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首页> 外文期刊>Neuroscience Letters: An International Multidisciplinary Journal Devoted to the Rapid Publication of Basic Research in the Brain Sciences >Chronic nicotine exposure inhibits estrogen-mediated synaptic functions in hippocampus of female rats
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Chronic nicotine exposure inhibits estrogen-mediated synaptic functions in hippocampus of female rats

机译:慢性尼古丁暴露抑制雌性大鼠海马中雌激素介导的突触功能

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摘要

Nicotine, the addictive agent in cigarettes, reduces circulating estradiol-17β (E 2) and inhibits E 2-mediated intracellular signaling in hippocampus of female rats. In hippocampus, E 2-signaling regulates synaptic plasticity by phosphorylation of the N-methyl-d-aspartic acid receptor subunit NR2B and cyclic-AMP response element binding protein (pCREB). Therefore, we hypothesized that chronic nicotine exposure induces synaptic dysfunction in hippocampus of female rats. Female rats were exposed to nicotine or saline for 16days followed by electrophysiological analysis of hippocampus. Briefly, population measurements of excitatory post-synaptic field potentials (fEPSPs) were recorded from stratum radiatum of the CA1 hippocampal slice subfield. A strict software-controlled protocol was used which recorded 30min of baseline data (stimulation rate of 1/min), a paired-pulse stimulation sequence followed by tetanic stimulation, and 1h of post-tetanus recording. EPSP amplitude and the initial EPSP slope were measured off-line. We then investigated by Western blot analysis the effects of nicotine on hippocampal estrogen receptor-beta (ER-β), NR2B and pCREB. The results demonstrated significantly decreased post-tetanic potentiation and paired-pulse facilitation at the 40, and 80ms interval in nicotine-exposed rats compared to the saline group. Western blot analysis revealed that nicotine decreased protein levels of ER-β, NR2B, and pCREB. We also confirmed the role of E 2 in regulating NR2B and pCREB phosphorylation by performing Western blots in hippocapmal tissue obtained from E 2-treated ovariectomized rats. In conclusion, chronic nicotine exposure attenuates short-term synaptic plasticity, and the observed synaptic defects might be a consequence of loss of estradiol-17β-signaling. However, determining the exact molecular mechanisms of chronic nicotine exposure on synaptic plasticity specific to the female brain require further investigation.
机译:香烟中的成瘾剂尼古丁可降低雌性大鼠海马中的循环雌二醇17β(E 2)并抑制E 2介导的细胞内信号传导。在海马中,E 2信号通过N-甲基-d-天冬氨酸受体亚基NR2B和环状AMP反应元件结合蛋白(pCREB)的磷酸化来调节突触可塑性。因此,我们假设慢性尼古丁暴露会诱发雌性大鼠海马中的突触功能障碍。将雌性大鼠暴露于尼古丁或生理盐水中16天,然后对海马进行电生理分析。简而言之,从CA1海马切片子场的放射状层记录了兴奋性突触后场电位(fEPSPs)的总体测量结果。使用了严格的软件控制协议,该协议记录了30分钟的基线数据(刺激速率为1 / min),成对脉冲刺激序列后进行强直性刺激以及破伤风后1h记录。离线测量EPSP振幅和初始EPSP斜率。然后,我们通过蛋白质印迹分析研究了尼古丁对海马雌激素受体β(ER-β),NR2B和pCREB的影响。结果表明,与盐水组相比,暴露于尼古丁的大鼠在40ms和80ms间隔后,强直性强直作用和成对脉冲促进作用明显降低。蛋白质印迹分析表明,尼古丁降低了ER-β,NR2B和pCREB的蛋白质水平。我们还证实了E 2在通过从经E 2处理的去卵巢大鼠中获得的海毛细胞组织中进行蛋白质印迹,在调节NR2B和pCREB磷酸化中的作用。总之,慢性尼古丁暴露会减弱短期的突触可塑性,并且所观察到的突触缺陷可能是雌二醇-17β信号丢失的结果。然而,确定慢性尼古丁暴露对女性大脑突触可塑性的确切分子机制尚需进一步研究。

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