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与特发性震颤中浦肯野细胞退行性改变相关的“毛发篮”。

"Hairy baskets" associated with degenerative Purkinje cell changes in essential tremor.

机构信息

GH Sergievsky Center, Columbia University, New York, New York, USA.

出版信息

J Neuropathol Exp Neurol. 2010 Mar;69(3):262-71. doi: 10.1097/NEN.0b013e3181d1ad04.

Abstract

Essential tremor (ET) is one of the most common neurologic diseases. Increased numbers of torpedoes and Purkinje cell (PC) loss have been documented in the brains of patients with ET. We recently observed a dense and tangled appearance ("hairiness") of the basket cell axonal plexuses that surround PC soma in Bielschowsky preparations of cerebellar cortex in ET brains. Here, we assessed basket cell "hairiness" in 37 ET (32 cerebellar ET; 5 Lewy body variant ET), 21 nondisease control, and 48 disease control brains using a semiquantitative scale. In 8 cerebellar ET cases (25%), there were high basket scores (rating = 3), whereas no Lewy body variant ET, 1 nondisease control (4.8%), and 2 diseased controls (4.2%) had high basket scores (p = 0.001). The hairy basket scores correlated with numbers of torpedoes (p < 0.001) and inversely with numbers of PCs (p = 0.06). Axonal plexus density obtained by image analysis of basket cell processes traced from digitized images was higher in ET than in nondiseased control cases (p = 0.016). Closely spaced sites of synaptic contact between basket cell processes and PCs were identified by electron microscopy in ET cases. These data indicate that structural changes are not restricted to PCs in ET, and that other neurons within their functional network may be involved in its pathogenesis.

摘要

特发性震颤(ET)是最常见的神经疾病之一。在 ET 患者的大脑中已经记录到了更多的鱼雷和浦肯野细胞(PC)丢失。我们最近在 ET 大脑的小脑皮质 Bielschowsky 制剂中观察到了围绕 PC 体的篮状细胞轴突丛的密集和纠结外观(“毛发状”)。在这里,我们使用半定量评分评估了 37 例 ET(32 例小脑 ET;5 例路易体变异 ET)、21 例非疾病对照和 48 例疾病对照大脑中的篮状细胞“毛发状”。在 8 例小脑 ET 病例(25%)中,篮状评分较高(评分=3),而无路易体变异 ET、1 例非疾病对照(4.8%)和 2 例疾病对照(4.2%)有高篮状评分(p=0.001)。毛茸茸的篮状评分与鱼雷数量相关(p<0.001),与 PC 数量呈负相关(p=0.06)。通过对数字化图像中追踪的篮状细胞过程的图像分析获得的轴突丛密度在 ET 中高于非疾病对照病例(p=0.016)。在 ET 病例中,通过电子显微镜鉴定了篮状细胞过程与 PC 之间紧密间隔的突触接触部位。这些数据表明,结构变化不仅限于 ET 中的 PC,而且其功能网络中的其他神经元可能也参与了其发病机制。

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