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Updated: Aug 14, 2025

Animal Models of Depression - Chronic Despair Model CDM
Published on: September 23, 2021
Minocycline treatment improves cognitive and functional plasticity in a preclinical mouse model of major depressive
Silvia Poggini1, Maria Banqueri2, Naomi Ciano Albanese3
1Center for Behavioral Sciences and Mental Health, Istituto Superiore di Sanità, Viale Regina Elena, 299, 00161 Rome, Italy.
Abstract:
Major depressive disorder (MDD) is a chronic, recurring, and potentially life-threatening illness, which affects over 300 million people worldwide. MDD affects not only the emotional and social domains but also cognition. However, the currently available treatments targeting cognitive deficits in MDD are limited. Minocycline, an antibiotic with anti-inflammatory properties recently identified as a potential antidepressant, has been shown to attenuate learning and memory deficits in animal models of cognitive impairment. Here, we explored whether minocycline recovers the deficits in cognition in a mouse model of depression. C57BL6/J adult male mice were exposed to two weeks of chronic unpredictable mild stress to induce a depressive-like phenotype. Immediately afterward, mice received either vehicle or minocycline for three weeks in standard housing conditions. We measured anhedonia as a depressive-like response, and place learning to assess cognitive abilities. We also recorded long-term potentiation (LTP) as an index of hippocampal functional plasticity and ran immunohistochemical assays to assess microglial proportion and morphology. After one week of treatment, cognitive performance in the place learning test was significantly improved by minocycline, as treated mice displayed a higher number of correct responses when learning novel spatial configurations. Accordingly, minocycline-treated mice displayed higher LTP compared to controls. However, after three weeks of treatment, no difference between treated and control animals was found for behavior, neural plasticity, and microglial properties, suggesting that minocycline has a fast but short effect on cognition, without lasting effects on microglia. These findings together support the usefulness of minocycline as a potential treatment for cognitive impairment associated with MDD.
Insights
Minocycline rapidly improved cognitive deficits and neural plasticity in a mouse model of depression. However, these positive effects were short-lived, with no lasting impact on behavior or microglia after three weeks of treatment.
Area of Science:
- Neuroscience
- Pharmacology
- Psychiatry
Background:
- Major depressive disorder (MDD) impacts over 300 million globally, affecting cognition alongside mood.
- Current treatments for MDD-related cognitive deficits are limited.
- Minocycline, an antibiotic with anti-inflammatory properties, shows promise for cognitive impairment.
Purpose of the Study:
- To investigate minocycline's efficacy in reversing cognitive deficits in a mouse model of depression.
- To assess minocycline's impact on neural plasticity and microglial characteristics in depression.
Main Methods:
- A mouse model of depression was induced using chronic unpredictable mild stress.
- Mice received minocycline or vehicle treatment for three weeks.
- Cognitive function (place learning), hippocampal long-term potentiation (LTP), and microglial changes were assessed.
Main Results:
- Minocycline significantly improved cognitive performance and LTP after one week of treatment.
- No significant differences in behavior, neural plasticity, or microglia were observed after three weeks.
- The effects of minocycline on cognition and plasticity appear to be rapid but transient.
Conclusions:
- Minocycline demonstrates potential as a short-term therapeutic agent for cognitive impairment in depression.
- Further research is needed to understand the transient nature of minocycline's effects and optimize treatment strategies.

