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单基因敲除小鼠社交行为障碍模型:自闭症的相关影响。

Monogenic mouse models of social dysfunction: implications for autism.

机构信息

CNR, Cell Biology and Neurobiology Institute, Rome, Italy; IRCCS, Santa Lucia Foundation, Rome, Italy.

出版信息

Behav Brain Res. 2013 Aug 15;251:75-84. doi: 10.1016/j.bbr.2013.01.002. Epub 2013 Jan 14.

Abstract

Autism is a pervasive disorder characterized by a complex symptomatology, based principally on social dysfunction. The disorder has a highly complex, largely genetic etiology, involving an impressive variety of genes, the precise contributions of which still remain to be determined. For this reason, a reductionist approach to the study of autism has been proposed, employing monogenic animal models of social dysfunction, either by targeting a candidate gene, or by mimicking a single-gene disorder characterized by autistic symptoms. In the present review, we discuss this monogenic approach by comparing examples of each strategy: the mu opioid receptor knock-out (KO) mouse line, which targets the opioid system (known to be involved in the control of social behaviors); and the Fmr1-KO mouse, a model for Fragile X syndrome (a neurodevelopmental syndrome that includes autistic symptoms). The autistic-relevant behavioral phenotypes of the mu-opioid and Fmr1-KO mouse lines are described here, summarizing previous work by our research group and others, but also providing novel experimental evidence. Relevant factors influencing the validity of the two models, such as sex differences and age at testing, are also addressed, permitting an extensive evaluation of the advantages and limits of monogenic mouse models for autism.

摘要

自闭症是一种普遍存在的障碍,其特征是表现出复杂的症状,主要表现为社交功能障碍。该障碍具有高度复杂的遗传病因,涉及多种基因,这些基因的确切贡献仍有待确定。因此,人们提出了一种还原主义的自闭症研究方法,即利用具有社交功能障碍的单基因动物模型,要么针对候选基因,要么模拟具有自闭症症状的单基因疾病。在本综述中,我们通过比较这两种策略的例子来讨论这种单基因方法:针对阿片受体的 μ 敲除 (KO) 小鼠系,该基因参与阿片系统(已知参与控制社交行为);以及脆性 X 综合征的 Fmr1-KO 小鼠模型(一种包括自闭症症状的神经发育综合征)。本文描述了 μ 阿片受体和 Fmr1-KO 小鼠系的与自闭症相关的行为表型,总结了我们研究小组和其他小组的先前工作,但也提供了新的实验证据。还讨论了影响这两个模型有效性的相关因素,如性别差异和测试年龄,从而对自闭症的单基因小鼠模型的优缺点进行了广泛评估。

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