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Effects of physostigmine, scopolamine, and mecamylamine on the sleeping time induced by ketamine in the rat.

Male Sprague-Dawley rats weighing 116--241 g were injected i.p. with ketamine hydrochloride, 80 mg per kilo of body weight. Immediately after loss of righting reflex, scopolamine, physostigmine, and mecamylamine were administered i.p. to different groups of rats. Control animals received sterile saline by the same route. The ketamine-induced sleeping time was significantly prolonged by physostigmine and scopolamine, but not by mecamylamine. After the delayed injection of physostigmine, the ketamine sleeping time was longer. These results, although too preliminary for a mechanistic interpretation, suggest that multiple neurotransmitter systems, probably including the cholinergic system, are involved in the mechanism of action of ketamine-induced narcosis.

Animals↗

The effects of d-amphetamine and scopolamine on drinking induced by a multiple schedule.

Three food-deprived rats obtained food pellets on a multiple fixed-interval fixed-time schedule. During fixed-interval components a 45 mg pellet was made available for a lever-press every minute (FI 1 min). When the fixed-time component was in operation the lever was retracted and a pellet was delivered every minute (FT 1 min) independent of behaviour. A water bottle was available to each subject and similar levels of schedule-induced drinking developed during the two schedule components. The effects of several doses (0.25, 0.5, 1.0, 2.0 mg/kg) of d-amphetamine and scopolamine were assessed on lever-pressing and drinking maintained by this procedure. Both drugs increased rates of lever-pressing at lower doses and reduced levels of licking and water intake at all doses. The patterning of fixed-interval lever pressing was altered by both drugs increasing the proportion of responses emitted during early parts of the intervals. d-Amphetamine also increased the proportion of licks that occurred during early segments of the interfood intervals, while scopolamine had variable effects on patterns of licking. There were no consistent differences in the effects of the drugs on licking induced by the two schedules.

Animals↗

Scopolamine state-dependent memory processes in man.

Scopolamine state-dependent learning was investigated in man using four learning and recall tasks. Twenty-eight subjects performed the four tasks on the first day of the 2 day experiment under either the influence of the drug (5 microgram/kg of scopolamine administered IV) or a placebo and tried to recall the material on the second day in either the same or altered drug state. State-dependent learning theory predicts that those subjects in the same drug state on both days should recall more material than those who had their drug condition changed. Results confirmed this prediction for the two recall tasks which did not involve recall cues or prompts but not for the tasks involving memory acids. This implies that the drug state has memory cueing properties of its own and that recall can be enhanced either by restoring the drug state which existed at the time of learning or by providing external prompts.external prompts.

Adolescent↗

Pentobarbital, promazine, d-amphetamine, and scopolamine effects on behavior under multiple and primed schedules of reinforcement.

Pigeons responded under compound fixed-interval (FI) fixed-ratio (FR) schedules of food presentation. Distinctive discrimininative stimuli were either continuously present during each component schedule (multiple FI FR) or were present only for a brief period at the beginning of each component (primed FI FR). Similar rates and patterns of responding were maintained under the multiple and primed schedules. Pentobarbital, scopolamine, and d-amphetamine decreased FR responding, but promazine had little effect at the doses studied. d-Amphetamine and promazine increased FI responding at certain doses, pentobarbital had little effect, and scopolamine decreased responding. There were no systematic differences in the effects of drugs under the multiple and primed schedules, in spite of the differences in discriminative stimuli under the conditions.

Animals↗

Scopolamine and acquisition of go-no go avoidance: a further analysis of the perseverative antimuscarinic deficit.

Rats treated with scopolamine (0.5 mg/kg SC daily) during the acquisition of a discrimination task with symmetrical negative reinforcement (light-go, noise/light-no go) showed a learning impairment, with both active and passive avoidance deficits. In the initial stage of such training, however, fewer passive avoidance errors and more active avoidance errors were made by treated animals if active avoidance pretraining had occurred in the no-drug state. A similar experiment using the same stimulus arrangement with asymmetrical reinforcement (no punishment of intertrial, and no go signal, responses) showed a scopolamine effect consisting mainly of increased responding to extinction signals and during intertrial intervals, with little or no active avoidance deficit. Furthermore, interactions due to changes in treatment conditions in successive stages of training were minimized in the latter task, suggesting that the effects of the shift-no shift factor on distribution of errors in the early stages of active-passive avoidance learning were unlikely to have been due to a genuine drug dissociation. Overall, these results and others obtained previously in the same and related tasks tend to rule out some unidimensional explanations of antimuscarinic effects, e.g., response disinhibition (an exclusively motor deficit) or impairment of stimulus sensitivity (an exclusively sensory deficit). The data rather confirm the notion of a sensorimotor drug bias leading to a shift in response prepotencies depending jointly on stimuli, responses, and response consequences. Prior learning history and behavioural compensation for adverse treatment consequences at the reinforcement level may interact with the sensorimotor bias so as to produce "set perseveration" (perseveration of response tendencies).

