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首页> 外文期刊>Frontiers in Neuropharmacology >Chronic Alcohol Exposure Induces Aberrant Mitochondrial Morphology and Inhibits Respiratory Capacity in the Medial Prefrontal Cortex of Mice
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Chronic Alcohol Exposure Induces Aberrant Mitochondrial Morphology and Inhibits Respiratory Capacity in the Medial Prefrontal Cortex of Mice

机译:慢性酒精暴露诱导异常线粒体形态,抑制小鼠内侧前额叶皮质中的呼吸能力

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摘要

Alcohol use disorder (AUD) is characterized as a chronic, relapsing disease with a pattern of excessive drinking despite negative consequences to an individual’s life. Severe chronic alcohol use impairs the function of the medial prefrontal cortex (mPFC), which contributes to alcohol-induced cognitive and executive dysfunction. The mPFC contains more mitochondria compared to other cortical areas, which suggests mitochondrial damage may occur in AUD and trigger subsequent behavior change. Here, we identified morphological and functional changes in mitochondria in the mPFC in C57BL6/J mice after 8 h of withdrawal from chronic intermittent alcohol (CIA) exposure. Three-dimensional serial block-face scanning electron microscopy (SBFSEM) reconstruction revealed that CIA exposure elongated mPFC mitochondria and formed mitochondria-on-a-string (MOAS). Furthermore, alcohol significantly affected mitochondrial bioenergetics, including oxidative phosphorylation and electron transport, with inhibited aerobic respiration in mPFC mitochondria after CIA exposure. We also found decreased expression of fusion (mitofusin 2, Mfn2) and increased fission (mitochondrial fission 1 protein, Fis1) proteins in the mPFC of alcohol-treated mice. In sum, our study suggests that CIA exposure impairs mitochondrial dynamics and function in the mPFC.
机译:醇类使用障碍(AUD)的特征是慢性,尽管对个人的生命产生负面影响,但具有过度饮酒的模式。严重的慢性酒精使用损害内侧前额叶皮质(MPFC)的功能,这有助于酒精诱导的认知和行政功能障碍。与其他皮质区域相比,MPFC含有更多的线粒体,这表明在澳元和触发后续行为变化中可能发生线粒体损坏。在此,我们在慢性间歇性酒精(CIA)暴露的8小时后,在C57BL6 / J小鼠中鉴定了MPFC中MITochondria的形态学和功能变化。三维连续块面扫描电子显微镜(SBFSEM)重建揭示了CIA暴露细长的MPFC线粒体和形成的线粒体on-α-串(MOAS)。此外,酒精显着影响线粒体生物植物,包括氧化磷酸化和电子运输,在CIA暴露后MPFC线粒体中的有氧呼吸抑制。我们还发现融合(Mitofusin 2,MFN2)的表达减少,并且在醇处理的小鼠的MPFC中增加了裂变(线粒体裂变1蛋白,FIS1)蛋白。总之,我们的研究表明,CIA暴露损害MPFC中的线粒体动态和功能。

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