Beijing Key Laboratory for Biomaterials and Neural Regeneration, Beijing Advanced Innovation Center for Biomedical Engineering, School of Biological Science and Medical Engineering, Beihang University, Beijing, 100083, China.
Institute of Rehabilitation Engineering, China Rehabilitation Science Institute, Beijing, 100068, China.
Sci Rep. 2022 Apr 8;12(1):5919. doi: 10.1038/s41598-022-09981-5.
Spinal cord injury (SCI) may cause structural alterations in brain due to pathophysiological processes, but the effects of SCI treatment on brain have rarely been reported. Here, voxel-based morphometry is employed to investigate the effects of SCI and neurotrophin-3 (NT3) coupled chitosan-induced regeneration on brain and spinal cord structures in rhesus monkeys. Possible association between brain and spinal cord structural alterations is explored. The pain sensitivity and stepping ability of animals are collected to evaluate sensorimotor functional alterations. Compared with SCI, the unique effects of NT3 treatment on brain structure appear in extensive regions which involved in motor control and neuropathic pain, such as right visual cortex, superior parietal lobule, left superior frontal gyrus (SFG), middle frontal gyrus, inferior frontal gyrus, insula, secondary somatosensory cortex, anterior cingulate cortex, and bilateral caudate nucleus. Particularly, the structure of insula is significantly correlated with the pain sensitivity. Regenerative treatment also shows a protective effect on spinal cord structure. The associations between brain and spinal cord structural alterations are observed in right primary somatosensory cortex, SFG, and other regions. These results help further elucidate secondary effects on brain of SCI and provide a basis for evaluating the effects of NT3 treatment on brain structure.
脊髓损伤 (SCI) 可能由于病理生理过程导致大脑结构改变,但 SCI 治疗对大脑的影响很少有报道。在这里,我们采用基于体素的形态测量学方法来研究 SCI 以及神经营养因子-3 (NT3) 偶联壳聚糖诱导再生对恒河猴大脑和脊髓结构的影响,并探讨大脑和脊髓结构改变之间的可能关联。同时收集动物的疼痛敏感性和步态能力来评估感觉运动功能改变。与 SCI 相比,NT3 治疗对大脑结构的独特影响出现在涉及运动控制和神经病理性疼痛的广泛区域,如右侧视觉皮层、顶上小叶、左侧额上回 (SFG)、额中回、额下回、岛叶、次级体感皮层、前扣带皮层和双侧尾状核。特别是,岛叶的结构与疼痛敏感性显著相关。再生治疗对脊髓结构也有保护作用。在右侧初级体感皮层、SFG 和其他区域观察到大脑和脊髓结构改变之间的关联。这些结果有助于进一步阐明 SCI 对大脑的继发影响,并为评估 NT3 治疗对大脑结构的影响提供依据。