Department of Medical Physiology, Iran University of Medical Sciences, Tehran, Iran.
Student Research Committee, Iran University of Medical Science, Tehran, Iran.
Metab Brain Dis. 2021 Feb;36(2):327-337. doi: 10.1007/s11011-020-00643-x. Epub 2020 Nov 21.
Lithium chloride clinically used to treat mental diseases but it has some side effects like cognitive impairment, memory deficit. Transcranial direct current stimulation (tDCS) is a non-invasive brain stimulation technique that is able to change neural activity and gene transcription in the brain. The aim of the study is to provide a conceptual theoretical framework based on behavioral and molecular effects of tDCS on memory changes induced by lithium in male mice. we applied Anodal-tDCS and Cathodal-tDCS over the left PFC for 3 consecutive days tDCS for 20 min with 2 mA after injection of different doses of lithium/saline.Trained in fear condition and finally the day after that tested their memory persistency factors (freezing-latency) and other behavior such as grooming and rearing percentage time in the fear conditioning. P-mTOR/mTOR was analyzed using western blotting. The results obtained from the preliminary analysis of behavioral fear memory showed that lithium had destructive effect in higher doses and decreased freezing percentage time. However, both cathodal and anodal tDCS significantly improved memory and increased P-mTOR/mTOR level in the PFC. The results of this study indicate that cathodal and anodal tDCS upon the left prefrontal increased memory and reduced lithium side effects on memory consolidation and altered expression of plasticity-associated genes in the prefrontal cortex.
氯化锂在临床上用于治疗精神疾病,但它有一些副作用,如认知障碍、记忆缺陷。经颅直流电刺激(tDCS)是一种非侵入性的脑刺激技术,能够改变大脑中的神经活动和基因转录。本研究的目的是提供一个基于 tDCS 对锂诱导的雄性小鼠记忆变化的行为和分子效应的概念性理论框架。我们在左 PFC 上应用阳极 tDCS 和阴极 tDCS,连续 3 天每天 20 分钟,电流强度为 2 mA,然后注射不同剂量的锂/盐水。在恐惧条件下进行训练,最后在那之后的一天测试他们的记忆持久性因素(冻结潜伏期)和其他行为,如在恐惧条件下梳理和饲养的百分比时间。使用 Western blot 分析 P-mTOR/mTOR。行为性恐惧记忆的初步分析结果表明,锂在较高剂量下具有破坏性作用,降低了冻结百分比时间。然而,阴极和阳极 tDCS 都显著改善了记忆,并增加了 PFC 中的 P-mTOR/mTOR 水平。这项研究的结果表明,左前额叶的阴极和阳极 tDCS 增加了记忆,减少了锂对记忆巩固的副作用,并改变了前额叶皮层中与可塑性相关的基因表达。