Department of Brain & Cognitive Sciences, Ewha Womans University, Seoul, Republic of Korea.
J Alzheimers Dis. 2010;21(1):263-76. doi: 10.3233/JAD-2010-091528.
The transgenic mouse Tg2576 is widely used as a murine model of Alzheimer's disease (AD) and exhibits plaque pathogenesis in the brain and progressive memory impairments. Here we report that Tg2576 mice also have severe spinal cord deficits. At 10 months of age, Tg2576 mice showed a severe defect in the hindlimb extension reflex test and abnormal body trembling and hindlimb tremors when suspended by the tail. The frequency and severity of these abnormalities were overt at 10 months of age and became gradually worsened. On the foot-printing analysis, Tg2576 mice had shorter and narrower strides than the non-transgenic control. Histological analyses showed that neuronal cells including cholinergic neurons in the lumbar cord of Tg2576 mice were severely reduced in number. At 16 months of age, Tg2576 mice showed high levels of amyloid-beta accumulation in the spinal cord. Consistent with this, Tg2576 mice showed that lipid peroxidation levels were increased and mitochondrial metabolic activity were significantly reduced in the spinal cord. Administration of curcumin, a natural compound that has antioxidant properties, notably reversed motor function deficits of Tg2576 mice. The enhanced lipid peroxidation and neuronal loss in the lumbar cord was also partially suppressed by curcumin. Electron microscopic analysis revealed that the sciatic nerve fibers were severely reduced in number and were demyelinated in Tg2576 mice, which were partially rescued by curcumin. These results showed that Tg2576 mice display severe degeneration of motor neurons in the spinal cord and associated motor function deficits.
转基因小鼠 Tg2576 被广泛用作阿尔茨海默病 (AD) 的小鼠模型,其脑中存在斑块形成和进行性记忆损伤。在此,我们报告 Tg2576 小鼠还存在严重的脊髓缺陷。在 10 月龄时,Tg2576 小鼠的后肢伸展反射测试严重受损,尾巴悬挂时出现异常的身体颤抖和后肢震颤。这些异常在 10 月龄时明显加重,且逐渐恶化。在足迹分析中,Tg2576 小鼠的步幅比非转基因对照更短、更窄。组织学分析显示,Tg2576 小鼠的脊髓中包括胆碱能神经元在内的神经元细胞数量严重减少。在 16 月龄时,Tg2576 小鼠的脊髓中积累了大量的淀粉样β。与之一致的是,Tg2576 小鼠的脊髓中脂质过氧化水平升高,线粒体代谢活性显著降低。姜黄素是一种具有抗氧化特性的天然化合物,其给药显著逆转了 Tg2576 小鼠的运动功能缺陷。姜黄素还部分抑制了脊髓中的脂质过氧化和神经元丢失。电镜分析显示,Tg2576 小鼠的坐骨神经纤维数量严重减少且脱髓鞘,姜黄素部分挽救了这一情况。这些结果表明,Tg2576 小鼠的脊髓运动神经元严重退化,并伴有运动功能缺陷。