4.6 Article

Mitigation of nicotine-induced developmental effects by 24-epibrassinolide in zebrafish

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ELSEVIER SCIENCE INC
DOI: 10.1016/j.cbpc.2023.109552

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Teratogen; Nicotine; Brassinosteroid; Behaviour; Oxidative stress; Development

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This study aimed to evaluate the antioxidant effects of a natural plant hormone, 24-epibrassinolide, against the teratogenic effects of nicotine on zebrafish embryos. The results showed that 24-epibrassinolide reduced nicotine-induced deformities in zebrafish embryos, while improving oxidative stress and metabolic changes. It also alleviated nicotine-induced cognitive dysfunction.
Nicotine is a highly addictive substance that can cause teratogenic impacts in the embryo through redoxdependent pathways. As antioxidants, naturally occurring chemicals can protect cells from redox imbalance. The purpose of this study was to evaluate the effectiveness of 24-epibrassinolide (24-EPI), a natural brassinosteroid with well-known antioxidant properties, in protecting zebrafish embryos against nicotine's teratogenic effects. For 96 h, embryos (2 h post-fertilization - hpf) were exposed to 100 mu M nicotine, co-exposed with 24-EPI (0.01, 0.1, and 1 mu M), and 24-EPI alone (1 mu M). Lethal and sublethal developmental characteristics were evaluated during exposure. Biochemical tests were performed at the conclusion of the exposure, and distinct behavioural paradigms were analysed 24 h later. Nicotine exposure resulted in a higher proportion of larvae with deformities, which were decreased following co-exposure to 24-EPI. Nicotine exposure also caused an increase in oxidative stress as observed by the increased activity of superoxide dismutase and catalase accompanied by an increase in the malondialdehyde levels. Besides, metabolic changes were noticed as observed by the increased lactate dehydrogenase activity that were hypothesised to be associated to nicotine-induced hypoxia which may be responsible for the increased oxidative damage. In addition, locomotor deficits were observed as well as a decrease in the acetylcholinesterase activity denoting nicotine-induced cognitive dysfunction. However, coexposure to 24-EPI alleviated behavioural deficits and improved nicotine-induced emotional states. Overall, and although further studies are required to clarify these effects, 24-EPI showed promising ameliorative properties against the teratogenic effects induced by nicotine.

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