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首页> 外文期刊>Chemico-biological interactions >Effects of microcystins over short- and long-term memory and oxidative stress generation in hippocampus of rats.
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Effects of microcystins over short- and long-term memory and oxidative stress generation in hippocampus of rats.

机译:微囊藻毒素对大鼠海马短期和长期记忆及氧化应激的影响。

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摘要

Microcystins produced by cyanobacteria are potent inhibitors of some protein phosphatases, but recent evidence also indicates its potential to generate oxidative stress. In the present study, the effects of microcystin raw extracts (Mic; 0.01 and 20microg/L) and purified okadaic acid (OA; 0.01 and 10microg/L) on short- and long-term memory alteration and antioxidant and oxidative damage were investigated in hippocampus of rats. The results showed an amnesic effect with 0.01 and 20microg/L Mic on retrieval and only with 0.01microg/L Mic on spatial learning. Parallel to these effects oxidative damage was observed as evidenced by augmented levels of lipid peroxides and DNA damage and the absence of antioxidant responses in terms of total oxyradical scavenging capacity. Phase II reactions catalyzed by glutathione-S-transferase were not modified after microcystins exposure. Overall this study showed physiological events (retrieval and spatial learning) that can be related to the classical toxic effects of microcystins (i.e., phosphatase inhibition). In addition, evidence of alternative toxicity mechanisms via oxidative stress generation was also obtained. The fact that organic anion transporter polypeptides (OATP) involved in microcystins uptake are expressed not only in liver but also in brain points to the environmental relevance of the observed effects.
机译:蓝细菌产生的微囊藻毒素是某些蛋白质磷酸酶的有效抑制剂,但最近的证据也表明其潜在产生氧化应激的能力。在本研究中,研究了微囊藻毒素原提取物(Mic; 0.01和20microg / L)和纯化的冈田酸(OA; 0.01和10microg / L)对短期和长期记忆改变以及抗氧化剂和氧化损伤的影响。大鼠海马。结果显示,记忆消除的效果为0.01和20microg / L Mic,而空间学习效果仅为0.01microg / L Mic。脂质过氧化物和DNA损伤水平的增加以及总抗氧自由基清除能力的缺乏抗氧化剂反应证明了与这些作用平行的氧化损伤。暴露于微囊藻毒素后,谷胱甘肽-S-转移酶催化的II期反应没有改变。总体而言,这项研究表明生理事件(检索和空间学习)可能与微囊藻毒素的经典毒性作用(即磷酸酶抑制)有关。此外,还获得了通过氧化应激产生替代毒性机制的证据。参与微囊藻毒素摄取的有机阴离子转运蛋白多肽(OATP)不仅在肝脏中表达,而且在脑中表达,这一事实表明所观察到的效应与环境有关。

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