首页> 外文期刊>Genes, brain, and behavior >Male and female Fmr1 knockout mice on C57 albino background exhibit spatial learning and memory impairments.
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Male and female Fmr1 knockout mice on C57 albino background exhibit spatial learning and memory impairments.

机译:C57白化病背景上的雄性和雌性Fmr1基因敲除小鼠表现出空间学习和记忆障碍。

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Impaired spatial learning is a prominent deficit in fragile X syndrome (FXS). Previous studies using the Fmr1 knockout (KO) mouse model of FXS have not consistently reported a deficit in spatial learning. Fmr1 KO mice bred onto an albino C57BL/6J-Tyr(c-Brd) background showed significant deficits in several primary measures of performance during place navigation and probe trials in the Morris water maze. Fmr1 KO mice were also impaired during a serial reversal version of the water maze task. We examined fear conditioning as an additional cognitive screen. Knockout mice exhibited contextual memory deficits when trained with unsignaled shocks; however, deficits were not found in a separate group of KO mice trained with signaled shocks. No potentially confounding genotypic differences in locomotor activity were observed. A decreased anxiety-like profile was apparent in the open field, as others have noted, and also in the platform test. Also as previously reported, startle reactivity to loud auditory stimuli was decreased, prepulse inhibition and social interaction increased in KO mice. Female Fmr1 KO mice were tested along with male KO mice in all assays, except for social interaction. The female and male KO exhibited very similar impairments indicating that sex does not generally drive the behavioral symptoms of the disorder. Our results suggest that procedural factors, such as the use of albino mice, may help to reliably detect spatial learning and memory impairments in both sexes of Fmr1 KO mice, making it more useful for understanding FXS and a platform for evaluating potential therapeutics.
机译:空间学习受损是脆弱X综合征(FXS)的显着缺陷。以前使用FXS的Fmr1基因敲除(KO)小鼠模型进行的研究并未一致地报道空间学习方面的缺陷。在白化病C57BL / 6J-Tyr(c-Brd)背景上繁殖的Fmr1 KO小鼠在莫里斯水迷宫中的位置导航和探针试验期间,在几个主要的性能指标中显示出明显的缺陷。 Fmr1 KO小鼠在水迷宫任务的系列逆转版本中也受到了损害。我们将恐惧条件作为一种额外的认知筛查方法进行了研究。当用无信号的电击训练时,基因敲除小鼠表现出上下文记忆缺陷。然而,在另一组受信号冲击训练的KO小鼠中未发现缺陷。在运动活动中未观察到潜在的混淆基因型差异。正如其他人所指出的,在露天领域,以及在平台测试中,类似焦虑的情绪明显降低。同样如先前报道,KO小鼠对大声听觉刺激的惊吓反应性降低,搏动抑制和社交互动增加。除社交互动外,在所有测定中均对雌性Fmr1 KO小鼠和雄性KO小鼠进行了测试。女性和男性KO表现出非常相似的损伤,表明性别通常不会导致该疾病的行为症状。我们的研究结果表明,使用白化病小鼠等程序性因素可能有助于可靠地检测Fmr1 KO小鼠两性中的空间学习和记忆障碍,从而使它对于理解FXS和评估潜在疗法的平台更加有用。

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