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首页> 外文期刊>Zebrafish >Withania somnifera Leaf Extract Ameliorates Benzo[a]pyrene-Induced Behavioral and Neuromorphological Alterations by Improving Brain Antioxidant Status in Zebrafish (Danio rerio)
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Withania somnifera Leaf Extract Ameliorates Benzo[a]pyrene-Induced Behavioral and Neuromorphological Alterations by Improving Brain Antioxidant Status in Zebrafish (Danio rerio)

机译:睡茄叶提取物通过改善斑马鱼的大脑抗氧化状态来改善苯并[a] py诱导的行为和神经形态学改变。

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摘要

The aquatic environment provides a sink for the environmental pollutants that have potential to induce oxidative stress by altering neurobehavioral response of aquatic animals. Benzo[a] pyrene (B[a]P), a polycyclic aromatic hydrocarbon is known to induce oxidative stress in the brain. Withania somnifera has been used traditionally for its neuroprotective effect in experimental models of neurological disorders. The present study is aimed to evaluate the neuroprotective potential of Withania somnifera leaf extract (WSLE) following exposure to waterborne B[a] P. Wild-type zebrafish (Danio rerio) were designated as naive, control (dimethyl sulfoxide), WSLE, B[a] P, and B[a] P + WSLE groups. Behavioral studies showed reversal in scototaxis (anxiety-like) behavior in B[a] P group and was restored by WSLE cosupplementation in B[a] P + WSLE group. B[a] P-induced altered antioxidant status was ameliorated by WSLEin the B[a] P + WSLE group. Previous studies showed that the periventricular gray zone (PGZ) of the optic tectum in zebrafish brain regulates scototaxis (anxiety-like) behavior. Our histopathological observation showed a significant increase in the pyknotic neuronal counts in PGZ of the B[a] P group and was ameliorated by WSLE cosupplementation. The study showed that the reversal in scototaxis behavior following exposure to waterborne B[a] P might be associated with neuromorphological alterations in PGZ, whereas a pioneer ethnopharmacological approach of WSLE cosupplementation showed its neuroprotective role to restore normal scototaxis of zebrafish. Future research directing toward understanding the role of visual circuit involved with impaired scototaxis behavior in zebrafish might provide new pathological outcomes following exposure to B[a] P.
机译:水生环境为可能通过改变水生动物的神经行为反应而诱发氧化应激的环境污染物提供了一个汇。苯并[a]((B [a] P)是一种多环芳烃,可诱发大脑中的氧化应激。传统上,Withania somnifera在神经系统疾病的实验模型中具有神经保护作用。本研究旨在评估Withania somnifera叶提取物(WSLE)暴露于水性B [a] P后的神经保护潜力。野生型斑马鱼(Danio rerio)被指定为幼稚,对照(二甲亚砜),WSLE,B [a] P和B [a] P + WSLE组。行为研究表明,B [a] P组的睡眠行为(焦虑样)行为发生了逆转,而B [a] P + WSLE组的WSLE补充补充了这种行为。 B [a] P + WSLE组的WSLE改善了B [a] P诱导的抗氧化剂状态改变。先前的研究表明,斑马鱼大脑中视神经外层的脑室周围灰色区(PGZ)可以调节刻痕(焦虑症)行为。我们的组织病理学观察显示,B [a] P组的PGZ的泌尿生殖系统神经元计数显着增加,并且通过WSLE补充来改善。这项研究表明,暴露于水性B [a] P后,虫行为的逆转可能与PGZ中的神经形态学改变有关,而WSLE辅食的先驱民族药理学方法表明它具有恢复斑马鱼正常虫的神经保护作用。未来的研究旨在了解视觉电路与斑马鱼的尾轴行为受损有关的作用,可能会在暴露于B [a] P后提供新的病理结果。

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