Developmental Neurosciences Research Program, Alberta Children's Hospital Research Institute (ACHRI), Cumming School of Medicine, University of Calgary, Calgary, AB, Canada.
Mouse Imaging Centre (MICe), Hospital for Sick Children, Toronto, ON, Canada.
Transl Psychiatry. 2019 Oct 7;9(1):251. doi: 10.1038/s41398-019-0590-7.
Autism spectrum disorder (ASD) has been hypothesized to be a result of altered connectivity in the brain. Recent imaging studies suggest accelerated maturation of the white matter in young children with ASD, with underlying mechanisms unknown. Myelin is an integral part of the white matter and critical for connectivity; however, its role in ASD remains largely unclear. Here, we investigated myelin development in a model of idiopathic ASD, the BTBR mice. Magnetic resonance imaging revealed that fiber tracts in the frontal brain of the BTBR mice had increased volume at postnatal day 6, but the difference reduced over time, reminiscent of the findings in young patients. We further identified that myelination in the frontal brain of both male and female neonatal BTBR mice was increased, associated with elevated levels of myelin basic protein. However, myelin pattern was unaltered in adult BTBR mice, revealing accelerated developmental trajectory of myelination. Consistently, we found that signaling of platelet-derived growth factor receptor alpha (PDGFRα) was reduced in the frontal brain of neonatal BTBR mice. However, levels of microRNA species known to regulate PDGFRα signaling and myelination were unaltered. Together, these results suggest that precocious myelination could potentially contribute to increased volume and connectivity of the white matter observed in young children with ASD.
自闭症谱系障碍 (ASD) 被假设为大脑连接改变的结果。最近的影像学研究表明,自闭症谱系障碍儿童的大脑白质发育加速,但其潜在机制尚不清楚。髓鞘是白质的重要组成部分,对连接至关重要;然而,其在自闭症谱系障碍中的作用仍不清楚。在这里,我们在自闭症谱系障碍的一个模型中研究了髓鞘的发育,即 BTBR 小鼠。磁共振成像显示,BTBR 小鼠的额状大脑中的纤维束在出生后第 6 天体积增加,但随着时间的推移差异减少,这与年轻患者的发现相似。我们进一步发现,无论是雄性还是雌性新生 BTBR 小鼠的额状大脑中的髓鞘形成都增加了,与髓鞘碱性蛋白水平升高有关。然而,成年 BTBR 小鼠的髓鞘模式没有改变,揭示了髓鞘形成的加速发展轨迹。一致地,我们发现,新生 BTBR 小鼠的额状大脑中的血小板衍生生长因子受体 α (PDGFRα) 信号降低。然而,调节 PDGFRα 信号和髓鞘形成的 microRNA 种类的水平没有改变。这些结果表明,髓鞘形成的提前可能有助于增加自闭症谱系障碍儿童大脑白质的体积和连接。