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Dendritic complexity in prefrontal cortex and hippocampus of the autistic-like mice C58/J

机译:在预逆转性皮层和自闭症小鼠的海马中的树突复杂性C58 / j

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摘要

Autism spectrum disorder (ASD) has been associated to atypical neuronal connectivity in the prefrontal cortex (PFC) and the hippocampus, in part, due to an alteration in neuroplasticity processes such as dendritic remodeling. Moreover, it has been proposed that abnormal cytoskeletal dynamics might be underlying the disrupted formation and morphology of dendrites in the ASD brain. Hence, we performed an analysis of the complexity of dendritic arborization of the pyramidal neurons localized in the layer of the PFC and the CA1 region of the hippocampus in the autistic-like mouse strain C58/J, which has previously demonstrated neuronal cytoskeleton anomalies. We found differences in length, number and branching pattern of dendrites of the pyramidal neurons from both structures of C58/J strain. These data suggest a lower dendritic arborization complexity that could be involved with the characteristic autistic-like behaviors displayed in C58/J mice.
机译:自闭症谱系障碍(ASD)与前额叶皮质(PFC)和海马的非典型神经元连通性有关,部分原因是由于神经塑性过程如树突状重塑的改变。 此外,已经提出了异常的细胞骨骼动力学可能是ASD大脑中破碎的形成和形态的依赖性。 因此,我们在自闭症的小鼠菌株C58 / j中对PFC层和海马CA1区的锥形神经元的复杂性进行了分析,该宫内节育脉C58 / j在先前显示了神经元细胞骨架异常。 我们发现金字塔神经元的长度,数量和分支模式的差异来自C58 / J株的结构。 这些数据表明,可以参与C58 / J小鼠中显示的特征自闭症行为的较低的树突树突族族族复杂性。

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