Chapp Andrew D, Nwakama Chinonso A, Mermelstein Paul G, Thomas Mark J
bioRxiv. 2023 May 5:2023.05.05.539592. doi: 10.1101/2023.05.05.539592.
Recent studies have implicated the ethanol metabolite, acetic acid, as neuroactive, perhaps even more so than ethanol itself. In this study, we investigated sex-specific metabolism of ethanol (1, 2, and 4g/kg) to acetic acid to guide electrophysiology experiments in the accumbens shell (NAcSh), a key node in the mammalian reward circuit. There was a sex-dependent difference in serum acetate production, quantified via ion chromatography only at the lowest dose of ethanol (males>females). electrophysiology recordings of NAcSh neurons in brain slices demonstrated that physiological concentrations of acetic acid (2 mM and 4 mM) increased NAcSh neuronal excitability in both sexes. -methyl- -aspartate receptor (NMDAR) antagonists, AP5, and memantine robustly attenuated the acetic acid-induced increase in excitability. Acetic acid-induced NMDAR-dependent inward currents were greater in females compared to males. These findings suggest a novel NMDAR-dependent mechanism by which the ethanol metabolite, acetic acid, may influence neurophysiological effects in a key reward circuit in the brain.
最近的研究表明,乙醇代谢产物乙酸具有神经活性,其神经活性甚至可能比乙醇本身更强。在本研究中,我们研究了乙醇(1、2和4克/千克)向乙酸的性别特异性代谢,以指导对伏隔核壳(NAcSh)进行电生理实验,伏隔核壳是哺乳动物奖赏回路中的一个关键节点。血清乙酸盐生成存在性别差异,仅在最低剂量乙醇(雄性>雌性)时通过离子色谱法进行定量。脑片伏隔核壳神经元的电生理记录表明,生理浓度的乙酸(2毫摩尔和4毫摩尔)可增加两性伏隔核壳神经元的兴奋性。N-甲基-D-天冬氨酸受体(NMDAR)拮抗剂AP5和美金刚强烈减弱了乙酸诱导的兴奋性增加。与雄性相比,乙酸诱导的依赖NMDAR的内向电流在雌性中更大。这些发现提示了一种新的依赖NMDAR的机制,通过该机制乙醇代谢产物乙酸可能影响大脑关键奖赏回路中的神经生理效应。