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首页> 外文期刊>BMC Complementary and Alternative Medicine >Leaf extracts from Dendropanax morbifera Léveille mitigate mercury-induced reduction of spatial memory, as well as cell proliferation, and neuroblast differentiation in rat dentate gyrus
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Leaf extracts from Dendropanax morbifera Léveille mitigate mercury-induced reduction of spatial memory, as well as cell proliferation, and neuroblast differentiation in rat dentate gyrus

机译:Dendropanax morbiferaLéveille的叶提取物减轻了汞诱导的大鼠齿状回的空间记忆以及细胞增殖和神经母细胞分化的减少

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The brain is susceptible to methylmercury toxicity, which causes irreversible damage to neurons and glia and the leaf extract Dendropanax morbifera Léveille (DML) has various biological functions in the nervous system. In this study, we examined the effects of DML on mercury-induced proliferating cells and differentiated neuroblasts. Dimethylmercury (5?μg/kg) and galantamine (5?mg/kg) was administered intraperitoneally and/or DML (100?mg/kg) was orally to 7-week-old rats every day for 36?days. One hour after the treatment, novel object recognition test was examined. In addition, spatial probe tests were conducted on the 6th day after 5?days of continuous training in the Morris swim maze. Thereafter, the rats were euthanized for immunohistochemical staining analysis with Ki67 and doublecortin and measurement for acetylcholinesterase (AChE) activity. Dimethylmercury-treated rats showed reduced discrimination index in novel object recognition test and took longer to find the platform than did control group. Compared with dimethylmercury treatment alone, supplementation with DML or galatamine significantly ameliorated the reduction of discrimination index and reduced the time spent to find the platform. In addition, the number of platform crossings was lower in the dimethylmercury-treated group than in controls, while the administration of DML or galantamine significantly increased the number of crossings than did dimethylmercury treatment alone. Proliferating cells and differentiated neuroblasts, assessed by Ki67 and doublecortin immunohistochemical staining was significantly decreased in the dimethylmercury treated group versus controls. Supplementation with DML or galantamine significantly increased the number of proliferating cells and differentiated neuroblasts in the dentate gyrus. In addition, treatment with dimethylmercury significantly increased AChE activity in hippocampal homogenates, while treatment with dimethylmercury+DML or dimethylmercury+galantamine significantly ameliorated this increase. These results suggest that DML may be a functional food that improves dimethylmercury-induced memory impairment and ameliorates dimethylmercury-induced reduction in proliferating cells and differentiated neuroblasts, and demonstrates corresponding activation of AChE activity in the dentate gyrus.
机译:大脑易受甲基汞毒性的影响,甲基汞会对神经元和神经胶质造成不可逆转的损害,而叶子提取物丝瓜叶提取物(DML)在神经系统中具有多种生物学功能。在这项研究中,我们检查了DML对汞诱导的增殖细胞和分化的神经母细胞的影响。腹膜内给予二甲基汞(5微克/千克)和加兰他敏(5微克/千克),和/或每天对7周龄的大鼠口服36 d DML(100微克/千克)。处理一小时后,进行了新颖的物体识别测试。此外,在莫里斯游泳迷宫中连续训练5天后的第6天进行了空间探针测试。此后,将大鼠安乐死以进行Ki67和双皮质素的免疫组织化学染色分析,并测量乙酰胆碱酯酶(AChE)活性。用二甲基汞处理的大鼠在新颖的物体识别测试中显示出降低的辨别指数,并且比对照组花费更长的时间找到平台。与仅使用二甲基汞处理相比,补充DML或加拉他敏可显着改善辨别指数的降低,并减少寻找平台所需的时间。此外,二甲基汞处理组的平台穿越次数比对照组低,而施用DML或加兰他敏比单独使用二甲基汞处理明显增加了穿越次数。经Ki67和双皮质素免疫组化染色评估的增殖细胞和分化的神经母细胞在二甲基汞处理组中明显低于对照组。补充DML或加兰他敏可显着增加齿状回中增殖细胞和分化的神经母细胞的数量。另外,用二甲基汞处理可显着提高海马匀浆中的AChE活性,而用二甲基汞+ DML或二甲基汞+加兰他敏处理可显着改善这种增加。这些结果表明,DML可能是一种功能性食品,可改善二甲基汞诱导的记忆障碍,并减轻二甲基汞诱导的增殖细胞和分化神经母细胞减少,并证明齿状回中的AChE活性相应激活。

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