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小鼠弥漫性创伤性损伤破坏小脑轴突-髓鞘完整性。

Diffuse Traumatic Injury in the Mouse Disrupts Axon-Myelin Integrity in the Cerebellum.

作者信息

Özen Ilknur, Arkan Sertan, Clausen Fredrik, Ruscher Karsten, Marklund Niklas

机构信息

Lund Brain Injury Laboratory for Neurosurgical Research, Department of Clinical Sciences, Lund University, Lund, Sweden.

Laboratory for Experimental Brain Research, Department of Clinical Sciences, Lund University, Lund, Sweden.

出版信息

J Neurotrauma. 2022 Mar;39(5-6):411-422. doi: 10.1089/neu.2021.0321. Epub 2022 Jan 25.

Abstract

Cerebellar dysfunction after traumatic brain injury (TBI) is commonly suspected based on clinical symptoms, although cerebellar pathology has rarely been investigated. To address the hypothesis that the cerebellar axon-myelin unit is altered by diffuse TBI, we used the central fluid percussion injury (cFPI) model in adult mice to create widespread axonal injury by delivering the impact to the forebrain. We specifically focused on changes in myelin components (myelin basic protein [MBP], 2',3'-cyclic nucleotide 3'-phosphodiesterase [CNPase], nodal/paranodal domains [neurofascin (Nfasc), ankyrin-G], and phosphorylated neurofilaments [SMI-31, SMI-312]) in the cerebellum, remote from the impact, at two, seven, and 30 days post-injury (dpi). When compared with sham-injured controls, cerebellar MBP and CNPase protein levels were decreased at 2 dpi that remained reduced up to 30 dpi. Diffuse TBI induced different effects on neuronal (Nfasc 186, Nfasc 140) and glial (Nfasc 155) neurofascin isoforms that play a key role in the assembly of the nodes of Ranvier. Expression of Nfasc 140 in the cerebellum increased at 7 dpi, in contrast to Nfasc 155 levels, which were decreased. Although neurofascin binding partner ankyrin-G protein levels decreased acutely after cFPI, its expression levels increased at 7 dpi and remained unchanged up to 30 dpi. The TBI-induced reduction in neurofilament phosphorylation (SMI-31) observed in the cerebellum was closely associated with decreased levels of the myelin proteins MBP and CNPase. This is the first evidence of temporal and spatial structural changes in the axon-myelin unit in the cerebellum, remote from the location of the impact site, in a diffuse TBI model in mice.

摘要

尽管很少对小脑病理进行研究,但基于临床症状,创伤性脑损伤(TBI)后常被怀疑存在小脑功能障碍。为了验证弥漫性TBI会改变小脑轴突 - 髓磷脂单位这一假说,我们在成年小鼠中使用了中心流体冲击伤(cFPI)模型,通过向前脑施加冲击来造成广泛的轴突损伤。我们特别关注损伤后2天、7天和30天,远离冲击部位的小脑中髓磷脂成分(髓磷脂碱性蛋白[MBP]、2',3'-环核苷酸3'-磷酸二酯酶[CNPase]、结/旁结域[神经束蛋白(Nfasc)、锚蛋白 - G]和磷酸化神经丝[SMI - 31、SMI - 312])的变化。与假损伤对照组相比,小脑MBP和CNPase蛋白水平在损伤后2天降低,并一直持续到30天仍处于较低水平。弥漫性TBI对在郎飞结组装中起关键作用的神经元(Nfasc 186、Nfasc 140)和胶质细胞(Nfasc 155)神经束蛋白异构体产生了不同影响。与Nfasc 155水平降低相反,小脑中Nfasc 140的表达在损伤后7天增加。虽然cFPI后神经束蛋白结合伴侣锚蛋白 - G蛋白水平急性降低,但其表达水平在损伤后7天增加,并一直持续到30天保持不变。在小脑中观察到的TBI诱导的神经丝磷酸化(SMI - 31)减少与髓磷脂蛋白MBP和CNPase水平降低密切相关。这是在小鼠弥漫性TBI模型中,远离冲击部位的小脑中轴突 - 髓磷脂单位存在时空结构变化的首个证据。

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