首页> 外文期刊>Journal of Neuropathology and Experimental Neurology: Official Journal of the American Association of Neuropathologists, Inc >Repetitive mild traumatic brain injury causes optic nerve and retinal damage in a mouse model
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Repetitive mild traumatic brain injury causes optic nerve and retinal damage in a mouse model

机译:重复性轻度颅脑外伤在小鼠模型中引起视神经和视网膜损伤

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摘要

There is increasing evidence that long-lasting morphologic and functional consequences can be present in the human visual system after repetitive mild traumatic brain injury (r-mTBI). The exact location and extent of the damage in this condition are not well understood. Using a recently developed mouse model of r-mTBI, we assessed the effects on the retina and optic nerve using histology and immunohistochemistry, electroretinography (ERG), and spectral-domain optical coherence tomography (SD-OCT) at 10 and 13 weeks after injury. Control mice received repetitive anesthesia alone (r-sham). We observed decreased optic nerve diameters and increased cellularity and areas of demyelination in optic nerves in r-mTBI versus r-sham mice. There were concomitant areas of decreased cellularity in the retinal ganglion cell layer and approximately 67% decrease in brain-specific homeobox/POU domain protein 3A-positive retinal ganglion cells in retinal flat mounts. Furthermore, SD-OCT demonstrated a detectable thinning of the inner retina; ERG demonstrated a decrease in the amplitude of the photopic negative response without any change in a- or b-wave amplitude or timing. Thus, the ERG and SD-OCT data correlated well with changes detected by morphometric, histologic, and immunohistochemical methods, thereby supporting the use of these noninvasive methods in the assessment of visual function and morphology in clinical cases of mTBI.
机译:越来越多的证据表明,反复轻度颅脑外伤(r-mTBI)后,人的视觉系统可能会出现长期的形态和功能后果。这种情况下损坏的确切位置和程度尚不完全清楚。使用最近开发的r-mTBI小鼠模型,我们在受伤后10周和13周使用组织学和免疫组化,视网膜电图(ERG)和光谱域光学相干断层扫描(SD-OCT)评估了对视网膜和视神经的影响。对照小鼠仅接受重复麻醉(r-sham)。我们观察到r-mTBI与r-sham小鼠相比,视神经直径减小,视神经中细胞数量增加,脱髓鞘面积增加。视网膜神经节细胞层中伴随着细胞减少的区域,并且在视网膜平坦的坐骑中,大脑特异性同源盒/ POU域蛋白3A阳性的视网膜神经节细胞减少了约67%。此外,SD-OCT表现出可检测到的内部视网膜变薄。 ERG证实,在没有负a或b波振幅或时间变化的情况下,明视负响应的振幅减小了。因此,ERG和SD-OCT数据与形态学,组织学和免疫组织化学方法检测到的变化密切相关,从而支持将这些非侵入性方法用于mTBI临床病例的视觉功能和形态评估。

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