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Identifying fast-onset antidepressants using rodent models
1Department of Psychiatry, University of California San Diego, La Jolla, CA, USA.
Abstract:
Depression is a leading cause of disability worldwide and a major contributor to the burden of suicide. A major limitation of classical antidepressants is that 2-4 weeks of continuous treatment is required to elicit therapeutic effects, prolonging the period of depression, disability and suicide risk. Therefore, the development of fast-onset antidepressants is crucial. Preclinical identification of fast-onset antidepressants requires animal models that can accurately predict the delay to therapeutic onset. Although several well-validated assay models exist that predict antidepressant potential, few thoroughly tested animal models exist that can detect therapeutic onset. In this review, we discuss and assess the validity of seven rodent models currently used to assess antidepressant onset: olfactory bulbectomy, chronic mild stress, chronic forced swim test, novelty-induced hypophagia (NIH), novelty-suppressed feeding (NSF), social defeat stress, and learned helplessness. We review the effects of classical antidepressants in these models, as well as six treatments that possess fast-onset antidepressant effects in the clinic: electroconvulsive shock therapy, sleep deprivation, ketamine, scopolamine, GLYX-13 and pindolol used in conjunction with classical antidepressants. We also discuss the effects of several compounds that have yet to be tested in humans but have fast-onset antidepressant-like effects in one or more of these antidepressant onset sensitive models. These compounds include selective serotonin (5-HT)2C receptor antagonists, a 5-HT4 receptor agonist, a 5-HT7 receptor antagonist, NMDA receptor antagonists, a TREK-1 receptor antagonist, mGluR antagonists and (2R,6R)-HNK. Finally, we provide recommendations for identifying fast-onset antidepressants using rodent behavioral models and molecular approaches.
Insights
Developing fast-acting antidepressants is crucial for reducing suicide risk. This review assesses rodent models for predicting rapid antidepressant effects, evaluating treatments like ketamine and novel compounds.
Area of Science:
- Neuroscience
- Pharmacology
- Psychiatry
Background:
- Depression is a leading global cause of disability and suicide.
- Classical antidepressants have a 2-4 week delay in therapeutic effect, increasing suicide risk.
- Fast-onset antidepressants are critically needed.
Purpose of the Study:
- To review and assess the validity of rodent models for detecting antidepressant onset.
- To evaluate the efficacy of existing and novel compounds for fast-acting antidepressant effects.
Main Methods:
- Reviewed seven rodent models: olfactory bulbectomy, chronic mild stress, chronic forced swim test, novelty-induced hypophagia (NIH), novelty-suppressed feeding (NSF), social defeat stress, and learned helplessness.
- Examined effects of classical antidepressants and fast-acting clinical treatments (electroconvulsive shock therapy, sleep deprivation, ketamine, scopolamine, GLYX-13, pindolol).
- Discussed compounds with preclinical fast-onset antidepressant-like effects.
Main Results:
- Several rodent models are used to assess antidepressant onset, but few are thoroughly tested for predictive validity.
- Classical antidepressants show delayed effects, while treatments like ketamine and GLYX-13 demonstrate rapid antidepressant actions.
- Novel compounds targeting serotonin, NMDA, TREK-1, and mGluR receptors show promise for fast-onset antidepressant effects.
Conclusions:
- Rodent models are essential for preclinical identification of fast-onset antidepressants.
- Further validation of these models is needed to accurately predict therapeutic onset.
- Identifying and developing fast-acting antidepressants can significantly reduce the burden of depression and suicide risk.

