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Striosome-matrix pathology and motor deficits in the YAC128 mouse model of Huntington's disease.

机译:亨廷顿氏病的YAC128小鼠模型中的线粒体基质病理和运动功能障碍。

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摘要

Huntington's disease is characterized by striatal degeneration and progressive motor deficits. To examine striatal compartment-specific pathology and its relation to motor symptoms, we used immunohistochemistry to identify and measure the striosomes and matrix of 7-13-month-old YAC128 and wild type (WT) mice that were previously tested on motor tasks. Compared to WTs, 13-month-old YAC128s showed volume shrinkage in striosomes, and cell loss in both compartments. The percent cell loss was greater in striosomes than matrix. Striosome volume and cell loss was greatest in the dorsolateral striatum. YAC128 rotarod and balance beam deficits preceded volume and cell loss. At 13 months, YAC128 balance beam slips and striosome cell number were inversely correlated. The results show that pathology in older YAC128s manifests as an abnormal striosome to matrix ratio and suggest that this imbalance can contribute to some motor symptoms.
机译:亨廷顿舞蹈病的特征是纹状体变性和进行性运动障碍。为了检查纹状体特定的病理及其与运动症状的关系,我们使用免疫组化方法鉴定和测量了7-13个月大的YAC128和野生型(WT)小鼠的脂质体和基质,这些小鼠先前已经进行了运动任务测试。与野生型相比,13个月大的YAC128在质体中显示体积缩小,在两个隔室中均显示细胞丢失。基质中的细胞损失百分比大于基质。在背外侧纹状体中,核小体的体积和细胞损失最大。 YAC128旋转脚架和平衡木不足先于体积和细胞损失。在13个月时,YAC128平衡木滑移与基质细胞数量呈负相关。结果表明,较老的YAC128s的病理表现为异常的脂质体与基质比例,表明这种失衡可能导致某些运动症状。

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