Seung-Hee Han , Eunbi Cho , Jieun Jeon , Somin Moon , Se Jin Jeon , Dong Hyun Kim , Seung-Ho Sun
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引用次数: 0
摘要
适量摄入乙醇(EtOH)可以降低各种心血管疾病的发病率,但可能导致青春期的神经精神问题。EtOH作用于GABAA受体,减缓神经传递,导致突触功能改变。这些由EtOH引起的神经系统变化可导致短暂性记忆丧失,并可能增加患各种神经和精神疾病(如痴呆)的风险。因此,有必要制定策略来克服etoh诱导的脑功能障碍。在本研究中,我们研究了齐墩果酸(OA)对etoh诱导的记忆障碍的影响。OA阻断了n -甲基- d -天冬氨酸受体(NMDAR)的功能损伤,这是etoh诱导记忆损伤的关键机制。OA抑制了EtOH诱导的突触中NMDAR主要亚基NR2a的移除。在此基础上,OA抑制了EtOH对目标识别记忆的损害。虽然OA不能调节etoh处理小鼠的血液酒精和乙醛水平,但OA可以通过降低5α-还原酶水平来阻断etoh诱导的脑内异孕酮水平的升高。这些结果表明,OA通过调节NMDAR功能抑制etoh诱导的记忆障碍,并可调节神经类固醇系统。
A moderate amount of ethanol (EtOH) intake can lower the incidence of various cardiovascular disease but can result in neuropsychiatric issues during adolescence. EtOH acts on GABAA receptor, which can slow down neurotransmission and lead to changes in synaptic functions. These neurological changes due to EtOH can result in transient memory loss and may increase the risk of developing various neurological and psychiatric disorders such as dementia. Therefore, there is a need for strategies to overcome EtOH-induced brain dysfunctions. In this study, we investigated the effects of oleanolic acid (OA) on EtOH-induced memory impairment. OA blocked functional impairment of N-methyl-D-aspartate receptors (NMDAR), which are a key mechanism in EtOH-induced memory impairments. OA inhibited the removal of the major subunit of NMDAR, NR2a, from synapses induced by EtOH. Based on this, OA inhibited the impairment of object recognition memory caused by EtOH. Although OA failed to modulate the blood alcohol and acetaldehyde levels in EtOH-treated mice, OA blocked EtOH-induced increase in brain allopregnalone level with reducing 5α-reductase level. These results indicate that OA inhibits EtOH-induced memory impairment by regulating NMDAR function and passably modulates neurosteroid system.
期刊介绍:
Behavioural Brain Research is an international, interdisciplinary journal dedicated to the publication of articles in the field of behavioural neuroscience, broadly defined. Contributions from the entire range of disciplines that comprise the neurosciences, behavioural sciences or cognitive sciences are appropriate, as long as the goal is to delineate the neural mechanisms underlying behaviour. Thus, studies may range from neurophysiological, neuroanatomical, neurochemical or neuropharmacological analysis of brain-behaviour relations, including the use of molecular genetic or behavioural genetic approaches, to studies that involve the use of brain imaging techniques, to neuroethological studies. Reports of original research, of major methodological advances, or of novel conceptual approaches are all encouraged. The journal will also consider critical reviews on selected topics.