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感觉运动皮层 II/III 层少突胶质细胞发育紊乱导致新生大鼠脑白质损伤模型的运动协调功能障碍。

Disorganization of Oligodendrocyte Development in the Layer II/III of the Sensorimotor Cortex Causes Motor Coordination Dysfunction in a Model of White Matter Injury in Neonatal Rats.

机构信息

Departments of Neurophysiology and Brain Science, Nagoya City University Graduate School of Medical Sciences, 1 Kawasumi, Mizuho-cho, Mizuho-ku, Nagoya, 467-8601, Japan.

Departments of Obstetrics and Gynecology, Nagoya City University Graduate School of Medical Sciences, 1 Kawasumi, Mizuho-cho, Mizuho-ku, Nagoya, 467-8601, Japan.

出版信息

Neurochem Res. 2018 Jan;43(1):136-146. doi: 10.1007/s11064-017-2352-3. Epub 2017 Jul 31.

Abstract

We previously established neonatal white matter injury (WMI) model rat that is made by right common carotid artery dissection at postnatal day 3, followed by 6% hypoxia for 60 min. This model has fewer oligodendrocyte progenitor cells and reduced myelin basic protein (MBP) positive areas in the sensorimotor cortex, but shows no apparent neuronal loss. However, how motor deficits are induced in this model is unclear. To elucidate the relationship between myelination disturbance and concomitant motor deficits, we first performed motor function tests (gait analysis, grip test, horizontal ladder test) and then analyzed myelination patterns in the sensorimotor cortex using transmission electron microscopy (TEM) and Contactin associated protein 1 (Caspr) staining in the neonatal WMI rats in adulthood. Behavioral tests revealed imbalanced motor coordination in this model. Motor deficit scores were higher in the neonatal WMI model, while hindlimb ladder stepping scores and forelimb grasping force were comparable to controls. Prolonged forelimb swing times and decreased hindlimb paw angles on the injured side were revealed by gait analysis. TEM revealed no change in myelinated axon number and the area g-ratio in the layer II/III of the cortex. Electromyographical durations and latencies in the gluteus maximus in response to electrical stimulation of the brain area were unchanged in the model. Caspr staining revealed fewer positive dots in layers II/III of the WMI cortex, indicating fewer and/or longer myelin sheath. These data suggest that disorganization of oligodendrocyte development in layers II/III of the sensorimotor cortex relates to imbalanced motor coordination in the neonatal WMI model rat.

摘要

我们之前建立了一种通过在新生后第 3 天对右侧颈总动脉进行剥离,然后对其进行 6%缺氧 60 分钟来制作的新生大鼠脑白质损伤 (WMI) 模型。该模型在感觉运动皮层中有较少的少突胶质前体细胞和减少的髓鞘碱性蛋白 (MBP) 阳性区域,但没有明显的神经元丢失。然而,该模型中的运动缺陷是如何引起的尚不清楚。为了阐明髓鞘形成障碍与伴随的运动缺陷之间的关系,我们首先进行了运动功能测试(步态分析、握力测试、水平梯测试),然后使用透射电子显微镜 (TEM) 分析了成年新生 WMI 大鼠感觉运动皮层中的髓鞘形成模式,并对接触蛋白相关蛋白 1 (Caspr) 进行了染色。行为测试显示该模型存在运动协调不平衡。该模型的运动缺陷评分较高,而后肢梯级步数和前肢抓握力与对照组相当。步态分析显示,受伤侧的前肢摆动时间延长,后肢足趾角度减小。TEM 显示皮层 II/III 层的有髓轴突数量和 g-ratio 没有变化。电刺激大脑区域时,臀大肌的肌电图持续时间和潜伏期在模型中没有变化。Caspr 染色显示 WMI 皮层 II/III 层中的阳性点较少,表明少突胶质细胞发育的紊乱与新生 WMI 模型大鼠运动协调不平衡有关。

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