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Validating gamma oscillations and delayed auditory responses as translational biomarkers of autism.

机译:验证伽马振荡和延迟的听觉反应作为自闭症的翻译生物标志物。

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BACKGROUND: Difficulty modeling complex behavioral phenotypes in rodents (e.g., language) has hindered pathophysiological investigation and treatment development for autism spectrum disorders. Recent human neuroimaging studies, however, have identified functional biomarkers that can be more directly related to the abnormal neural dynamics of autism spectrum disorders. This study assessed the translational potential of auditory evoked-response endophenotypes of autism in parallel mouse and human studies of autism. METHODS: Whole-cortex magnetoencephalography was recorded in 17 typically developing and 25 autistic children during auditory pure-tone presentation. Superior temporal gyrus activity was analyzed in time and frequency domains. Auditory evoked potentials were recorded in mice prenatally exposed to valproic acid (VPA) and analyzed with analogous methods. RESULTS: The VPA-exposed mice demonstrated selective behavioral alterations related to autism, including reduced social interactions and ultrasonic vocalizations, increased repetitive self-grooming, and prepulse inhibition deficits. Autistic subjects and VPA-exposed mice showed a similar 10% latency delay in the N1/M100 evoked response and a reduction in gamma frequency (30-50 Hz) phase-locking factor. Electrophysiological measures were associated with mouse behavioral deficits. In mice, gamma phase-locking factor was correlated with expression of the autism risk gene neuroligin-3 and neural deficits were modulated by the mGluR5-receptor antagonist MPEP. CONCLUSIONS: Results demonstrate a novel preclinical approach toward mechanistic understanding and treatment development for autism.
机译:背景:难以在啮齿动物中建模复杂的行为表型(例如语言)阻碍了自闭症谱系障碍的病理生理学研究和治疗发展。然而,最近的人类神经影像学研究已经确定了功能性生物标志物,其与自闭症谱系障碍的异常神经动力学更直接相关。这项研究评估了在平行小鼠和人类自闭症研究中自闭症的听觉诱发反应内表型的翻译潜力。方法:在听觉纯音表现期间,记录了17名典型发育中的儿童和25名自闭症儿童的全皮质脑磁图。在时域和频域分析了优越的颞回活动。在产前暴露于丙戊酸(VPA)的小鼠中记录了听觉诱发电位,并用类似方法进行了分析。结果:暴露于VPA的小鼠表现出与自闭症相关的选择性行为改变,包括减少的社交互动和超声波发声,重复的自我修饰增加以及脉冲前抑制缺陷。自闭症受试者和暴露于VPA的小鼠在N1 / M100诱发的反应中表现出相似的10%潜伏期延迟,并且伽马频率(30-50 Hz)锁相因子降低。电生理指标与小鼠行为缺陷有关。在小鼠中,γ锁相因子与自闭症风险基因Neuroligin-3的表达相关,而神经缺损则由mGluR5受体拮抗剂MPEP调节。结论:结果证明了对自闭症的机械理解和治疗发展的新的临床前方法。

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