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Biomedical subjects

G Ellison

Publications and source records attributed to G Ellison.

At least 55 records · Page 3Linked to original sources

Delayed appearance of facial tics following chronic fluphenazine administration to guinea pigs.

Guinea pigs were administered chronic fluphenazine decanoate for 11 months and oral movements (OMs) were periodically observed using several different paradigms. Shortly after the initiation of neuroleptic treatment, increased OMs were seen in the drugged animals, but these did not persist and may have reflected a decreased fear (freezing) reaction in the tranquilized animals, being correlated with increased locomotion in open field. After 7 months of neuroleptics, twitch-like movements of the orofacial region were observed in the drugged animals; these dyskinetic movements were enhanced by administration of d-amphetamine. These twitch-like movements appear to be a better model of tardive dyskinesia in the guinea pig than the initially observed and normal-appearing OMs.

Animals↗

Long-lasting alterations in behavior and brain neurochemistry following continuous low-level LSD administration.

Groups of rats were administered either 80 micrograms LSD-25 continuously over seven days using subcutaneous minipumps, or were given the same total amount of drug in seven daily injections, or were administered vehicle. When tested long after cessation of drug administration, persisting alterations in behavior and brain were found in the continuous LSD groups. In social open-field tests, this consisted of decreased social distance between animals; this effect increased upon repeated testing. In uptake of labeled ligands, this was reflected predominantly by decreased 3H-LSD binding in several limbic regions. LSD appears to have especially persisting neurotoxic effects when administered in a continuous, low-level fashion.

Animals↗

Chronic neuroleptics alter the effects of the D1 agonist SK&F 38393 and the D2 agonist LY171555 on oral movements in rats.

Vacuous oral movements (OMs) in rats chronically administered haloperidol (HAL), fluphenazine (FLU), or no drug were studied following injections of one of three doses of either a D1 agonist (SK&F 38393) or a D2 agonist (LY171555). Oral movements were observed via closed-circuit television and simultaneously recorded using a computerized video analysis system which measured the distance between two fluorescent dots painted above and below the rat's mouth. SK&F 38393 induced a dose-dependent increase in tremorous oral movements and repetitive chewing movements in the controls; this effect was more pronounced in rats treated with chronic HAL or FLU, both during chronic neuroleptic treatment and even more so when they were tested after drug withdrawal following 5 or 14 months of chronic neuroleptic administration. Conversely, LY171555 produced an inhibition of oral activity at all dose levels in controls. This inhibition was attenuated during chronic administration of HAL or FLU, but returned to control levels (without any signs of supersensitivity) when the animals were retested shortly after discontinuation of neuroleptics. These results indicate that heightened oral movements in rodents following chronic neuroleptic administration can be more clearly induced by D1 than by D2 receptor activation.

2,3,4,5-Tetrahydro-7,8-dihydroxy-1-phenyl-1H-3-ben↗

The long march of the cerebrospinal fluid profile indicative of clinical definite multiple sclerosis; and still marching.

Much progress has been made, especially in the last two decades, in laboratory aids to diagnosis and to follow the course of patients with multiple sclerosis (MS). The cerebrospinal fluid (CSF) profile indicative of MS, though not pathognomonic of MS, is present in almost every case of clinical definite MS in a chronic progressive phase (probably also true for early MS). The cardinal aspect of the profile is intra-blood-brain barrier (BBB) IgG synthesis which can be qualitatively detected by determining unique CSF oligoclonal IgG bands and quantitated by rate formula, mg/day. We believe that intra-BBB IgG synthesis is caused by a persistent antigen, most likely a virus, possibly measles. A number of issues about the profile are proposed and opportunities are presented to resolve them.

Antibodies↗

Opposite effects of a D1 and a D2 agonist on oral movements in rats.

Oral movements in rats administered one of three doses of either a D1 agonist (SK&F 38393) or a D2 agonist (LY171555) were observed via closed-circuit television and simultaneously recorded using a computerized video analysis system which measured the distance between two fluorescent dots painted above and below the rat's mouth. The D1 agonist SK&F 38393 induced a dose-dependent increase in tremorous oral movements, tongue protrusions, and, at the highest dose, increased repetitive chewing movements. Conversely, the D2 agonist LY171555 produced an inhibition or oral activity at all dose levels. At the lowest dose tested this appeared to reflect a non-specific decrease in activity, for there was an inhibition of all categories of behavior measured, as well as of all amplitudes of computer-scored movements and slow, sluggish movements were recorded. But higher doses of LY171555 induced hyperactivity and stereotyped, repetitive head movements whereas chewing movements, tremorous oral movements, and tongue protrusions were still decreased. D1 and D2 dopamine receptors appear to have opposite effects on oral movements.

