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触体感觉皮层过度连接和 Cntnap2 小鼠依赖于胡须的反应受损。

Somatosensory cortex hyperconnectivity and impaired whisker-dependent responses in Cntnap2 mice.

机构信息

Center for Mind/Brain Sciences - CIMeC, University of Trento, Piazza della Manifattura 1, 38068 Rovereto, TN, Italy.

Functional Neuroimaging Laboratory, Center for Neuroscience and Cognitive Systems, Istituto Italiano di Tecnologia, Corso Bettini 31, 38068 Rovereto, Italy.

出版信息

Neurobiol Dis. 2022 Jul;169:105742. doi: 10.1016/j.nbd.2022.105742. Epub 2022 Apr 26.

Abstract

Sensory abnormalities are a common feature in autism spectrum disorders (ASDs). Tactile responsiveness is altered in autistic individuals, with hypo-responsiveness being associated with the severity of ASD core symptoms. Similarly, sensory abnormalities have been described in mice lacking ASD-associated genes. Loss-of-function mutations in CNTNAP2 result in cortical dysplasia-focal epilepsy syndrome (CDFE) and autism. Likewise, Cntnap2 mice show epilepsy and deficits relevant with core symptoms of human ASDs, and are considered a reliable model to study ASDs. Altered synaptic transmission and synchronicity found in the cerebral cortex of Cntnap2 mice would suggest a network dysfunction. Here, we investigated the neural substrates of whisker-dependent responses in Cntnap2 and Cntnap2 adult mice. When compared to controls, Cntnap2 mice showed focal hyper-connectivity within the primary somatosensory cortex (S1), in the absence of altered connectivity between S1 and other somatosensory areas. This data suggests the presence of impaired somatosensory processing in these mutants. Accordingly, Cntnap2 mice displayed impaired whisker-dependent discrimination in the textured novel object recognition test (tNORT) and increased c-fos mRNA induction within S1 following whisker stimulation. S1 functional hyperconnectivity might underlie the aberrant whisker-dependent responses observed in Cntnap2 mice, indicating that Cntnap2 mice are a reliable model to investigate sensory abnormalities that characterize ASDs.

摘要

感觉异常是自闭症谱系障碍(ASD)的一个常见特征。自闭症个体的触觉反应改变,低反应性与 ASD 核心症状的严重程度相关。同样,在缺乏与 ASD 相关基因的小鼠中也描述了感觉异常。CNTNAP2 的功能丧失性突变导致皮质发育不良-局灶性癫痫综合征(CDFE)和自闭症。同样,Cntnap2 小鼠表现出癫痫和与人类 ASD 核心症状相关的缺陷,被认为是研究 ASD 的可靠模型。在 Cntnap2 小鼠大脑皮层中发现的突触传递和同步改变表明存在网络功能障碍。在这里,我们研究了 Cntnap2 和 Cntnap2 成年小鼠中胡须依赖性反应的神经基质。与对照组相比,Cntnap2 小鼠在初级体感皮层(S1)内显示出焦点超连接,而 S1 与其他体感区域之间的连接没有改变。这些数据表明这些突变体存在感觉处理受损。因此,Cntnap2 小鼠在纹理新颖物体识别测试(tNORT)中表现出受损的胡须依赖性辨别能力,并且在胡须刺激后 S1 内的 c-fos mRNA 诱导增加。S1 的功能超连接可能是 Cntnap2 小鼠观察到的异常胡须依赖性反应的基础,表明 Cntnap2 小鼠是研究表征 ASD 的感觉异常的可靠模型。

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