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首页> 外文期刊>Comparative biochemistry and physiology. Toxicology & pharmacology: CBP >Diphenyl diselenide dietary supplementation alleviates behavior impairment and brain damage in grass carp (Ctenopharyngodon idella) exposed to methylmercury chloride
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Diphenyl diselenide dietary supplementation alleviates behavior impairment and brain damage in grass carp (Ctenopharyngodon idella) exposed to methylmercury chloride

机译:二苯基五烯醇膳食补充剂减轻了草鲤(Ctenopharyncodon Idella)暴露于甲基汞的行为损伤和脑损伤

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摘要

Mercury (Hg) induces neurobehavioral disorders through reactive oxygen species (ROS) elevation and impairment of brain key enzyme activities. Nevertheless, the therapeutic and toxic selenium concentrations for fish are very close; diphenyl diselenide (Ph2Se2), an organoselenium compound with neuroprotective effects, may be an alternative to elemental Se. Therefore, the aim of this study was to determine whether dietary supplemen(t)ation with Ph2Se2 prevented or reduced the neurobehavioral alterations and oxidative damage elicited by CH3HgCl in grass carp Ctenopharyngodon idella. Fish exposed to CH3HgCl exhibited significantly reduced distance travelled and swimming speed compared to the control group, as well as augmented cortisol and ROS levels and xanthine oxidase (XO) activities. CH3HgCl exposure significantly increased lipid peroxidation (LOOH) and protein carbonylation (PC) levels compared to those of the control group, while acetylcholinesterase (AChE) and sodium potassium pump (Na+, K+-ATPase) activities were inhibited. Dietary supplementation with 3 mg/kg Ph2Se2 ameliorated locomotor activity impairment and prevented the augmented brain cortisol and ROS levels as well as XO activity. The supplement reduced lipid and protein damage elicited by CH3HgCl and exerted protective effects on brain AChE and Na+, K+-ATPase activities. Exposure to an environmental concentration of CH3HgCl elicited neurobehavioral alterations linked to reduced locomotor activity, a finding that can be explained by oxidative damage and reduced activity of AChE and Na+, K+-ATPase in telencephalon and mesencephalon structures. Dietary supplementation with Ph2Se2 prevented CH3HgCl-induced locomotor impairment. This effect appeared to be mediated by antioxidant action. Ph2Se2 may be a viable approach to prevention or reduction CH3HgCl-mediated neurotoxic effects.
机译:汞(Hg)通过反应性氧物种(ROS)升高和脑关键酶活性的损伤诱导神经兽性疾病。然而,用于鱼类的治疗和有毒硒浓度非常近;二苯基五烯酮(pH2se2),具有神经保护作用的有机烯化合物,可以是元素Se的替代方法。因此,本研究的目的是确定与PH2Se2的膳食产品(t)是否预防或降低CH3HGC1在草CTEROCNARYNOCNARYNOCNOCNOCNODON IDELLE中引起的神经兽性改变和氧化损伤。与对照组相比,暴露于CH3HGCL的鱼类显着降低距离和游泳速度,以及增强皮质醇和ROS水平和黄嘌呤氧化酶(XO)活性。与对照组相比,CH3HGCL暴露显着增加了脂质过氧化(LOOH)和蛋白质羰基化(PC)水平,而乙酰胆碱酯酶(疼痛)和钠钾泵(Na +,K + -AtPase)活性抑制。用3毫克/千克PH2SE2的膳食补充剂改善运动活动障碍,防止增强脑皮质醇和ROS水平以及XO活动。补充剂通过CH 3 HCL引发的脂质和蛋白质损伤,并对脑疼痛和Na +,K + -ATP酶活性施加保护作用。暴露于与减少运动活性有关的CH 3 HGCL的环境浓度,其与减少运动活性有关,该发现可以通过氧化损伤和降低疼痛和Na +,K + -ATP酶的氧化损伤和降低的瞳孔和培养基结构来解释。用pH2Se2进行膳食补充,防止了CH3HCCL诱导的运动损伤。这种效果似乎是通过抗氧化作用的介导的。 PH2Se2可以是预防或减少CH3HCCL介导的神经毒性作用的可行方法。

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