2,3,4,5-Tetrahydro-7,8-dihydroxy-1-phenyl-1H-3-ben↗

Tremorous mouth movements in rats administered chronic neuroleptics.

Oral movements (OMs) in rats administered chronic haloperidol (HAL) were quantified simultaneously by a human observer and via a computerized video analysis system which monitored the distance between the upper and low lips using TV images. The human observer data indicated that during HAL administration the total duration of OMs was initially decreased, gradually returned to levels slightly above controls, and then increased substantially upon drug withdrawal. The computer records confirmed these findings and further indicated that after prolonged HAL administration a syndrome developed in which large-amplitude OMs remained suppressed but OMs of the smallest detectable amplitudes increased. Upon drug withdrawal, these small OMs increased in amplitude and rhythmicity, developing into repetitive tremors.

Animals↗

Different effects of chronic nicotine treatment regimens on body weight and tolerance in the rat.

The effect of different chronic nicotine administration regimens on body weight and the development of tolerance was examined in female rats. Groups of animals were either treated with nicotine via a subcutaneous continuous release pellet or via two injections each day of either a high (5.6 mg/kg) or low (0.8 mg/kg) dose. Both the Pellet and Low injection groups showed a progressive weight loss during nicotine treatment followed by a weight gain upon cessation of treatment, but the time course and size of these weight changes were quite distinct. In contrast, the High injection group gained weight during the 17 days of nicotine treatment. Tolerance, as measured by locomotor activity following an acute injection of nicotine 1 week after cessation of chronic nicotine treatment, was evident only in the Low injection group. This study demonstrates that the regimen in which nicotine is administered is an important factor in determining the behavioral effects produced by chronic nicotine treatment.

Animals↗

Stress and alcohol intake: the socio-pharmacological approach.

Several experiments are reviewed in which rats housed in semi-naturalistic colony environments and given access to ad lib water and 10% ethanol have been discovered to show rhythms of alcohol consumption which do not develop in caged isolates and which are similar to those which develop in human populations. Of special interest is a sub-population of animals which develop extreme preferences for alcohol, for these animals are also found, compared to nonconsumers, to be relatively inactive and low in dominance. It is hypothesized that social factors play a strong role in the development of human alcoholism.

5,6-Dihydroxytryptamine↗

Increased alcohol intake induced by chronic stimulants: is "orality" involved?

One should be able to mimic aspects of chronic stress using pharmacological stimulants administered continuously. Alcohol preference can be selectively increased by the continuous administration of two stimulants: D-amphetamine (which works well), and nicotine (which is extremely potent). This effect does not occur with continuous administration of a variety of other psychoactive compounds such as hallucinogens and tranquilizers, nor does it occur if stimulants are administered chronically but in an intermittent fashion. In order to obtain this effect, access to the alcohol must be withheld until an initial period of anorexia passes and a period of heightened orality develops. This heightened fluid intake effect appears to be selective for alcohol consumption, for it does not occur for other sources of calories or other novel tastes.

Alcohol Drinking↗

Continuous low-level apomorphine administration induces motor abnormalities and hallucinogen-like behaviors.

Continuous low-level (0.825 mg/kg/h for 20 h) administration of AP through SC in-dwelling silicone reservoirs in the rat induced behavioral and biochemical changes that were similar to those induced by low levels (0.1 mg/kg) of acutely administered AP (decreased behavioral activity and decreased dopamine metabolism in the striatum). With longer periods of continuous AP exposure (40 h or more) the activity-depressing effects of low-level AP diminished. Concurrently a novel behavioral syndrome emerged characterized by limb flicks, body shakes, sudden orienting responses, and motor abnormalities, such as tremors of the jaw muscles, chewing movements, prominent tongue extensions, and body 'tics'. This behavioral syndrome became more apparent following cessation of drug treatment. These novel behavioral changes, which were accompanied by increased behavioral responsiveness to acutely administered AP and amphetamine, were correlated with increased levels of dopamine, homovanillic acid, and 3,4-dihydroxyphenylacetic acid in the striatum but not the nucleus accumbens. This novel behavioral syndrome appears to reflect a rebound increase in dopaminergic mechanisms in striatum following their chronic suppression by low levels of AP.

