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Exploring the neurotoxicity and changes in life cycle parameters of Drosophila melanogaster exposed to arecoline

机译:探索果蝇暴露于氨基隆的神经毒性和生命周期参数的变化

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Abstract BackgroundArecoline (an alkaloid) has been reported as a potent cytotoxic as well as genotoxic agent but its neurotoxic effects are limited.Material and methodsIn the present study, we evaluated the neurotoxic effects and changes in life cycle parameters of Drosophila melanogaster on exposing the flies to 5, 10, 20, 40 and 80?μM of arecoline for 5?days. After the exposure, the flies were assayed for climbing ability, activity pattern, oxidative stress markers, acetylcholinesterase (AChE), monoamine oxidase activity (MAO), caspase-3 and caspase-9 activities and apoptosis in the neuronal cells. For studying the effects on life cycle parameters, duration of pupation, emergence and life span were also studied.ResultsThe exposure of flies to 5 and 10?μM of arecoline did not show toxic effects, but the flies exposed to 20, 40 and 80?μM showed a significant dose-dependent loss of climbing ability, activity pattern, MAO, glutathione (GSH) content and acetylcholinesterase activity and increase in the glutathione-S-transferase (GST), MAO activity, lipid peroxidation assay (LPO), protein carbonyl content (PCC), caspase-3 and caspase-9 activities and apoptosis in the neuronal cells. The exposure of flies to arecoline not only results in the delay of pupation but also delayed the emergence of flies. A significant reduction was also observed in the life span of flies exposed to 20, 40 and 80?μM of arecoline. The eyes of flies emerged from the larvae exposed to various doses of arecoline were also analysed for the phenotypic abnormality. Clear dose-dependent deformities were observed in the eyes of the flies emerged from the exposure of larvae exposed to 20, 40 and 80?μM of arecoline.ConclusionArecoline not only is a neurotoxic agent but also affects the life cycle parameters of the fly.
机译:摘要BackgroundareColine(生物碱)被报告为有效的细胞毒性以及遗传毒剂,但其神经毒性效应是有限的。目前的研究,我们评估了神经毒性效应和果蝇Melanogaster的生命周期参数的变化,果蝇对暴露苍蝇的神经毒性效应和变化5,10,20,40和80?μmα天。曝光后,测定苍蝇能力,活性模式,氧化应激标记物,乙酰胆碱酯酶(ACHE),单胺氧化酶活性(MAO),胱天蛋白-3和Caspase-9在神经元细胞中的凋亡。为了研究生命周期参数的影响,还研究了瞳孔的持续时间,出现和寿命。苍蝇的暴露于5和10?μm的葡萄球没有显示出毒性效应,但苍蝇暴露在20,40和80? μm显示出显着的攀爬能力,活性模式,毛,谷胱甘肽(GSH)含量和乙酰胆碱酯酶活性以及谷胱甘肽-S-转移酶(GST),MAO活性,脂质过氧化测定(LPO),蛋白质羰基含量增加的显着剂量依赖性丧失内容(PCC),Caspase-3和Caspase-9在神经元细胞中的活动和凋亡。苍蝇的曝光不仅导致延迟蛹化,而且延迟了苍蝇的出现。在暴露于20,40和80℃的苍蝇的恒定的寿命中也观察到显着的减少。还分析了从暴露于各种剂量的葡萄啉的幼虫出现的苍蝇的眼睛,用于表型异常。在从暴露于20,40和80Ω·μm的幼虫暴露于20,40℃的苍蝇中出现的苍蝇的眼睛中观察到透明剂量依赖性畸形。结论植物反应性,不仅是神经毒剂,而且影响飞行的生命周期参数。

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