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Tactile defensiveness and impaired adaptation of neuronal activity in the Fmr1 knockout mouse model of autism

机译:Fmr1基因敲除小鼠自闭症模型的触觉防御和神经元活动适应性受损

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摘要

Sensory hypersensitivity is a common symptom in autism spectrum disorders (ASDs), including Fragile X Syndrome (FXS), and frequently leads to tactile defensiveness. In mouse models of ASDs, there is mounting evidence of neuronal and circuit hyperexcitability in several brain regions, which could contribute to sensory hypersensitivity. However, it is not yet known whether or how sensory stimulation might trigger abnormal sensory processing at the circuit level or abnormal behavioral responses in ASD mouse models, especially during an early developmental time when experience-dependent plasticity shapes such circuits. Using a novel assay, we discovered exaggerated motor responses to whisker stimulation in young Fmr1 knockout (KO) mice (postnatal days (P) 14-16), a model of FXS. Adult Fmr1 KO mice actively avoided a stimulus that was innocuous to wild-type controls, a sign of tactile defensiveness. Using in vivo two-photon calcium imaging of Layer 2/3 barrel cortex neurons expressing GCaMP6s, we found no differences between wild-type and Fmr1 KO mice in overall whisker-evoked activity, though 45% fewer neurons in young Fmr1 KO mice responded in a time-locked manner. Notably, we identified a pronounced deficit in neuronal adaptation to repetitive whisker stimulation in both young and adult Fmr1 KO mice. Thus, impaired adaptation in cortical sensory circuits is a potential cause of tactile defensiveness in autism.
机译:感觉过敏是自闭症谱系障碍(ASD)的常见症状,包括脆弱X综合征(FXS),并经常导致触觉防御。在ASD的小鼠模型中,越来越多的证据表明在多个大脑区域存在神经元和电路的过度兴奋,这可能会导致感觉超敏反应。但是,尚不知道在ASD小鼠模型中,感觉刺激是否或如何触发电路水平的异常感觉处理或异常行为反应,尤其是在依赖于经验的可塑性塑造这种电路的早期发育时期。使用新颖的分析方法,我们发现了年轻的Fmr1基因敲除(KO)小鼠(产后天数(P)14-16)(FXS模型)中对晶须刺激的过度运动反应。成年Fmr1 KO小鼠积极避免了对野生型对照无害的刺激,这是触觉防御的迹象。使用表达GCaMP6s的第2/3层桶状皮质神经元的体内双光子钙成像,我们发现野生型和Fmr1 KO小鼠的晶须诱发的活性没有差异,尽管年轻的Fmr1 KO小鼠的神经元反应减少了45%。有时间限制的方式。值得注意的是,我们在年轻和成年Fmr1 KO小鼠中都发现神经元对重复晶须刺激的适应性明显不足。因此,皮层感觉回路的适应性受损是自闭症触觉防御的潜在原因。

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