Developmental trajectory and sex differences in auditory processing in a PTEN-deletion model of autism spectrum disorders

IF 5.1 2区 医学 Q1 NEUROSCIENCES Neurobiology of Disease Pub Date : 2024-08-05 DOI:10.1016/j.nbd.2024.106628
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Abstract

Autism Spectrum Disorders (ASD) encompass a wide array of debilitating symptoms, including severe sensory deficits and abnormal language development. Sensory deficits early in development may lead to broader symptomatology in adolescents and adults. The mechanistic links between ASD risk genes, sensory processing and language impairment are unclear. There is also a sex bias in ASD diagnosis and symptomatology. The current study aims to identify the developmental trajectory and genotype- and sex-dependent differences in auditory sensitivity and temporal processing in a Pten-deletion (phosphatase and tensin homolog missing on chromosome 10) mouse model of ASD. Auditory temporal processing is crucial for speech recognition and language development and deficits will cause language impairments. However, very little is known about the development of temporal processing in ASD animal models, and if there are sex differences. To address this major gap, we recorded epidural electroencephalography (EEG) signals from the frontal (FC) and auditory (AC) cortex in developing and adult Nse-cre PTEN mice, in which Pten is deleted in specific cortical layers (layers III-V) (PTEN conditional knock-out (cKO). We quantified resting EEG spectral power distribution, auditory event related potentials (ERP) and temporal processing from awake and freely moving male and female mice. Temporal processing is measured using a gap-in-noise-ASSR (auditory steady state response) stimulus paradigm. The experimental manipulation of gap duration and modulation depth allows us to measure cortical entrainment to rapid gaps in sounds. Temporal processing was quantified using inter-trial phase clustering (ITPC) values that account for phase consistency across trials. The results show genotype differences in resting power distribution in PTEN cKO mice throughout development. Male and female cKO mice have significantly increased beta power but decreased high frequency oscillations in the AC and FC. Both male and female PTEN cKO mice show diminished ITPC in their gap-ASSR responses in the AC and FC compared to control mice. Overall, deficits become more prominent in adult (p60) mice, with cKO mice having significantly increased sound evoked power and decreased ITPC compared to controls. While both male and female cKO mice demonstrated severe temporal processing deficits across development, female cKO mice showed increased hypersensitivity compared to males, reflected as increased N1 and P2 amplitudes. These data identify a number of novel sensory processing deficits in a PTEN-ASD mouse model that are present from an early age. Abnormal temporal processing and hypersensitive responses may contribute to abnormal development of language function in ASD.

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自闭症谱系障碍PTEN缺失模型听觉处理的发育轨迹和性别差异。
自闭症谱系障碍(ASD)包含一系列使人衰弱的症状,包括严重的感官障碍和语言发育异常。发育早期的感官缺陷可能会导致青少年和成人出现更广泛的症状。目前尚不清楚 ASD 风险基因、感觉处理和语言障碍之间的机理联系。在 ASD 诊断和症状方面也存在性别偏见。目前的研究旨在确定Pten缺失(10号染色体上缺失的磷酸酶和天丝蛋白同源物)小鼠ASD模型在听觉敏感性和时间处理方面的发育轨迹以及基因型和性别依赖性差异。听觉时间处理对语音识别和语言发育至关重要,其缺陷将导致语言障碍。然而,人们对 ASD 动物模型的时间处理发育以及是否存在性别差异知之甚少。为了填补这一重大空白,我们记录了发育中和成年 Nse-cre PTEN 小鼠额叶(FC)和听觉(AC)皮层的硬膜外脑电图(EEG)信号。我们对清醒和自由活动的雌雄小鼠的静息脑电图频谱功率分布、听觉事件相关电位(ERP)和时间处理进行了量化。时间处理是通过噪声间隙-ASSR(听觉稳态反应)刺激范式来测量的。通过对间隙持续时间和调制深度的实验操作,我们可以测量大脑皮层对声音中快速间隙的应变。我们使用试验间相位聚类(ITPC)值对时间处理进行了量化,该值考虑了试验间相位的一致性。结果显示,PTEN cKO小鼠在整个发育过程中的静息功率分布存在基因型差异。雄性和雌性cKO小鼠的β功率显著增加,但AC和FC的高频振荡减少。与对照组小鼠相比,雄性和雌性 PTEN cKO 小鼠在 AC 和 FC 的间隙-ASSR 反应中都显示出 ITPC 的减弱。与对照组相比,cKO 小鼠的声音诱发功率显著增加,而 ITPC 则显著降低。虽然雄性和雌性 cKO 小鼠在整个发育过程中都表现出严重的时间处理缺陷,但与雄性相比,雌性 cKO 小鼠表现出更高的超敏性,这反映在 N1 和 P2 振幅的增加上。这些数据发现了PTEN-ASD小鼠模型中一些新的感觉处理缺陷,这些缺陷从幼年时期就已存在。异常的时间处理和超敏反应可能会导致ASD患者的语言功能发育异常。
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来源期刊
Neurobiology of Disease
Neurobiology of Disease 医学-神经科学
CiteScore
11.20
自引率
3.30%
发文量
270
审稿时长
76 days
期刊介绍: Neurobiology of Disease is a major international journal at the interface between basic and clinical neuroscience. The journal provides a forum for the publication of top quality research papers on: molecular and cellular definitions of disease mechanisms, the neural systems and underpinning behavioral disorders, the genetics of inherited neurological and psychiatric diseases, nervous system aging, and findings relevant to the development of new therapies.
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