Animals↗

Amphetamine-induced enhancement of ethanol consumption: role of central catecholamines.

Rats administered continuous low levels of amphetamine increase their free choice consumption of a 10% ethanol solution. The present experiment sought to determine the roles of central catecholamines in producing this effect by comparing the changes of ethanol consumption in rats implanted with control pellets or amphetamine pellets following intracerebral injections of 2 X 250 micrograms of 6-hydroxydopamine (6-OHDA), 6-OHDA preceded by 25 mg/kg of desipramine (to protect noradrenergic neurons from damage), or vehicle. The increase of ethanol consumption associated with continuous amphetamine administration was prevented by intracerebral 6-OHDA administration, but not by intracerebral 6-OHDA preceded by desipramine. There were no significant changes of ethanol consumption in animals receiving either 6-OHDA regimen followed by control pellet implantation. These data indicate that the increased consumption of ethanol obtained with continuous amphetamine administration is mediated by central noradrenergic systems.

Alcohol Drinking↗

Phasic alterations in dopamine metabolites following continuous administration of amphetamine.

Rats were treated with slow-release (+)-amphetamine pellets for 7 days and then sacrificed at various times following pellet removal. Pellet-treated animals had decreased dopamine levels in caudate but not nucleus accumbens, with no recovery even 30 days after pellet removal. In both caudate and accumbens the levels of 3,4-dihydroxyphenylacetic acid and homovanillic acid were decreased at the time of pellet removal, then increased shortly after pellet removal, and were again decreased at 10 and 30 days after pellet removal. These fluctuations may reflect cyclical alterations in dopamine receptors following continuous amphetamine.

3,4-Dihydroxyphenylacetic Acid↗

Alcohol-preferring rats in colonies show withdrawal, inactivity, and lowered dominance.

Rats with free access to water and 10% alcohol were raised in enriched, social colonies for prolonged periods of time. Then those animals which had developed extreme alcohol or water preferences were identified for further study. These selected animals were marked and returned to the colony. Both high and low alcohol consumers showed increased alcohol consumption just prior to feeding, but only the high consumers had a peak of alcohol consumption during the early morning hours. Compared to low consumers, high alcohol consumers ate less food, ran less in the activity wheel, spent more time in the burrows, and ranked low on several dominance measures. When access to alcohol was removed in the colony, these high alcohol consumers became more active but remained low in dominance. When tested in photocell cages, they showed a pattern of hyperactivity suggesting withdrawal effects. This sub-population of animals from rat colonies who voluntarily prefer alcohol to water represent a novel and social animal model of chronic alcohol consumption.

Alcohol Drinking↗

Ethanol intake increases during continuous administration of amphetamine and nicotine, but not several other drugs.

Groups of rats, acclimated to drinking both water and 10% v/v ethanol were implanted with a variety of slow-release devices containing d-amphetamine (d-amp), nicotine, caffeine, phencyclidine (PCP), secobarbital, LSD, mescaline or haloperidol. Ethanol intake was elevated only during treatment with d-amp or nicotine; none of the other drugs affected ethanol consumption even though the amounts of all drugs released were pharmacologically sufficient to affect behavior. Nicotine treated rats were not simply seeking calories provided by the EtOH solution, since nicotine treatment did not enhance intake of a distinctively flavored solution isocaloric to 10% ethanol. These results support a self-medication model of ethanol intake.

Alcohol Drinking↗

Apparent hallucinations in monkeys during around-the-clock amphetamine for seven to fourteen days. Possible relevance to amphetamine psychosis.

