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[急性低压缺氧对大鼠空间学习记忆的影响及其与海马孤啡肽的关系]

[Effects of acute hypobaric hypoxia on spatial learning, memory and its relationship with orphanin FQ of hippocampus in rats].

作者信息

Lin Jian-Xiong, Sui Jian-Feng, Luo Jun, Li Xi-Cheng

机构信息

Department of Physiology, Third Military Medical University, Chongqing 400038, China.

出版信息

Zhongguo Ying Yong Sheng Li Xue Za Zhi. 2004 Feb;20(1):11-4.

Abstract

AIM

To study the relationship between changes of learning, memory and orphanin FQ (OFQ) in hippocampus of rats in acute hypobaric hypoxia at two different altitude levels of 4 500 m(moderate) and 7 500 m(serious).

METHODS

Hypobaric chamber, Morris water maze training method and RT-PCR technique were used in the experiment.

RESULTS

(1) Compared with the control, the OFQ mRNA expression of hippocampus increased significantly after exposure to acute serious hypobaric hypoxia (8 h/d for 6 d in succession), but obviously decreased after Morris water maze training (6 times/d for 6 d in succession, the latency of place navigation was shortened). (2) After exposure to acute hypobaric hypoxia, the latency of place navigation was markedly elongated, but the OFQ mRNA of hippocampus was significantly higher than that of learning and memory group.

CONCLUSION

The hippocampal OFQ was involved in the mechanism of decrease in spatial learning and memory induced by acute hypobaric hypoxia.

摘要

目的

研究在4500米(中度)和7500米(重度)两个不同海拔高度下,急性低压缺氧大鼠海马中孤啡肽(OFQ)与学习、记忆变化之间的关系。

方法

实验采用低压舱、Morris水迷宫训练法和RT-PCR技术。

结果

(1)与对照组相比,连续6天每天8小时暴露于急性重度低压缺氧后,海马中OFQ mRNA表达显著增加,但在连续6天每天6次Morris水迷宫训练(空间探索潜伏期缩短)后明显降低。(2)暴露于急性低压缺氧后,空间探索潜伏期显著延长,但海马中OFQ mRNA明显高于学习记忆组。

结论

海马OFQ参与急性低压缺氧诱导的空间学习记忆减退机制。

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