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C Buckland

Publications and source records attributed to C Buckland.

5 recordsLinked to original sources

Effects of GABAergic drugs, fornicotomy, hippocampectomy and septal lesions on the extinction of a discrete-trial fixed ratio 5 lever-press response.

The effects of certain GABA-modulating drugs, fornicotomy, hippocampectomy and various septal lesions were analysed in a discrete-trial fixed ratio 5 (FR5) bar-press paradigm. Chlordiazepoxide, fornicotomy, hippocampectomy, electrolytic lateral septal lesions and ibotenic acid medial septal lesions facilitate extinction of the FR5 response. Some of these treatments (chlordiazepoxide, hippocampectomy, electrolytic lateral septal lesions) have previously been found to increase resistance to extinction of alley-running after continuously reinforced (CRF) acquisition training. The treatments which facilitated extinction in the discrete-trial FR5 paradigm have been found to reduce or abolish the partial reinforcement extinction effect in the alley. These results indicate that the discrete-trial FR5 paradigm is not analogous to a runway CRF schedule, but may be analogous to a runway partial reinforcement schedule.

Animals↗

The effects of compounds related to gamma-aminobutyrate and benzodiazepine receptors on behavioural responses to anxiogenic stimuli in the rat: extinction and successive discrimination.

In a first set of experiments rats were trained to run in a straight alley for food reward on a continuous reinforcement schedule and the running response was then extinguished. On the last 2 days of training and daily throughout extinction different groups of animals were injected IP with saline, 5 mg/kg chlordiazepoxide, 0.75 mg/kg picrotoxin, chlordiazepoxide + picrotoxin, chlordiazepoxide + 1.5 mg/kg bicuculline, 0.00125 or 0.25 mg/kg muscimol, 1 mg/kg baclofen, chlordiazepoxide + baclofen, or 0.00125 mg/kg muscimol + baclofen. Chlordiazepoxide increased resistance to extinction, a well-known anxiolytic effect. This effect was blocked by both picrotoxin and bicuculline. Picrotoxin on its own reduced resistance to extinction (an anxiogenic-like effect). Whether given alone or in combination with other drugs, muscimol and baclofen had no effect. In a second set of experiments rats were trained in a successive operant discrimination (signalled by a flashing or steady light) between components in which sucrose reward was available on a variable-interval schedule for barpressing and components in which no reward was given. Chlordiazepoxide at 10 mg/kg increased responding in both rewarded and nonrewarded components, but more in the latter than could be accounted for by change in the former. This effect is as expected with an anxiolytic drug. It was not altered by administration of bicuculline at 1.5 or 1.75 mg/kg; at 2 mg/kg bicuculline acted synergistically with chlordiazepoxide. Picrotoxin (1 and 1.5 mg/kg) also acted synergistically with chlordiazepoxide, enhancing the latter's rate-increasing effects, but only during rewarded components. Neither muscimol (0.00125 and 0.25 mg/kg) nor baclofen (0.01 mg/kg) affected response rates, whether given alone or in combination. However, baclofen in a dose of 1 mg/kg, provided it was given to rats also injected with muscimol (0.00125 or 0.25 mg/kg) at other times, significantly reduced responding during nonrewarded components (an apparently anxiogenic effect). The results of the two sets of experiments are discussed in relation to the hypothesis that anxiolytic drugs affect behaviour by increasing GABAergic inhibition.

Animals↗

The effects of compounds related to gamma-aminobutyrate and benzodiazepine receptors on behavioural responses to anxiogenic stimuli in the rat: choice behaviour in the T-maze.

Two methods were used to test rats' responses to novelty in the T-maze: (1) a test of spontaneous alternation allowing separate measurement of place and body turn alternation; and (2) a test of entry into an arm of changed brightness ("response to stimulus change"). Chlordiazepoxide reduced spontaneous alternation by specifically weakening body turn alternation and eliminated the response to stimulus change. These findings are similar to those previously reported for the barbiturate sodium amylobarbitone. The same pattern of change in the two tests was seen after a low dose of the GABAA agonist muscimol (0.00125 mg/kg); when the dose of muscimol was raised (0.01 and 0.25 mg/kg), place alternation was also reduced. Picrotoxin but not bicuculline (both GABAA blockers) reversed the effects of muscimol and partially those of chlordiazepoxide on the response to stimulus change; in the spontaneous alternation test picrotoxin only marginally affected the response to 0.25 mg/kg muscimol and actually enhanced the effect of 0.000125 mg/kg. The GABAB agonist baclofen (1 mg/kg) acted in the test of response to stimulus change like chlordiazepoxide and muscimol; however, when baclofen was combined with muscimol, the two drugs tended to show mutual blocking. These results are generally consistent with the hypothesis that GABAergic mechanisms play a role in anxiolytic behavioural activity, but many details are difficult to explain.

Animals↗

Serotonin receptor blockade potentiates behavioural effects of beta-phenylethylamine.

The 5-hydroxytryptamine (5HT) receptor blocker, methysergide (10 mg/kg), was found to potentiate the behavioural effects of beta-phenylethylamine (PEA) (at doses between 20 and 60 mg/kg) on food reinforced schedule-maintained behaviour in two separate experiments involving a fixed interval 2 min schedule and a fixed ratio 20 schedule. Potentiation caused a parallel shift to the left in the log dose response curve for suppression of responding induced by phenylethylamine, and was observed in both male and female rats. These data contrast with recent reports indicating that inhibition of functioning of 5HT systems blocks the effects of phenylethylamine in inducing the "Serotonin behavioural syndrome" (Sloviter et al., 1980a: Dourish, 1981). However, the potentiation reported here is compatible with frequent reports indicating that behavioural effects of amphetamine (alpha-methyl-PEA) can be potentiated by reduction in 5HT functioning and are thus compatible with the hypothesis that phenylethylamine is a potential "endogenous amphetamine".

Animals↗