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首页> 外文期刊>Neuroscience & Medicine >Ro 20-1724 Ameliorates Learning Deficit and Long-Term Memory Impairment Secondary to Repeated Ketamine Anesthesia in Young Rats
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Ro 20-1724 Ameliorates Learning Deficit and Long-Term Memory Impairment Secondary to Repeated Ketamine Anesthesia in Young Rats

机译:Ro 20-1724年改善幼鼠重复氯胺酮麻醉后继发的学习障碍和长期记忆障碍

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To investigate effects and possible mechanism of Ro 20-1724, a PDE4 inhibitor, on long-time learning and memory ability following repeated ketamine exposure in immature rats. Methods: Sixty 21-day-old SD rats were randomly divided into five groups (n = 12): C: Normal control group, S: Saline control group, K: Ketamine, K + Ro:?Ketamine + Ro 20-1724, K + E: Ketamine + ethanol vehicle. Ro 20-1724 (0.5 mg·kg-1) or its vehicle (ethanol) was administered intraperitoneally 30 minutes after ketamine anesthesia (70 mg·kg-1), daily for seven days. Nine weeks after birth, the Morris water maze was used to test the ability of learning and spatial localization memory on the rats. Following behavioral testing, animals’ hippocampi were removed for Western blot and electron microscopic examination. Results: In the Morris water maze test, compared with controls, the escape latency in groups exposed to ketamine or ketamine plus the ethanol vehicle were significantly prolonged (P P P 0.05), while there was no significant difference between control groups and animals treated with Ro 20-1724 following ketamine exposure (P > 0.05). Electron microscopy demonstrated degenerative changes in hippocampal neurons of animals repetitively exposed to 70 mg·kg-1 Ketamine, which was ameliorated by Ro 20-1724 (0.5 mg·kg-1). Conclusion: The PDE-4 inhibitor Ro 20-1724 (0.5 mg·kg-1 lang
机译:研究PDE4抑制剂Ro 20-1724 Ro对未成熟大鼠反复氯胺酮暴露后长期学习和记忆能力的影响及其可能的机制。方法:将60只21天大的SD大鼠随机分为5组(n = 12):C:正常对照组,S:盐水对照组,K:氯胺酮,K + Ro :?氯胺酮+ Ro 20-1724, K + E:氯胺酮+乙醇载体。氯胺酮麻醉(70 mg·kg-1)后30分钟腹腔注射Ro 20-1724(0.5 mg·kg-1)或其媒介物(乙醇),每天服用7天。出生后九周,莫里斯水迷宫用于测试大鼠的学习能力和空间定位记忆。进行行为测试后,将动物的海马体取出,进行蛋白质印迹和电子显微镜检查。结果:在莫里斯水迷宫测试中,与对照组相比,接触氯胺酮或氯胺酮和乙醇媒介物的组的逃避潜伏期显着延长(PPP 0.05),而对照组和用Ro 20处理的动物之间没有显着差异氯胺酮暴露后-1724(P> 0.05)。电镜观察表明,反复暴露于70 mg·kg-1氯胺酮的动物海马神经元发生退行性变化,Ro 20-1724(0.5 mg·kg-1)改善了这一现象。结论:PDE-4抑制剂Ro 20-1724(0.5 mg·kg-1 lang

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