Lorivel Thomas, Hilber Pascal
IFRMP 23, UPRES EA 1780, Equipe Neurobiologie de l'Apprentissage, Université de Rouen, Faculté des Sciences, 76821 Mont-Saint-Aignan Cedex, France.
Behav Brain Res. 2006 Oct 2;173(1):122-8. doi: 10.1016/j.bbr.2006.06.011. Epub 2006 Jul 24.
It is now well accepted that besides its roles in motor control, the cerebellum is involved in non-motor functions with emotional aspects. Consistent with this view, several studies highlighted that the cerebellar Lurcher mutant mice (+/Lc), with motor impairments, also exhibited altered emotional reactivity, previously interpreted in term of behavioural disinhibition. In this study, we investigated the effects of a classical anxiolytic on such disinhibition. For that, behaviours of +/Lc and control (+/+) mice injected with NaCl or chlordiazepoxide (CDP 5 and 7.5mg/kg) were evaluated in the elevated plus-maze test. The motor impact of the drug (7.5mg/kg only) was also evaluated in the hole-board and unstable platform tests. Our results showed that, compared to the +/+ mice, CDP injection greatly influenced the anxious-related behaviours in the +/Lc mice by reducing their preference to the open areas in the elevated plus-maze test. Furthermore, we found that injection of CDP at the dose of 7.5mg/kg aggravated motor coordination deficit, altered motor learning capabilities in the mutants and provoked equilibrium disturbances in the non-mutant mice in the unstable platform test. These results indicated that CDP was able to reduce behavioural disinhibition in the cerebellar +/Lc mice and were discussed in term of implication of the cerebellar connections into CDP-sensitive neural circuitries involved in both emotional and motor processes.
现在人们普遍认为,除了在运动控制中的作用外,小脑还参与具有情感方面的非运动功能。与此观点一致的是,多项研究强调,患有运动障碍的小脑Lurcher突变小鼠(+/Lc)也表现出情绪反应改变,此前被解释为行为抑制解除。在本研究中,我们研究了一种经典抗焦虑药对这种抑制解除的影响。为此,在高架十字迷宫试验中评估了注射生理盐水或氯氮卓(5和7.5mg/kg CDP)的+/Lc和对照(+/+)小鼠的行为。还在洞板试验和不稳定平台试验中评估了药物(仅7.5mg/kg)的运动影响。我们的结果表明,与+/+小鼠相比,注射CDP极大地影响了+/Lc小鼠的焦虑相关行为,在高架十字迷宫试验中降低了它们对开放区域的偏好。此外,我们发现以7.5mg/kg的剂量注射CDP会加重运动协调缺陷,改变突变小鼠的运动学习能力,并在不稳定平台试验中引发非突变小鼠的平衡障碍。这些结果表明,CDP能够减少小脑+/Lc小鼠的行为抑制解除,并根据小脑连接在涉及情绪和运动过程的CDP敏感神经回路中的作用进行了讨论。