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首页> 外文期刊>Pharmacology, Biochemistry and Behavior >Vitamin C deficiency increases basal exploratory activity but decreases scopolamine-induced activity in APP/PSEN1 transgenic mice.
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Vitamin C deficiency increases basal exploratory activity but decreases scopolamine-induced activity in APP/PSEN1 transgenic mice.

机译:维生素C缺乏会增加基础探索活性,但会降低东pol碱诱导的APP / PSEN1转基因小鼠的活性。

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摘要

Vitamin C is a powerful antioxidant and its levels are decreased in Alzheimer's patients. Even sub-clinical vitamin C deficiency could impact disease development. To investigate this principle we crossed APP/PSEN1 transgenic mice with Gulo knockout mice unable to synthesize their own vitamin C. Experimental mice were maintained from 6 weeks of age on standard (0.33 g/L) or reduced (0.099 g/L) levels of vitamin C and then assessed for changes in behavior and neuropathology. APP/PSEN1 mice showed impaired spatial learning in the Barnes maze and water maze that was not further impacted by vitamin C level. However, long-term decreased vitamin C levels led to hyperactivity in transgenic mice, with altered locomotor habituation and increased omission errors in the Barnes maze. Decreased vitamin C also led to increased oxidative stress. Transgenic mice were more susceptible to the activity-enhancing effects of scopolamine and low vitamin C attenuated these effects in both genotypes. These data indicate an interaction between the cholinergic system and vitamin C that could be important given the cholinergic degeneration associated with Alzheimer's disease.
机译:维生素C是一种强大的抗氧化剂,在阿尔茨海默氏病患者中其含量会降低。甚至亚临床维生素C缺乏症也可能影响疾病发展。为研究这一原理,我们将APP / PSEN1转基因小鼠与无法合成自己的维生素C的Gulo基因敲除小鼠杂交。实验小鼠从6周龄开始维持标准(0.33 g / L)或降低(0.099 g / L)的维生素C水平。然后评估维生素C的行为和神经病理学变化。 APP / PSEN1小鼠在Barnes迷宫和水迷宫中显示出空间学习受损,并且不受维生素C水平的进一步影响。但是,长期降低的维生素C水平会导致转基因小鼠活动过度,并改变运动习惯并在Barnes迷宫中增加遗漏错误。维生素C减少也会导致氧化应激增加。转基因小鼠对东pol碱的活性增强作用更敏感,而低维生素C减弱了这两种基因型的这些作用。这些数据表明,胆碱能系统与维生素C之间的相互作用对于与阿尔茨海默氏病相关的胆碱能退行性变可能很重要。

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