4.5 Article

Neuroprotective Effect of Apigenin on Depressive-Like Behavior: Mechanistic Approach

期刊

NEUROCHEMICAL RESEARCH
卷 47, 期 3, 页码 644-655

出版社

SPRINGER/PLENUM PUBLISHERS
DOI: 10.1007/s11064-021-03473-0

关键词

Apigenin; Depression; Oxidative stress; Immune system; Streptozotocin

资金

  1. Zanjan University of Medical Sciences [A-12-769-27, 29]

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Apigenin exhibits anti-depressive properties and positively influences behavior and biochemical markers in depressed animals, while also showing regulatory effects on cellular energy balance and immune system gene expression.
Apigenin, as a natural flavonoid present in several plants is characterized with potential anticancer, antioxidant, and anti-inflammatory properties. Recent studies proposed that apigenin affects depression disorder through unknown mechanistic pathways. The effects of apigenin's anti-depressive properties on streptozocin-mediated depression have been investigated through the evaluation of behavioral tests, oxidative stress, cellular energy homeostasis and inflammatory responses. The results demonstrated anti-depressive properties of apigenin in behavioral test including forced swimming and splash tests and oxidative stress biomarkers such as reduced glutathione, lipid peroxidation, total antioxidant power and coenzyme Q(10) levels. Apigenin, also, demonstrated its regulatory potency in cellular energy homeostasis and immune system gene expression through inhibiting Nlrp3 and Tlr4 overexpression. Furthermore, failure in energy production as the key factor in various psychiatric disorders was reversed by apigenin modulating effect on AMPK gene expression. Overall, 20 mg/kg of apigenin was recognized as the dose suitable for minimizing the undesirable adverse effects in the STZ-mediated depression model proposed in this study. Our data suggested that apigenin could be able to adjust behavioral dysfunction, biochemical biomarkers and recovered cellular antioxidant level in depressed animals. The surprising results were achieved by raise in COQ(10) level, which could regulate the overexpression of the AMPK gene in stressful conditions. The regulatory effect of apigenin in inflammatory signaling pathways such as Nlrp3, and Tlr4 gene expression was studied at the surface part of the hippocampus.

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