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Updated: Jan 12, 2026

Elevated Plus Maze Test Combined with Video Tracking Software to Investigate the Anxiolytic Effect of Exogenous Ketogenic Supplements
Published on: January 7, 2019
Cerebrolysin ameliorates ketamine-mediated anxiety and cognitive impairments via modulation of mitochondrial function
Leila Hosseini1, Nasrin Abolhasanpour2, Fatemehsadat Seyedaghamiri3
1Research Center of Psychiatry and Behavioral Sciences, Tabriz University of Medical Sciences, Tabriz, Iran. leilahosseini337@gmail.com.
Abstract:
Schizophrenia is known as a complex and devastating mental disorder due to its profound impact on individuals, families, and society. Emerging evidence proposes that mitochondria play a central role in schizophrenia. Here, we investigated whether cerebrolysin (CBL) can alleviate anxiety-like behaviors and cognitive deficits through a mechanism involving the CREB/PGC-1α pathway. In this study, 30 male BALB/c mice were randomly assigned to three different groups: Control, Ketamine, and Ketamine + CBL. Intraperitoneal injection of ketamine was performed at 20 mg/kg for 14 consecutive days. CBL was delivered intraperitoneally at 2.5 mL/kg once daily for seven days, starting from the 8th day to the 14th day of the experiment. The novel object recognition and elevated plus-maze tests were used to assess episodic-like memory and anxiety, respectively. Hippocampal tissue was examined not only for alterations in mitochondrial activity, encompassing ATP production and levels of reactive oxygen species (ROS), but also for estimating CREB, p-CREB, and PGC-1α protein levels. Behavioral results indicated that treatment with CBL reversed anxiety-like behavior and cognitive dysfunction caused by ketamine. Additionally, ketamine increased the production of ROS and reduced ATP levels in the hippocampus, while CBL treatment restored these changes. Furthermore, CBL therapy upregulated the hippocampal expression of the proteins CREB, p-CREB, and PGC-1α compared with the ketamine-treated animals. It is speculated that treatment with CBL can attenuate ketamine-induced cognitive deficits and anxiety-like behaviors through the upregulation of the CREB/PGC-1α pathway and the improvement of mitochondrial function.
Insights
Cerebrolysin (CBL) may improve mitochondrial function and reduce anxiety and cognitive deficits in schizophrenia models by activating the CREB/PGC-1α pathway, offering potential therapeutic benefits.
Area of Science:
- Neuroscience
- Mitochondrial Biology
- Pharmacology
Background:
- Schizophrenia is a complex mental disorder with emerging links to mitochondrial dysfunction.
- Mitochondria are increasingly recognized as a potential therapeutic target for schizophrenia.
Purpose of the Study:
- To investigate if cerebrolysin (CBL) can alleviate ketamine-induced anxiety-like behaviors and cognitive deficits.
- To explore the role of the CREB/PGC-1α pathway and mitochondrial function in CBL's therapeutic effects.
Main Methods:
- BALB/c mice were administered ketamine and/or CBL.
- Behavioral tests (novel object recognition, elevated plus-maze) assessed memory and anxiety.
- Hippocampal tissues were analyzed for mitochondrial activity (ATP, ROS) and protein levels (CREB, p-CREB, PGC-1α).
Main Results:
- CBL treatment reversed ketamine-induced anxiety and cognitive deficits.
- CBL normalized mitochondrial function by reducing ROS and increasing ATP production.
- CBL upregulated hippocampal CREB, p-CREB, and PGC-1α protein expression.
Conclusions:
- Cerebrolysin shows potential in mitigating schizophrenia-like symptoms in a mouse model.
- The therapeutic effects of CBL are associated with improved mitochondrial function and CREB/PGC-1α pathway activation.

