Therapeutic effects of saffron extract on different memory types, anxiety, and hippocampal BDNF and TNF-α gene expressions in sub-chronically stressed rats

(2022) Therapeutic effects of saffron extract on different memory types, anxiety, and hippocampal BDNF and TNF-α gene expressions in sub-chronically stressed rats. Nutr Neurosci. pp. 192-206. ISSN 1028-415x

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Abstract

Objective: While stress reportedly impairs memory, saffron enhances it. This study investigated the therapeutic effects of saffron extract on different memory types, anxiety-like behavior, and expressions of BDNF and TNF-α genes in sub-chronically stressed rats.Methods: Rats were randomly assigned to control, restraint stress (6 h/day/7 days), two 7-days saffron treatments with 30 and 60 mg/kg, and two stress-saffron groups (30 and 60 mg/kg/7 post-stress days). Serum cortisol level and hippocampal BDNF and TNF-α gene expressions were measured. Open field, passive avoidance, novel object recognition, and object location tests were performed to assess anxiety-like behavior and avoidance as well as cognitive and spatial memories, respectively.Results: The low saffron dose in the sub-chronic stressed group led to a significant increase in passive avoidance latency from day 3 onward whereas this effect was observed after 7 days under the high-dose treatment that simultaneously led to a significant decline in serum cortisol level. While the low saffron dose led to a sharp drop in hippocampal TNF-α gene expression, the high dose significantly increased the hippocampal BDNF gene expression in the sub-chronic stress group. Finally, both saffron doses reduced anxiety in the stressed groups.Conclusion: Compared to the low saffron dose, the high dose had a latent but long-lasting impact. Cognitive and spatial memories remained unaffected by either stress or saffron treatment. In addition, only the high saffron dose reversed anxiety in the sub-chronically stressed group. These findings suggest that various doses of saffron act differently on different brain functions under sub-chronic stress conditions.Abbreviations: Brain derived neurotrophic factor (BDNF), tumor necrosis factor-α (TNF-α), hypothalamic-pituitary-adrenal axis (HPA), novel object recognition task (NORT), novel object location task (NOLT), open field test (OFT), passive avoidance (PA).

Item Type: Article
Keywords: Animals Anxiety/*drug therapy Avoidance Learning/drug effects Behavior, Animal/drug effects Brain/drug effects/physiopathology Brain-Derived Neurotrophic Factor/*genetics Crocus/*chemistry Dose-Response Relationship, Drug Gene Expression/drug effects Hippocampus/metabolism Male Memory/drug effects Phytotherapy Plant Extracts/*administration & dosage Rats Restraint, Physical Stress, Psychological/*physiopathology/psychology Tumor Necrosis Factor-alpha/*genetics anxiety avoidance memory‌ brain-derived neurotrophic factor cognitive memory‌ saffron spatial memory‌ stress tumor necrosis factor-alpha
Page Range: pp. 192-206
Journal or Publication Title: Nutr Neurosci
Journal Index: Pubmed
Volume: 25
Number: 1
Identification Number: https://doi.org/10.1080/1028415x.2021.1943138
ISSN: 1028-415x
Depositing User: Zahra Otroj
URI: http://eprints.mui.ac.ir/id/eprint/16505

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