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5-HT(1A) Receptor Null Mutant Mice Responding Under a Differential-Reinforcement-of-Low-Rate 72-Second Schedule of
Jonah J Scott-McKean1, Galen R Wenger, Laurence H Tecott
1Neuroscience Training Program, University of Colorado Denver, Aurora, CO, USA.
Abstract:
Over the last two decades, our ever-increasing ability to manipulate the mouse genome has resulted in a variety of genetically defined mouse models of depression and other psychiatric and neurological disorders. However, it is still the case that some relevant rodent models for depression and antidepressant action have been validated experimentally in rats only and not in mice. An important example of such models is the operant model of antidepressant action known as differential-reinforcement-of-low-rates 72-second (DRL 72-s). A specific set of drug-induced changes on the performance of rats responding under a DRL 72-s schedule of reinforcement has been shown to be a highly reliable predictor of antidepressant activity in human depressive disorders. The aim of this study is to validate the use of the DRL 72-s schedule in mice by both genetic and pharmacological means. We have analyzed the actions of the specific serotonin reuptake inhibitor (SSRI) fluoxetine and the tricyclic agent desipramine (DMI) on wild-type and 5-hydroxytryptamine 1A receptor-null mutant (5-HT(1A)R KO) mice. In agreement with the literature on rats, we found that fluoxetine produced an acute antidepressant-like effect in 5-HT(1A)R KO mice but not in wild-type (Wt) mice. Additionally, an antidepressant-like effect was observed when DMI was administered to both 5-HT(1A)R KO and Wt mice. In conclusion: through the use of both genetic and pharmacological strategies, this study validates the extension of a protocol involving the DRL 72-s operant schedule of reinforcement as a behavioral model for the action of antidepressants in mice.
Insights
This study validates the differential-reinforcement-of-low-rates 72-second (DRL 72-s) operant schedule as a mouse model for antidepressant action. It shows fluoxetine and desipramine effects in genetically modified and wild-type mice, mirroring rat model findings.
Area of Science:
- Neuroscience
- Behavioral Pharmacology
- Genetics
Background:
- Genetically engineered mouse models are crucial for studying depression and neurological disorders.
- Some validated rodent models for depression, like the DRL 72-s operant schedule, exist only in rats.
- The DRL 72-s schedule in rats predicts antidepressant activity based on drug-induced performance changes.
Purpose of the Study:
- To validate the differential-reinforcement-of-low-rates 72-second (DRL 72-s) operant schedule as a behavioral model in mice.
- To assess antidepressant actions using genetic and pharmacological strategies in mice.
Main Methods:
- Administered fluoxetine (SSRI) and desipramine (DMI) to wild-type (Wt) and 5-hydroxytryptamine 1A receptor-null mutant (5-HT(1A)R KO) mice.
- Analyzed drug effects on performance within the DRL 72-s operant schedule.
- Utilized genetic manipulation (5-HT(1A)R KO) and pharmacological agents for validation.
Main Results:
- Fluoxetine demonstrated an antidepressant-like effect in 5-HT(1A)R KO mice, but not in Wt mice, consistent with rat studies.
- Desipramine produced an antidepressant-like effect in both Wt and 5-HT(1A)R KO mice.
- Findings confirm specific drug-induced behavioral changes predict antidepressant activity in mice.
Conclusions:
- The DRL 72-s operant schedule is validated as a behavioral model for antidepressant action in mice.
- This study successfully extends the utility of the DRL 72-s protocol to mouse models using genetic and pharmacological approaches.
- The findings support the use of this mouse model for preclinical screening of antidepressant drugs.