Animals↗

The effects of morphine and scopolamine on auditory discrimination in squirrel monkeys.

In squirrel monkeys trained to discriminate between two tones, morphine consistently increased the percent of response failures during tone periods; however, it had no consistent effect on the percent correct responses. In contrast, scopolamine decreased percent correct responses as well as increasing percent response failures in two monkeys not required to respond to produce the tone periods. In the two monkeys required to initiate tone periods by responding, high doses of scopolamine reduced the number of tones presented.

Animals↗

Effects of scopolamine and alpha-methylparatyrosine upon predatory attack in cats.

The effects of scopolamine were compared with the effects of alpha-methylparatyrosine methyl ester (AMPT) upon several aspects of electrically elicited predatory attack in cats. Thresholds of current necessary to elicit predation increased under both drugs. Furthermore, specific deficits developed in suprathreshold predatory patterns for both drugs compared with nondrug baselines. Scopolamine suppressed all aspects of attack, while AMPT suppressed approach of the attack object while leaving reflexive biting intact.

Aggression↗

Scopolamine challenges in Alzheimer's disease.

A challenge paradigm was designed to test the functional sensitivity to anticholinergic agents in Alzheimer's disease. Ten patients with dementia of the Alzheimer type were serially administered three different intravenous doses of the centrally active anticholinergic drug scopolamine and placebo. Testing was carried out in a placebo-controlled, double-blind fashion to measure cognitive, physiologic and behavioral changes. Alzheimer patients showed a marked, dose-related behavioral and cognitive sensitivity to temporary cholinergic blockade. Scopolamine testing may serve as an index of the status of central cholinergic functional integrity, and ultimately may prove useful as a diagnostic or staging test in the evaluation of the cholinergic system in dementia. Research is currently under way with elderly age-matched controls and populations with other neuropsychiatric disorders to explore this hypothesis further.

Adult↗

The effects of scopolamine on extinction and spontaneous recovery.

The effects of scopolamine hydrobromide on baseline extinction levels and spontaneous recovery were assessed. Rats were trained on one of four reinforcement schedules (CRF, FR 10, FR 20, FR 40) with either food or water reinforcement. Scopolamine increased response rates in extinction and spontaneous recovery following training on all four schedules when the reinforcer was water, but had no effect on responding previously maintained by food. The results are discussed in terms of the limitations of a general theory of a cholinergic system mediating all suppressed behavior and the effects of anticholinergic drugs on central thirst mechanisms and consummatory behavior.

Animals↗

Influence of benzodiazepine tranquilizers on scopolamine-induced locomotor stimulation in mice.

Four benzodiazepine tranquilizers have been tested, alone or in combination with scopolamine, on the spontaneous locomotor activity of BALB/c mice. Scopolamine-induced locomotor stimulation was enhanced by chlordiazepoxide, diazepam, and medazepam, but not by bromazepam. These effects are similar to those exerted by the four benzodiazepines on amphetamine-induced locomotor stimulation and allow the same differentiation between the four derivatives.

Animals↗

The effects of scopolamine and clonidine upon the performance and learning of a motor skill.

Twenty-eight subjects practised a task involving procedural knowledge in which a moving target has to be followed for two 3-min sessions. They were then randomly allocated to receive an IV injection of 0.4 mg scopolamine, 0.15 mg clonidine or saline. General impairment due to both active treatments was seen 20 min later in significantly decreased tracking performance. Subjects then had to learn a mirror-reversed version of the tracking task. This involved acquiring novel procedural knowledge. Subjects who had either saline or clonidine treatment showed rapid temporary improvements and also considerable permanent learning. Subjects treated with scopolamine, however, showed only slow temporary improvement and little permanent improvement in their performance at this task. This result suggests that a normally functioning cholinergic system is necessary not only for an efficient working memory but also for the long term acquisition of some kinds of procedural knowledge.

Adolescent↗

Effects of dopamine D-1 and D-2 antagonists on decision making by rats: no reversal of neuroleptic-induced attenuation by scopolamine.

The effects of the dopamine (DA) D-1 antagonist SCH 23390 and the D-2 antagonists haloperidol and sulpiride on decision making in thirsty rats were investigated. The problem given to the rats was to choose between two behaviours, locomoting or lever-pressing, in order to obtain rewards (water). SCH23390 and haloperidol dose-dependently reduced the number of rewards obtained. However, only minor effects were seen on the decision making parameters. DA is thus important for initiation and/or performance of learned behavioural acts, not for information sampling and processing leading to the decision of which behaviour to perform. There were no differences between D-1 and D-2 antagonism in this respect. After sulpiride, no significant effects were observed. A specific behavioural prolife obtained by extinction was not mimicked by any of the doses of neuroleptics tested. It has previously been shown that performance per se of the two behavioural options used in the task can be reinstated by scopolamine after haloperidol attenuation. However, when these options had to be organized into functional sequences to reach a goal, haloperidol-induced attenuation could not be counteracted by scopolamine.

