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Morris Water Maze Test: Optimization for Mouse Strain and Testing Environment

机译:莫里斯水迷宫测试:鼠标应变和测试环境的优化

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摘要

The Morris water maze (MWM) is a commonly used task to assess hippocampal-dependent spatial learning and memory in transgenic mouse models of disease, including neurocognitive disorders such as Alzheimer’s disease. However, the background strain of the mouse model used can have a substantial effect on the observed behavioral phenotype, with some strains exhibiting superior learning ability relative to others. To ensure differences between transgene negative and transgene positive mice can be detected, identification of a training procedure sensitive to the background strain is essential. Failure to tailor the MWM protocol to the background strain of the mouse model may lead to under- or over- training, thereby masking group differences in probe trials. Here, a MWM protocol tailored for use with the F1 FVB/N x 129S6 background is described. This is a frequently used background strain to study the age-dependent effects of mutant P301L tau (rTg(TauP301L)4510 mice) on the memory deficits associated with Alzheimer’s disease. Also described is a strategy to re-optimize, as dictated by the particular testing environment utilized.
机译:莫里斯水迷宫(MWM)是评估疾病转基因小鼠模型(包括阿尔茨海默氏病等神经认知障碍)中海马依赖性空间学习和记忆的一项常用任务。但是,所用小鼠模型的背景菌株可能会对观察到的行为表型产生实质性影响,某些菌株相对于其他菌株表现出优异的学习能力。为了确保可以检测到转基因阴性和转基因阳性小鼠之间的差异,鉴定对背景菌株敏感的训练程序至关重要。未能根据小鼠模型的背景菌株定制MWM方案可能会导致训练不足或训练过度,从而掩盖了探针试验中的组差异。在此,将介绍为F1 FVB / N x 129S6背景量身定制的MWM协议。这是经常使用的背景菌株,用于研究突变型P301L tau(rTg(TauP301L)4510小鼠)对与阿尔茨海默氏病相关的记忆缺陷的年龄依赖性作用。还描述了一种重新优化的策​​略,具体取决于所使用的特定测试环境。

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