胆碱摄取增强剂MKC-231可改善乙胆碱aziridinium离子诱导的小鼠工作记忆缺陷和海马乙酰胆碱下降。

S Murai, H Saito, E Abe, Y Masuda, J Odashima, T Itoh
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引用次数: 12

摘要

采用t型迷宫,在延迟不匹配样本任务中研究了新型胆碱摄取促进剂MKC-231、利诺匹啶(Dup 996)和四氢氨基吖啶(THA)对乙胆碱偶氮离子(AF64A)治疗小鼠工作记忆缺陷和海马乙酰胆碱(ACh)含量降低的影响。AF64A (3.5 nmol, c.c.v)治疗产生记忆缺陷和海马乙酰胆碱含量降低。在急性行为实验中,MKC-231和THA在任何剂量(0.3、1.0和3.0 mg/kg)下对af64a诱导的记忆缺陷均无显著影响,而Dup 996在1.0 mg/kg剂量下可显著改善记忆缺陷。在慢性实验中,MKC-231在所有测试剂量下(0.3、1.0或3.0 mg/kg,每天一次,持续11天)都能改善记忆缺陷,Dup 996仅在3.0 mg/kg剂量下有这种作用,而THA在任何测试剂量下都不能改善记忆缺陷。在急性神经化学实验中,MKC-231和THA不能逆转af64a诱导的海马乙酰胆碱消耗。然而,与af64a处理组相比,Dup 996进一步降低了海马乙酰胆碱含量。在慢性实验中,MKC-231在0.3和1.0 mg/kg剂量下显著逆转海马乙酰胆碱消耗,而Dup 996和THA在任何剂量下均未逆转海马乙酰胆碱消耗。这些结果表明,MKC-231改善了af64a诱导的工作记忆缺陷和海马乙酰胆碱消耗,可能是通过恢复减少的高亲和力胆碱摄取和乙酰胆碱释放。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
MKC-231, a choline uptake enhancer, ameliorates working memory deficits and decreased hippocampal acetylcholine induced by ethylcholine aziridinium ion in mice.

The effects of acute and chronic administration of MKC-231, a new choline uptake enhancer, and two other nootropic agents, linopiridine (Dup 996) and tetrahydroaminoacridine (THA) on working memory deficits and decreased hippocampal acetylcholine (ACh) content were studied in a delayed non-matching to sample task, using a T-maze, in ethylcholine aziridinium ion (AF64A)-treated mice. Treatment with AF64A (3.5 nmol, i.c.v.) produced memory deficits and decreased hippocampal ACh content. In acute behavioral experiments, MKC-231 and THA had no significant effect on AF64A-induced memory deficits at any doses tested (0.3, 1.0 and 3.0 mg/kg), whereas Dup 996, at a dose of 1.0 mg/kg, significantly improved memory deficits. In chronic experiments, MKC-231 improved memory deficit at all doses tested (0.3, 1.0, or 3.0 mg/kg p.o., once daily for 11 days) and Dup 996 did so only at a dose of 3.0 mg/kg, whereas THA did not improve memory deficit at any doses tested. In acute neurochemical experiments, MKC-231 and THA did not reverse the AF64A-induced hippocampal ACh depletion. Dup 996, however, further decreased hippocampal ACh content compared to that in the AF64A-treated group. In chronic experiments, MKC-231 significantly reversed hippocampal ACh depletion at doses of 0.3 and 1.0 mg/kg, whereas neither Dup 996 nor THA reversed hippocampal ACh depletion at any doses tested. These results indicate that MKC-231 improved the AF64A-induced working memory deficit and hippocampal ACh depletion, probably by recovering reduced high-affinity choline uptake and ACh release.

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