Schizophrenia-like symptoms have been experimentally produced in humans by a single, large dose of amphetamine or by relatively low level, but continuous administration of the drug. In animal studies of the psychotomimetic properties of amphetamine, high doses and, in particular, repeated daily-injection drug schedules have often been used. However, amphetamine psychosis is not always a prominent effect of repeated intake drug schedules in humans and available clinical evidence suggests that psychosis develops more readily when the drug is taken in a continuous fashion over longer periods. The state produced by single large doses of amphetamine, although clearly abnormal, has been said to bear less resemblance to schizophrenia than the delayed paranoid symptoms developing after longer periods of continuous intake. In the present experiments we have studied the behavioral effects of 7 to 14 days of continuous administration of amphetamine to monkeys (Cercopithecus aethiops) using subcutaneously implanted silicone capsules releasing approximately .7 to 1.5 mg/kg/day of d-amphetamine base. Around-the-clock TV monitoring of the animals revealed a general biphasic sequence of drug effects, although considerable individual variation occurred: a) an "acute" phase dominated by stereotyped movements and/or prolonged staring, lasting for 2 to 5 days; b) a "late" phase peaking during days 5 to 10 after capsule implantation and characterized by highly individual, but striking sequences of: (1) Attack or sudden threat reactions directed at invisible objects; (2) rapid orienting and flight behavior without apparent cause; (3) sudden startle reactions; (4) prolonged vocalization; (5) visual tracking of invisible objects, sometimes involving coordinated patterns of "eating behavior" and (6) prolonged and rapid grooming directed at various parts of the body. These behaviors might be termed "hallucinatory" since no eliciting stimuli could be determined for their occurrence. Motor disturbances, including whole-body shakes, were often present at the same time. The animals were generally sleepless throughout the drug treatment period. Reimplantation of amphetamine capsules 2 to 8 months after the first capsule treatment produced the same effects in an individual-specific manner, but the "late phase" behaviors generally appeared sooner. The delayed occurrence of apparent hallucinatory behaviors and other abnormal "late" phase behaviors in the present experiment may be a close parallel to the delayed development of psychosis in humans induced by a similar drug regimen. Furthermore, the hallucinogenic nature of the late amphetamine state is consonant with other reports in the literature that hallucinogen-characteristic behaviors are present at this time.

Animals↗

Dendritic vacuolization in the central nervous system of rats after long-term voluntary consumption of ethanol.

Adult male rats were housed in a colony environment for six months, with ad lib access to anise-flavored 10% ethanol in water. Animals were then removed from the colony, and their consumption of alcohol during a period in isolated housing was measured. Individual rats were scored as high, moderate, and low consumers. Animals from each scoring category were killed for light and electron microscopic study of central nervous system tissue. High consumers frequently displayed varicose distortions of the dendritic profiles, with internal membranous vesicles. Such abnormalities were rarely found in dendrites of low-ethanol-consuming colony mates. The dendritic vacuoles often appeared empty and membrane-limited. Some vacuoles contained membranous inclusions. Dendrites which displayed electron-lucent cavities without membranous limits or contents were also found. Some invaginations of dendritic membranes were identified. The possible sequential relationship between these forms of dendritic alterations could not be determined. Some neuron cell bodies displayed vacuolar inclusions as well. Dendritic and somatic abnormalities were found in cerebral and cerebellar cortices, hippocampus, mammillary bodies, and the periaqueductal gray matter of the brain stem.

Alcoholic Intoxication↗

The late stage following continuous amphetamine administration to rats is correlated with altered dopamine but not serotonin metabolism.

In previous experiments rats pretreated with slow-release d-amphetamine (d-Amp) pellets for 4 1/2 days, given a 12-hr drug-free period, and then injected with d-Amp have been found to show a behavioral syndrome which has similarities to that induced by acute injections of the hallucinogens LSD and mescaline. The present results indicate that rats administered this same drug regimen have large decreases in Dopamine (DA), dihydroxyphenyl acetic acid (Dopac), and homovanillic acid (HVA) in caudate nucleus, smaller decreases in DA with no changes in Dopac and HVA levels in nucleus accumbens, but no alterations in 5-hydroxytryptamine (5HT) and 5-hydroxyindole acetic acid (5HIAA) levels in caudate, accumbens, brainstem and hippocampus. Increased 5HIAA levels are found in rats sacrificed with pellets intact following 3 days of continuous d-Amp administration, while sleep deprived and in motor stereotypies. The late and hallucinatory stage following continuous d-amp is correlated more closely with alterations in dopamine than of 5HT.

Animals↗