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过氧化物对大鼠海马体慢发性增强的调节作用

Peroxide modulation of slow onset potentiation in rat hippocampus.

作者信息

Auerbach J M, Segal M

机构信息

Department of Neurobiology, The Weizmann Institute, Rehovot 76100, Israel.

出版信息

J Neurosci. 1997 Nov 15;17(22):8695-701. doi: 10.1523/JNEUROSCI.17-22-08695.1997.

Abstract

Exposure of rat hippocampal slices to low concentrations of the muscarinic agonist carbachol (CCh) has been shown to produce a slow onset long-term potentiation (LTP) of reactivity to afferent stimulation in CA1 neurons. Although this potentiation shares a number of properties with tetanic LTP, muscarinic LTP (LTPm) is independent of activation of the NMDA receptor. We now demonstrate that low levels of hydrogen peroxide (H2O2) cause hippocampal slices to lose the ability to express LTPm. This powerful effect of H2O2 is selective in that it does not affect the reactivity of hippocampal neurons to higher concentrations of CCh. In fact, H2O2 also blocks induction of a slow onset, non-NMDA-dependent tetanic LTP (NN-LTP). The functional relevance of this action of H2O2 is exemplified by the fact that the hippocampus of aged rats, which produces higher levels of endogenous H2O2 than that of young rats, lacks LTPm and expresses a markedly reduced NN-LTP. In aged rats, the lack of LTPm contrasts with an apparently normal muscarinic suppression of the EPSP slope induced by higher concentrations of CCh. When hippocampal slices from aged animals are treated with catalase, an enzyme that breaks down H2O2, LTPm is restored, and NN-LTP is enhanced. Thus, our study proposes a unique and novel age-dependent peroxide regulation of LTPm in the brain and provides a link between the cholinergic system, aging, and memory functions.

摘要

已表明,将大鼠海马切片暴露于低浓度的毒蕈碱激动剂卡巴胆碱(CCh)会导致CA1神经元对传入刺激的反应性产生缓慢起效的长时程增强(LTP)。尽管这种增强与强直刺激诱导的LTP有许多共同特性,但毒蕈碱LTP(LTPm)独立于NMDA受体的激活。我们现在证明,低水平的过氧化氢(H2O2)会使海马切片丧失表达LTPm的能力。H2O2的这种强大作用具有选择性,因为它不影响海马神经元对较高浓度CCh的反应性。事实上,H2O2还会阻断缓慢起效的、非NMDA依赖性强直LTP(NN-LTP)的诱导。老年大鼠海马中内源性H2O2水平高于年轻大鼠,其缺乏LTPm且NN-LTP明显降低,这一事实例证了H2O2这一作用的功能相关性。在老年大鼠中,LTPm的缺乏与较高浓度CCh诱导的EPSP斜率明显正常的毒蕈碱抑制形成对比。当用分解H2O2的过氧化氢酶处理老年动物的海马切片时,LTPm得以恢复,NN-LTP增强。因此,我们的研究提出了一种独特且新颖的与年龄相关的大脑中LTPm的过氧化物调节机制,并在胆碱能系统、衰老和记忆功能之间建立了联系。

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