEG relative power spectrum variables shows a negative correlation of slow alpha-frequencies with those in the delta F- and beta 3F-band. There is also a negative correlation between slow and fast alpha-wave relative power values.

Arousal↗

Possible relationships of alcohol in membranes to cancer.

Ethanol can be used as a chemical tool to alter membrane fluidity or composition, or both, and to study the effects on induction, growth, spread, or treatment of cancers. Ethanol rapidly equilibrates with total body water and enters all cell membranes. Ethanol molecules are intercalated between the lipids of the bilayer membranes. This expands membranes and increases their fluidity, which in turn affects cell agglutination, phagocytosis, membrane transport, membrane enzyme activities, and many other membrane functions. After 3 to 5 days of continuous ethanol administration, the original membrane fluidity is restored by the incorporation of "stiffening" lipids, such as cholesterol, into the bilayer and by the increase of the chain length and saturation of fatty acids. The desired membrane effects (increased fluidity or altered membrane composition) can be obtained by adjusting time-dose relationships of ethanol administration. There may be an important role of moderate alcohol consumption in cancer biology that is not presently recognized by epidemiological studies because both cancers and moderate alcohol consumption are very prevalent in the general adult population. Moderate, social alcohol use could potentially either suppress or enhance the induction, growth, spread, or therapy of cancers. Such potential roles of alcohol in cancer biology could easily be tested in animals by incorporating the feeding of alcohol-containing diets into experiments that follow standard cancer protocols.

Alcohol Drinking↗