Animals↗

The effects of morphine, morphine plus scopolamine, midazolam and promethazine on cerebrospinal fluid histamine concentration and postoperative analgesic consumption.

The effects of morphine (0.14 mg/kg), morphine (0.14 mg/kg plus scopolamine (0.042 mg/kg), midazolam (0.015 mg/kg) and promethazine (0.08 mg/kg) on cerebrospinal fluid histamine (CSF-HA) and CSF-methylhistamine were investigated in 44 healthy patients. CSF-HA was determined by HPLC. CSF-HA was found to be increased after all premedications with great individual variation (range 0.07-7.4 pmol/ml). The highest values were found in the promethazine group (1.83 +/- 2.2 (SD) pmol/ml and the lowest in the control group (0.63 +/- 0.42 pmol/ml). Measurable concentrations of CSF-methylhistamine were found in 13 patients without correlation with HA. Postoperative need for analgesics was reduced in all premedicated groups. A significant correlation existed between HA and need for postoperative analgesics in the morphine plus scopolamine group. It is concluded that the histamine system plays a role in central nociception.

Adult↗

Effects of scopolamine, trimipramine and diazepam on explicit memory and repetition priming in healthy volunteers.

The effects of scopolamine, an anticholinergic drug, of trimipramine, a tricyclic antidepressant with both anticholinergic and sedative properties, of diazepam and a placebo, on explicit memory and repetition priming were assessed using a free-recall task and a word-stem completion task. Forty-eight healthy volunteers took part in this double-blind study. Diazepam provoked a dissociation between free recall, which was profoundly impaired, and word completion, which was spared. No significant changes in memory performances were observed in the scopolamine group; however, a significant correlation between explicit and implicit memory performances was observed in this group. At the low dose used, the effects of trimipramine on memory were mild. The results suggest that the cholinergic system is involved in the priming effect.

Adult↗

Comparison of tetrahydroaminoacridine and physostigmine on scopolamine-induced free swim behavior in the rat.

The effect of acetylcholinesterase inhibitors on free swim behavior in rats pretreated with scopolamine (0.32 mg/kg, IP) was examined. Long-Evans rats received a single 5-min testing trial in a 1.5 m black swimming pool, and swim distance in three concentric annulus corridors (peripheral, middle, and inner) and the number of body-turn transitions (greater than 45 degrees) were measured. Physostigmine (1.0 mg/kg, IP) increased swim distance in the middle and inner annulus corridors, compared to tetrahydroaminoacridine (2.0 mg/kg and 10 mg/kg, IP) and scopolamine alone (control) (Ps less than 0.01), and increased body-turn transitions, compared to all the other groups (Ps less than 0.05), but had no significant effect on peripheral annulus corridor swim distance, total swim distance, or swim speed. The results suggest that physostigmine produces uniquely different free swim patterns from tetrahydroaminoacridine following cholinergic blockade. These findings have implications for investigations attempting to restore spatial learning and navigation (e.g., Morris water maze) using acetylcholinesterase inhibitors following experimentally-induced cholinergic losses.

Animals↗

Phenserine: a physostigmine derivative that is a long-acting inhibitor of cholinesterase and demonstrates a wide dose range for attenuating a scopolamine-induced learning impairment of rats in a 14-unit T-maze.

Phenserine ((-)-N-phenylcarbamoyl eseroline), a carbamate analog of physostigmine (Phy), is a long-acting inhibitor of cholinesterase. We have assessed the potential clinical value of phenserine for cholinomimetic therapy of cognitive impairments associated with aging and Alzheimer's disease by evaluating its duration of in vivo activity against rat plasma acetylcholinesterase (AChE) and its effect on attenuating a scopolamine-induced impairment in learning performance of young rats in a shock-motivated 14-unit T-maze. Phenserine achieved maximum AChE inhibition of 73.5% at 5 min and maintained a high and relatively constant inhibition for more than 8 h. For analysis of effects on learning performance, 69, 3-month-old male Fischer-344 rats were pretrained in a straight runway to avoid electric footshock. On the following day, each animal received 15 trials in the 14-unit T-maze. Sixty minutes prior to the maze training, each rat received the first IP injection of either vehicle (Tween 80, ethanol and 0.9% NaCl) or phenserine at 1.5, 3.0, 4.0, 5.0, 7.5, or 10.0 mg/kg. Then 30 min prior to the training, each animal received a second IP injection of either 0.9% NaCl or scopolamine hydrochloride (0.75 mg/kg; SCOP). Compared to the vehicle-SCOP group, all but the 7.5 mg/kg dose of phenserine significantly ameliorated error performance, runtime, shock frequency and shock duration in SCOP-treated rats at the final block of three trials. Appearing to have a long effect and a wide therapeutic window, phenserine deserves further study as a cognitive enhancer.

Acetylcholinesterase↗