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出生后早期接触尼古丁会导致青春期小鼠出现海马体依赖性记忆障碍:与长时程增强(LTP)的烟碱能胆碱能调节改变有关,但与LTP受损无关。

Early postnatal nicotine exposure causes hippocampus-dependent memory impairments in adolescent mice: Association with altered nicotinic cholinergic modulation of LTP, but not impaired LTP.

作者信息

Nakauchi Sakura, Malvaez Melissa, Su Hailing, Kleeman Elise, Dang Richard, Wood Marcelo A, Sumikawa Katumi

机构信息

Department of Neurobiology and Behavior, University of California, Irvine, Irvine, CA 92697-4550, USA.

Department of Neurobiology and Behavior, University of California, Irvine, Irvine, CA 92697-4550, USA.

出版信息

Neurobiol Learn Mem. 2015 Feb;118:178-88. doi: 10.1016/j.nlm.2014.12.007. Epub 2014 Dec 27.

Abstract

Fetal nicotine exposure from smoking during pregnancy causes long-lasting cognitive impairments in offspring, yet little is known about the mechanisms that underlie this effect. Here we demonstrate that early postnatal exposure of mouse pups to nicotine via maternal milk impairs long-term, but not short-term, hippocampus-dependent memory during adolescence. At the Schaffer collateral (SC) pathway, the most widely studied synapses for a cellular correlate of hippocampus-dependent memory, the induction of N-methyl-D-aspartate receptor-dependent transient long-term potentiation (LTP) and protein synthesis-dependent long-lasting LTP are not diminished by nicotine exposure, but rather unexpectedly the threshold for LTP induction becomes lower after nicotine treatment. Using voltage sensitive dye to visualize hippocampal activity, we found that early postnatal nicotine exposure also results in enhanced CA1 depolarization and hyperpolarization after SC stimulation. Furthermore, we show that postnatal nicotine exposure induces pervasive changes to the nicotinic modulation of CA1 activity: activation of nicotinic receptors no longer increases CA1 network depolarization, acute nicotine inhibits rather than facilitates the induction of LTP at the SC pathway by recruiting an additional nicotinic receptor subtype, and acute nicotine no longer blocks LTP induction at the temporoammonic pathway. These findings reflect the pervasive impact of nicotine exposure during hippocampal development, and demonstrate an association of hippocampal memory impairments with altered nicotinic cholinergic modulation of LTP, but not impaired LTP. The implication of our results is that nicotinic cholinergic-dependent plasticity is required for long-term memory formation and that postnatal nicotine exposure disrupts this form of plasticity.

摘要

孕期吸烟导致胎儿暴露于尼古丁会使后代出现长期的认知障碍,但对于这种影响背后的机制却知之甚少。在此,我们证明,出生后早期通过母乳使幼鼠暴露于尼古丁会损害青春期小鼠依赖海马体的长期记忆,但不影响短期记忆。在海马体依赖记忆的细胞关联中研究最为广泛的突触——谢弗侧支(SC)通路,尼古丁暴露并未减弱N-甲基-D-天冬氨酸受体依赖性短暂性长期增强(LTP)和蛋白质合成依赖性持久性LTP的诱导,反而出乎意料的是,尼古丁处理后LTP诱导的阈值变得更低。使用电压敏感染料可视化海马体活动,我们发现出生后早期尼古丁暴露还会导致SC刺激后CA1区去极化和超极化增强。此外,我们表明出生后尼古丁暴露会引起CA1区活动的烟碱调制发生广泛变化:烟碱受体激活不再增加CA1网络去极化,急性尼古丁通过募集额外的烟碱受体亚型抑制而非促进SC通路LTP的诱导,并且急性尼古丁不再阻断颞叶-海马通路LTP的诱导。这些发现反映了海马体发育期间尼古丁暴露的广泛影响,并证明海马体记忆障碍与LTP的烟碱胆碱能调制改变有关,而非LTP受损。我们结果的意义在于,烟碱胆碱能依赖性可塑性是长期记忆形成所必需的,并且出生后尼古丁暴露会破坏这种可塑性形式。

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