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nockdown of Nurr1 in the rat hippocampus: Implications to spatial discrimination learning and memory

机译:大鼠海马中Nurr1的敲低:对空间歧视学习和记忆的影响

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Nurr1 expression is up-regulated in the brain following associative learning experiences, but its relevance to cognitive processes remains unclear. In these studies, rats initially received bilateral hippocampal infusions of control or antisense oligodeoxynucleotides (ODNs) 1 h prior to training in a holeboard spatial discrimination task. Such pre-training infusions of nurr1 antisense ODNs caused a moderate effect in learning the task and also impaired LTM tested 7 d later. In a second experiment, ODN infusions were given immediately after the animals had received two sessions of training, during which all animals showed normal learning. Although antisense treated rats were significantly impaired during the post-infusion stages of acquisition of the task, no group differences were observed during the LTM test given 7 d later. These animals were subjected 3 d later to reversal training in the same maze in the absence of any additional treatments. Remarkably, rats previously treated with antisense ODNs displayed perseveration: The animals were fixated with the previously learned pattern of baited holes, causing them to be significantly impaired in the extinction of acquired spatial preferences and future learning. We postulate that Nurr1 function in the hippocampus is important for normal cognitive processes.
机译:联想学习经历后,Nurr1表达在大脑中上调,但其与认知过程的相关性仍不清楚。在这些研究中,大鼠在进行孔板空间判别任务之前的1小时,最初接受了双侧海马输注的对照或反义寡脱氧核苷酸(ODN)。此类nurr1反义ODN的训练前输液在学习任务中产生了中等效果,并且还损害了7天后测试的LTM。在第二个实验中,在对动物进行两次训练后立即进行ODN输注,在此期间所有动物均表现出正常的学习能力。尽管反义治疗的大鼠在完成任务的输液后阶段明显受损,但在7天后进行的LTM测试中未观察到组间差异。在不进行任何其他处理的情况下,在相同的迷宫中对这些动物进行3天的反向训练。值得注意的是,先前用反义ODNs处理过的大鼠表现出毅力:用先前学到的诱饵孔固定动物,使它们在获得的空间偏好和未来学习的消亡中受到极大损害。我们假设海马体中的Nurr1功能对于正常的认知过程很重要。

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