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首页> 外文期刊>The Journal of Pharmacology and Experimental Therapeutics: Official Publication of the American Society for Pharmacology and Experimental Therapeutics >Fatty Acid Amide Hydrolase (-/-) Mice Exhibit an Increased Sensitivity to the Disruptive Effects of Anandamide or Oleamide in a Working Memory Water Maze Task
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Fatty Acid Amide Hydrolase (-/-) Mice Exhibit an Increased Sensitivity to the Disruptive Effects of Anandamide or Oleamide in a Working Memory Water Maze Task

机译:脂肪酸酰胺水解酶(-/-)小鼠表现出对工作记忆水迷宫任务中的Anandamide或油酰胺破坏作用的敏感性增加。

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摘要

Although recent evidence suggests that fatty acid amide hy-drolase (FAAH) may represent a potential therapeutic target,few published studies have investigated FAAH or its fatty acid amide substrates (FAAs) in animal models of learning and memory.Therefore,our primary goal was to determine whether FAAH (-/-) mice,which possess elevated levels of anandam-ide and other FAAs,would display altered performance in four Morris water maze tasks: acquisition of a hidden fixed platform,reversal learning,working memory,and probe trials.FAAH (-/-) mice failed to exhibit deficits in any task; in fact,they initially acquired the working memory task more rapidly than FAAH (+/+) mice.The second goal of this study was to investigate whether the FAAH inhibitor OL-135 (1-oxo-1[5-(2-pyri-dyl)-2-yl]-7-phenylheptane),anandamide,other FAAs,and methanandamide would affect working memory in both genotypes.FAAH (-/-),but not (+/+),mice displayed working memory impairments following exogenous administration of anandamide (ED_(50) = 6 mg/kg) or oleamide (50 mg/kg).However,the central cannabinoid receptor (CB_1) receptor antagonist SR141716 [N-(piperidin-1-yl)-5-(4-chlorophenyl)-1-(2,4-di-chlorophenyl)-4-methyl-1H-pyrazole-3-carboxamide HCI] only blocked the disruptive effects of anandamide.Methanandamide,which is not metabolized by FAAH,disrupted working memory performance in both genotypes (ED_(50) = 10 mg/kg),suggesting that CB_1 receptor signaling is unaltered by FAAH deletion.In contrast,OL-135 and other FAAs failed to affect working memory in either genotype.These results suggest that FAAH deletion does not impair spatial learning but may enhance acquisition under certain conditions.More generally,FAAH may represent a novel therapeutic target that circumvents the undesirable cognitive side effects commonly associated with direct-acting cannabinoid agonists.
机译:尽管最近的证据表明脂肪酸酰胺水合酶(FAAH)可能代表了潜在的治疗目标,但很少有已发表的研究在学习和记忆动物模型中研究FAAH或其脂肪酸酰胺底物(FAA)。因此,我们的主要目标是确定具有较高水平的阿南达胺和其他FAA的FAAH(-/-)小鼠在四个莫里斯水迷宫任务中的表现是否会发生改变:隐藏式固定平台的获取,逆向学习,工作记忆和探查试验.FAAH(-/-)小鼠在任何任务中均未表现出缺陷;实际上,它们最初比FAAH(+ / +)小鼠更快地完成了工作记忆任务。本研究的第二个目标是研究FAAH抑制剂OL-135(1-oxo-1 [5-(2-pyri -dyl)-2-yl] -7-苯基庚烷),anandamide,其他FAA和methanandamide将影响两种基因型的工作记忆.FAAH(-/-),但不影响(+ / +),小鼠在以下情况下表现出工作记忆障碍外用anandamide(ED_(50)= 6 mg / kg)或油酰胺(50 mg / kg)。但是,中央大麻素受体(CB_1)受体拮抗剂SR141716 [N-(哌啶-1-基)-5-( [4-氯苯基)-1-(2,4-二氯苯基)-4-甲基-1H-吡唑-3-羧酰胺盐酸盐]仅阻断了anandamide的破坏作用。甲胺并没有被FAAH代谢,破坏了工作记忆这两种基因型(ED_(50)= 10 mg / kg)的生物学性能均表明,FAB缺失不会改变CB_1受体的信号传导。相反,OL-135和其他FAA未能影响这两种基因型的工作记忆。 FAAH的缺失不会损害空间学习,但可以在一定条件下增强其获取。更普遍的说,FAAH可能代表了一种新颖的治疗靶标,可以规避通常与直接作用的大麻素激动剂相关的不良认知副作用。

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