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Neuronal and brain morphological changes in animal models of schizophrenia

机译:精神分裂症动物模型的神经元和脑形态变化

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Schizophrenia, a severe and debilitating disorder with a high social burden, affects 1% of the adult world population. Available therapies are unable to treat all the symptoms, and result in strong side effects. For this reason, numerous animal models have been generated to elucidate the pathophysiology of this disorder. All these models present neuronal remodeling and abnormalities in spine stability. It is well known that the complexity in dendritic arborization determines the number of receptive synaptic contacts. Also the loss of dendritic spines and arbor stability are strongly associated with schizophrenia. This review evaluates changes in spine density and dendritic arborization in animal models of schizophrenia. By understanding these changes, pharmacological treatments can be designed to target specific neural systems to attenuate neuronal remodeling and associated behavioral deficits. (C) 2015 Elsevier B.V. All rights reserved.
机译:精神分裂症,严重和衰弱的紊乱具有高社会负担,影响成年世界的1%。 可用的疗法无法治疗所有症状,并导致强大的副作用。 因此,已经产生了许多动物模型来阐明这种疾病的病理生理学。 所有这些模型都存在神经元重塑和脊柱稳定性异常。 众所周知,树突族树叶中的复杂性决定了接受突触触点的数量。 此外,树突状刺的丧失和树木稳定性与精神分裂症有关。 该综述评估精神分裂症动物模型中脊柱密度和树突树突的变化。 通过理解这些变化,可以设计药理学治疗以靶向特定的神经系统以衰减神经元重塑和相关的行为缺陷。 (c)2015 Elsevier B.v.保留所有权利。

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