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β1肾上腺素能受体而非β2肾上腺素能受体的阻断可重现普萘洛尔对小鼠记忆痕迹在大脑中扩散的抑制作用。

Blockade of beta 1- but not of beta 2-adrenergic receptors replicates propranolol's suppression of the cerebral spread of an engram in mice.

作者信息

Flexner J B, Flexner L B, Church A C, Rainbow T C, Brunswick D J

出版信息

Proc Natl Acad Sci U S A. 1985 Nov;82(21):7458-61. doi: 10.1073/pnas.82.21.7458.

Abstract

Bitemporal injections of puromycin that primarily affect the hippocampal-entorhinal area induce amnesia of aversive maze-learning in mice for 3 days after training but are ineffective 6 or more days after training. At these later times, additional puromycin sites covering widespread forebrain areas are necessary to induce amnesia, a result that we attribute to the cerebral spread of the engram during the 6-day period. We have reported that blockade of about 60% of cerebral beta-adrenergic receptors by a single, subcutaneous injection of (-)-propranolol, a nonselective beta-receptor antagonist, inhibited engram spread for 60-90 days, at which time engram spread spontaneously occurred. In the present experiments using single doses of antagonists that appeared to block 60% of beta 2- or beta 1-adrenergic receptors, it was found that the selective beta 2 antagonist ICI 118,551 was without effect on engram spread, whereas the selective beta 1 antagonist betaxolol inhibited the spread for at least 3 months. Propranolol's effect consequently appears to be accounted for by its blockade of beta 1 receptors.

摘要

双侧颞叶注射嘌呤霉素主要影响海马-内嗅区,可使小鼠在训练后3天内出现厌恶迷宫学习失忆,但在训练6天或更长时间后则无效。在这些较晚的时间点,需要额外的嘌呤霉素作用位点覆盖广泛的前脑区域才能诱导失忆,我们将此结果归因于记忆痕迹在6天内的脑内扩散。我们曾报道,单次皮下注射非选择性β受体拮抗剂(-)-普萘洛尔阻断约60%的脑β-肾上腺素能受体后,可抑制记忆痕迹扩散60 - 90天,之后记忆痕迹扩散会自发出现。在本实验中,使用单剂量似乎能阻断60%的β2或β1肾上腺素能受体的拮抗剂,发现选择性β2拮抗剂ICI 118,551对记忆痕迹扩散无影响,而选择性β1拮抗剂倍他洛尔可抑制扩散至少3个月。因此,普萘洛尔的作用似乎是由其对β1受体的阻断所致。

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本文引用的文献

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Memory in mice as affected by intracerebral puromycin.脑内嘌呤霉素对小鼠记忆的影响
Science. 1963 Jul 5;141(3575):57-9. doi: 10.1126/science.141.3575.57.
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Brain Res. 1982 Feb 11;233(2):241-53. doi: 10.1016/0006-8993(82)91200-8.
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Science. 1984 Sep 21;225(4668):1335-45. doi: 10.1126/science.6382611.
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beta-Adrenergic receptor subtypes in rat brain.
Adv Biochem Psychopharmacol. 1983;36:73-81.

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