Ahmadi-Soleimani_2023_Life.Sci__122100

Reference

Title : Omega-3 fatty acids prevent nicotine withdrawal-induced impairment of learning and memory via affecting oxidative status, inflammatory response, cholinergic activity, BDNF and amyloid-B in rat hippocampal tissues - Ahmadi-Soleimani_2023_Life.Sci__122100
Author(s) : Ahmadi-Soleimani SM , Amiry GY , Khordad E , Masoudi M , Beheshti F
Ref : Life Sciences , :122100 , 2023
Abstract :

In the present study, the main objective was to reveal whether treatment by Omega-3 fatty acids could prevent the adverse effects of adolescent nicotine withdrawal on spatial and avoidance memory in male rats. For this purpose, Morris water maze and passive avoidance tests were performed on male Wistar rats and the hippocampal levels of oxidative stress markers, inflammatory indices, brain-derived neurotrophic factor, nitrite, amyloid-B and acetylcholinesterase (AChE) were measured. Moreover, density of dark neurons were assessed in CA(1) and CA(3) regions. Results showed that adolescent nicotine exposure followed by a period of drug cessation exacerbates the behavioral indices of learning and memory through affecting a variety of biochemical markers within the hippocampal tissues. These changes lead to elevation of oxidative and inflammatory markers, reduction of neurotrophic capacity and increased AChE activity in hippocampal tissues. In addition, it was observed that co-administration of nicotine with Omega-3 fatty acids significantly prevents nicotine withdrawal-induced adverse effects through restoration of the mentioned biochemical disturbances. Therefore, we suggest administration of Omega-3 fatty acids as a safe, inexpensive and effective therapeutic strategy for prevention of memory dysfunctions associated with nicotine abstinence during adolescence.

PubMedSearch : Ahmadi-Soleimani_2023_Life.Sci__122100
PubMedID: 37722588

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Citations formats

Ahmadi-Soleimani SM, Amiry GY, Khordad E, Masoudi M, Beheshti F (2023)
Omega-3 fatty acids prevent nicotine withdrawal-induced impairment of learning and memory via affecting oxidative status, inflammatory response, cholinergic activity, BDNF and amyloid-B in rat hippocampal tissues
Life Sciences :122100

Ahmadi-Soleimani SM, Amiry GY, Khordad E, Masoudi M, Beheshti F (2023)
Life Sciences :122100