杂技训练可预防慢性脑灌注不足大鼠海马的学习障碍和星形胶质细胞重塑:性别特异性益处

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引用次数: 0

摘要

慢性脑灌注不足(CCH)会导致记忆和学习障碍,这与海马体的退化和胶质增生有关。体育锻炼对不同性别的人有不同的治疗效果。我们研究了在双血管闭塞(2VO)模型的不同阶段,杂技训练对雌雄大鼠海马CA1和CA3亚区星形胶质细胞重塑以及空间记忆损伤的影响。杂技训练在2VO手术前进行4周。在2VO后3天和7天采集脑样本进行形态学和生化分析。取下海马背侧样本并准备用于对Akt、p-Akt、COX IV、裂解的caspase-3、PARP和GFAP进行Western印迹定量。在海马切片上进行 GFAP 免疫荧光,以计数星形胶质细胞并应用 Sholl 圈技术。接受过 2VO 训练的雌性大鼠在急性期表现出 PARP 表达增加,接受过 2VO 训练的雌雄大鼠在 Western 印迹中表现出 GFAP 水平增加。训练(主要是雄性大鼠的训练)诱导了 CA1 亚区星形胶质细胞数量的增加。2VO 大鼠的星形胶质细胞出现分枝,而杂技训练则可防止分枝。杂技训练限制了 2VO 在海马 CA1 和 CA3 亚区引起的星形胶质细胞重塑。空间记忆的改善与受训大鼠更有组织的胶质瘢痕和雌性大鼠更好的细胞存活率有关。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Acrobatic training prevents learning impairments and astrocyte remodeling in the hippocampus of rats undergoing chronic cerebral hypoperfusion: sex-specific benefits
Chronic cerebral hypoperfusion (CCH) leads to memory and learning impairments associated with degeneration and gliosis in the hippocampus. Treatment with physical exercise carries different therapeutic benefits for each sex. We investigated the effects of acrobatic training on astrocyte remodeling in the CA1 and CA3 subfields of the hippocampus and spatial memory impairment in male and female rats at different stages of the two-vessel occlusion (2VO) model.Wistar rats were randomly allocated into four groups of males and females: 2VO acrobatic, 2VO sedentary, sham acrobatic, and sham sedentary. The acrobatic training was performed for 4 weeks prior to the 2VO procedure. Brain samples were collected for morphological and biochemical analysis at 3 and 7 days after 2VO. The dorsal hippocampi were removed and prepared for Western blot quantification of Akt, p-Akt, COX IV, cleaved caspase-3, PARP, and GFAP. GFAP immunofluorescence was performed on slices of the hippocampus to count astrocytes and apply the Sholl's circle technique. The Morris water maze was run after 45 days of 2VO.Acutely, the trained female rats showed increased PARP expression, and the 2VO-trained rats of both sexes presented increased GFAP levels in Western blot. Training, mainly in males, induced an increase in the number of astrocytes in the CA1 subfield. The 2VO rats presented branched astrocytes, while acrobatic training prevented branching. However, the 2VO-induced spatial memory impairment was partially prevented by the acrobatic training.Acrobatic training restricted the astrocytic remodeling caused by 2VO in the CA1 and CA3 subfields of the hippocampus. The improvement in spatial memory was associated with more organized glial scarring in the trained rats and better cell viability observed in females.
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