Berzhanskaya Julia, Phillips Marnie A, Shen Jing, Colonnese Matthew T
College of Mechanical and Electronic Engineering, Northwest A&F University, Washington, DC 20052, United States.
Sci Rep. 2016 Jul 28;6:30769. doi: 10.1038/srep30769.
Fragile X syndrome (FXS) is characterized by sensory hyper-sensitivity, and animal models suggest that neuronal hyper-excitability contributes to this phenotype. To understand how sensory dysfunction develops in FXS, we used the rat model (FMR-KO) to quantify the maturation of cortical visual responses from the onset of responsiveness prior to eye-opening, through age equivalents of human juveniles. Rather than hyper-excitability, visual responses before eye-opening had reduced spike rates and an absence of early gamma oscillations, a marker for normal thalamic function at this age. Despite early hypo-excitability, the developmental trajectory of visual responses in FMR-KO rats was normal, and showed the expected loss of visually evoked bursting at the same age as wild-type, two days before eye-opening. At later ages, during the third and fourth post-natal weeks, signs of mild hyper-excitability emerged. These included an increase in the visually-evoked firing of regular spiking, presumptive excitatory, neurons, and a reduced firing of fast-spiking, presumptive inhibitory, neurons. Our results show that early network changes in the FMR-KO rat arise at ages equivalent to fetal humans and have consequences for excitability that are opposite those found in adults. This suggests identification and treatment should begin early, and be tailored in an age-appropriate manner.
脆性X综合征(FXS)的特征是感觉过敏,动物模型表明神经元过度兴奋导致了这种表型。为了了解FXS中感觉功能障碍是如何发展的,我们使用大鼠模型(FMR-KO)来量化从睁眼之前的反应开始到相当于人类青少年年龄阶段的皮质视觉反应的成熟过程。睁眼之前的视觉反应并非过度兴奋,而是峰值速率降低,并且缺乏早期γ振荡,而早期γ振荡是这个年龄段正常丘脑功能的一个标志。尽管早期存在兴奋性不足,但FMR-KO大鼠视觉反应的发育轨迹是正常的,并且在与野生型相同的年龄(睁眼前两天)出现了预期的视觉诱发爆发消失。在出生后的第三和第四周等较晚年龄段,出现了轻度过度兴奋的迹象。这些迹象包括正常发放的、推测为兴奋性的神经元的视觉诱发放电增加,以及快速发放的、推测为抑制性的神经元的放电减少。我们的结果表明,FMR-KO大鼠早期的网络变化出现在相当于人类胎儿的年龄阶段,并且对兴奋性产生的影响与在成体中发现的相反。这表明识别和治疗应尽早开始,并应根据年龄进行适当调整。