Department of Neuroscience, Erasmus Medical Center, Rotterdam Netherlands.
Genes Brain Behav. 2012 Apr;11(3):325-31. doi: 10.1111/j.1601-183X.2011.00763.x. Epub 2012 Jan 19.
Fragile X syndrome (FXS) is the most common inherited form of intellectual disability. Patients with FXS do not only suffer from cognitive problems, but also from abnormalities/deficits in procedural memory formation. It has been proposed that a lack of fragile X mental retardation protein (FMRP) leads to altered long-term plasticity by deregulation of various translational processes at the synapses, and that part of these impairments might be rescued by the inhibition of type I metabotropic glutamate receptors (mGluRs). We recently developed the Erasmus Ladder, which allows us to test, without any invasive approaches, simultaneously, both procedural memory formation and avoidance behavior during unperturbed and perturbed locomotion in mice. Here, we investigated the impact of a potent and selective mGluR5 inhibitor (Fenobam) on the behavior of Fmr1 KO mice during the Erasmus Ladder task. Fmr1 KO mice showed deficits in associative motor learning as well as avoidance behavior, both of which were rescued by intraperitoneal administration of Fenobam. While the Fmr1 KO mice did benefit from the treatment, control littermates suffered from a significant negative side effect in that their motor learning skills, but not their avoidance behavior, were significantly affected. On the basis of these studies in the FXS animal model, it may be worthwhile to investigate the effects of mGluR inhibitors on both the cognitive functions and procedural skills in FXS patients. However, the use of mGluR inhibitors appears to be strongly contraindicated in healthy controls or non-FXS patients with intellectual disability.
脆性 X 综合征 (FXS) 是最常见的遗传性智力障碍形式。FXS 患者不仅患有认知问题,而且在程序性记忆形成方面也存在异常/缺陷。据推测,由于突触处各种翻译过程的失调,导致脆性 X 智力迟钝蛋白 (FMRP) 的缺乏,从而导致长期可塑性改变,而这些损伤的一部分可能通过抑制 I 型代谢型谷氨酸受体 (mGluRs) 得到挽救。我们最近开发了 Erasmus Ladder,可以在不进行任何侵入性方法的情况下,同时测试小鼠在不受干扰和受干扰的运动过程中程序性记忆形成和回避行为。在这里,我们研究了一种有效的选择性 mGluR5 抑制剂 (Fenobam) 对 Erasmus Ladder 任务中 Fmr1 KO 小鼠行为的影响。Fmr1 KO 小鼠在联想运动学习和回避行为方面都存在缺陷,而 Fenobam 的腹腔给药可挽救这些缺陷。虽然 Fmr1 KO 小鼠确实受益于治疗,但对照同窝仔鼠则出现了明显的副作用,即它们的运动学习技能受到了显著影响,但回避行为不受影响。基于 FXS 动物模型中的这些研究,研究 mGluR 抑制剂对 FXS 患者的认知功能和程序性技能的影响可能是值得的。然而,mGluR 抑制剂的使用在健康对照或非 FXS 智力障碍患者中似乎是强烈禁忌的。