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Stephen C Fowler

Publications and source records attributed to Stephen C Fowler.

5 recordsLinked to original sources

Behavioral sensitization to amphetamine in rats: changes in the rhythm of head movements during focused stereotypies.

RATIONALE: The indirect-acting dopamine agonist amphetamine induces in rats, motor stereotypies that have served as the primary behavioral end points in studies related to schizophrenia, drug abuse, and L-dopa-induced dyskinesias. Despite the experimental importance of this rodent response to this drug, little is known about the rhythmic character of the behavior and how such rhythms change (or sensitize) in response to repeated treatment with amphetamine. OBJECTIVE: To address this lack of quantitative information, the rhythms of focused stereotypies (characterized by a lack of locomotion and rapid head movements) were measured in a force-plate actometer that permitted the quantification of behavioral rhythmicity. METHODS: Focused stereotypies were induced by d-amphetamine sulfate (2.5 and 5.0 mg/kg) after acute and repeated treatment with fixed doses of the drug in separate groups of rats, and the drug-induced behaviors were recorded in 1-h sessions in the actometer. RESULTS: The two doses of amphetamine produced focused stereotypies characterized by a 10-Hz rhythm of head movements. Detailed analyses of the data for 5.0 mg/kg amphetamine showed that the rhythm in the 10-Hz region of the power spectrum increased significantly within a 1-h period, while five intermittent, repeated drug treatments significantly reduced the rhythm, possibly reflecting either tolerance or sensitization. CONCLUSIONS: Aside from providing a new quantitative approach to studying focused stereotypies, these observation direct attention to the possibility that practice-mediated processes involved in motor skill enhancement may be a part of the neural adaptations that parallel the development of sensitization to indirect-acting dopamine agonists.

Amphetamine↗

Aged Fischer 344 rats exhibit altered locomotion in the absence of decreased locomotor activity: exacerbation by nomifensine.

A novel force plate actometer was used to measure locomotor activity and gait in young (6 months) versus aged (24 months) Fischer 344 rats. The actometer revealed altered gait in the aged rats in the absence of decreased locomotor activity. The catecholamine uptake inhibitor, nomifensine increased locomotor activity in both groups and exacerbated the gait alteration in the aged group. Analyses of whole brain tissue levels of dopamine (DA), 3,-4 dihydroxyphenylacetic acid (DOPAC), and homovanillic acid (HVA) in the substantia nigra and dorsal striatum revealed no significant differences between the two age groups. In the young (but not aged) rats, distance traveled was negatively correlated with striatal DOPAC + HVA/DA tissue ratios (a measure of DA turnover). In the aged (but not the young) rats, positive correlations were observed between distance traveled and DOPAC + HVA/DA ratios in the substantia nigra. Neither striatal nor nigral DA content was significantly correlated with distance traveled in either age group. These findings demonstrate that aged rats may exhibit functional changes in locomotor activity in the absence of quantitative changes in nigrostriatal DA content.

3,4-Dihydroxyphenylacetic Acid↗

The neuroimmunophilin GPI-1046 partially protects against 3-acetylpyridine toxicity in the rat.

There are no published reports assessing whether the non-immunosuppressant immunophilin ligand GPI-1046, which has putative neurotrophic effects in a variety of models of neurotoxicity, possesses neuroprotective effects in the 3-acetylpyridine (3AP) toxicity model in rats. The purpose of the present study was to assess whether 3AP toxicity is mitigated by administration of GPI-1046. Survival after 3AP challenge and licking performance in surviving rats were used to measure the beneficial effects of GPI-1046. GPI-1046 increased animal survivability and partially ameliorated 3AP-induced performance deficits at the lick task when GPI-1046 was administered concurrently with a peri-lethal dose of 3AP (50 mg/kg).

Animals↗

Dantrolene diminishes forelimb force-related tremor at doses that do not decrease operant behavior in the rat.

A behavioral preparation that affords concurrent measurement of forelimb force and tremor in rats was used to assess the effects of dantrolene sodium, a muscle relaxant and potential neuroprotective drug. Rats that were trained to press downward on an isometric force transducer while simultaneously licking water reinforcement were administered dantrolene (5.0 mg/kg, 7.5 mg/kg, and 10.0 mg/kg). Dantrolene diminished force output at the 7.5 mg/kg and 10.0 mg/kg doses and decreased tremor at all three doses. Dantrolene decreased the ratio of forelimb tremor to force output at all three doses. Dantrolene did not suppress operant behavioral output at these doses. These results suggest that dantrolene may affect fine motor control and decrease tremor at doses that do not produce behavioral suppression.

Animals↗

Aged Fischer 344 rats exhibit altered orolingual motor function: relationships with nigrostriatal neurochemical measures.

The present study utilized a novel behavioral preparation to measure differences in orolingual motor function between young (6 months) and aged (24 months) Fischer 344 (F344) rats. Rats were trained to lick an isometric force-sensing operandum for water reinforcement so that the number of licks per session, licking rhythm and lick force could be compared between the two groups. The aged rats exhibited a greater number of licks per session, but a slowed licking rhythm, compared to the young rats. Lick force did not differ significantly between the groups. The dopamine (DA) uptake inhibitor nomifensine decreased all three measures in both groups. Analyses of whole brain tissue content of DA, 3,4 dihydroxyphenylacetic acid (DOPAC), and homovanillic acid (HVA) in the substantia nigra and dorsal striatum revealed no significant differences between the two age groups. Differences were observed between the two groups with respect to relationships between behavioral and neurochemical tissue measures. Striatal DA content and the number of licks per session were positively correlated for the young rats but not for the aged rats. In the aged rats, but not the young rats, positive correlations were also observed between licking rhythm and the DOPAC+HVA/DA ratio in the substantia nigra. These findings suggest that age-related alterations in orolingual motor function may relate in part to functional changes in DA neuronal circuits.

3,4-Dihydroxyphenylacetic Acid↗