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雄性和雌性BTBR自闭症模型小鼠在小脑依赖学习和小脑形态方面存在缺陷。

Deficits in cerebellum-dependent learning and cerebellar morphology in male and female BTBR autism model mice.

作者信息

Kiffmeyer Elizabeth A, Cosgrove Jameson A, Siganos Jenna K, Bien Heidi E, Vipond Jade E, Vogt Karisa R, Kloth Alexander D

机构信息

Department of Biology, Augustana University, Sioux Falls, SD, USA 57197.

出版信息

NeuroSci. 2022 Dec;3(4):624-644. doi: 10.3390/neurosci3040045. Epub 2022 Nov 9.

Abstract

Recently, there has been increased interest in the role of the cerebellum in autism spectrum disorders (ASD). To better understand the pathophysiological role of the cerebellum in ASD, it is necessary to have a variety of mouse models that have face validity for cerebellar disruption in humans. Here, we add to the literature on the cerebellum transgenic and induced mouse models of autism with the characterization of the cerebellum in the BTBR T+Itpr3/J (BTBR) inbred mouse strain, which has behavioral phenotypes that are suggestive of ASD in patients. When we examined both male and female BTBR mice in comparison to C57BL/6J (C57) controls, we noted that both sexes of BTBR mice showed motor coordination deficits characteristic of cerebellar dysfunction, but only the male mice showed differences in delay eyeblink conditioning, a cerebellum-dependent learning task that is also disrupted in ASD patients. Both male and female BTBR mice showed considerable expansion of and abnormal foliation in the cerebellum vermis--including significant expansion of specific lobules in the anterior cerebellum. In addition, we found a slight but significant decrease in Purkinje cell density in both male and female BTBR mice, irrespective of lobule. Furthermore, there was a marked reduction of Purkinje cell dendritic spines density in both male and female BTBR mice. These findings suggest that, for the most part, the BTBR mouse model successfully phenocopies many of the characteristics of the subpopulation of ASD patients that have a hypertrophic cerebellum. We discuss the significance of strain differences in the cerebellum as well as the importance of this first effort to identify both concordances and difference between male and female BTBR mice with regard to the cerebellum.

摘要

最近,小脑在自闭症谱系障碍(ASD)中的作用受到了越来越多的关注。为了更好地理解小脑在ASD中的病理生理作用,有必要建立多种对人类小脑功能破坏具有表面效度的小鼠模型。在此,我们通过对BTBR T+Itpr3/J(BTBR)近交系小鼠品系的小脑特征进行描述,为有关小脑转基因和诱导性自闭症小鼠模型的文献增添了内容,该品系具有提示人类ASD患者的行为表型。当我们将雄性和雌性BTBR小鼠与C57BL/6J(C57)对照小鼠进行比较时,我们注意到BTBR小鼠的两性均表现出小脑功能障碍特有的运动协调缺陷,但只有雄性小鼠在延迟眨眼条件反射方面存在差异,这是一项依赖小脑的学习任务,在ASD患者中也会受到破坏。雄性和雌性BTBR小鼠的小脑蚓部均出现了明显的扩大和异常叶化——包括前小脑特定小叶的显著扩大。此外,我们发现雄性和雌性BTBR小鼠的浦肯野细胞密度均有轻微但显著的降低,且与小叶无关。此外,雄性和雌性BTBR小鼠的浦肯野细胞树突棘密度均显著降低。这些发现表明,在很大程度上,BTBR小鼠模型成功地模拟了具有肥厚小脑的ASD患者亚群的许多特征。我们讨论了小脑品系差异的意义,以及首次尝试识别雄性和雌性BTBR小鼠在小脑方面的一致性和差异的重要性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2b1b/11523751/d450bc84edff/neurosci-03-00045-g001.jpg

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