Department of Clinical Sciences and Advanced Medicine, School of Veterinary Medicine, University of Pennsylvania, Philadelphia, Pennsylvania.
Department of Pathology, University of Michigan Medical School, Ann Arbor, Michigan.
J Neuropathol Exp Neurol. 2018 Mar 1;77(3):229-245. doi: 10.1093/jnen/nlx119.
The feline model of Niemann-Pick disease, type C1 (NPC1) recapitulates the clinical, neuropathological, and biochemical abnormalities present in children with NPC1. The hallmarks of disease are the lysosomal storage of unesterified cholesterol and multiple sphingolipids in neurons, and the spatial and temporal distribution of Purkinje cell death. In feline NPC1 brain, microtubule-associated protein 1 light chain 3 (LC3) accumulations, indicating autophagosomes, were found within axons and presynaptic terminals. High densities of accumulated LC3 were seen in subdivisions of the inferior olive, which project to cerebellar regions that show the most Purkinje cell loss, suggesting that autophagic abnormalities in specific climbing fibers may contribute to the spatial pattern of Purkinje cell loss seen. Biweekly intrathecal administration of 2-hydroxypropyl-beta cyclodextrin (HPβCD) ameliorated neurological dysfunction, reduced cholesterol and sphingolipid accumulation, and increased lifespan in NPC1 cats. LC3 pathology was reduced in treated animals suggesting that HPβCD administration also ameliorates autophagic abnormalities. This study is the first to (i) identify specific brain regions exhibiting autophagic abnormalities in any species with NPC1, (ii) provide evidence of differential vulnerability among discrete brain nuclei and pathways, and (iii) show the amelioration of these abnormalities in NPC1 cats treated with HPβCD.
猫尼曼-皮克病 C1 型(NPC1)模型重现了 NPC1 患儿的临床、神经病理学和生化异常。疾病的特征是溶酶体中未酯化胆固醇和多种神经鞘脂的储存,以及浦肯野细胞死亡的时空分布。在猫 NPC1 大脑中,微管相关蛋白 1 轻链 3(LC3)的积累,表明自噬体,在轴突和突触前末端内发现。在橄榄下核的亚区中,积累的 LC3 密度很高,这些亚区投射到小脑区域,这些区域表现出最多的浦肯野细胞丢失,这表明特定的攀附纤维中的自噬异常可能导致浦肯野细胞丢失的空间模式。每周两次鞘内给予 2-羟丙基-β-环糊精(HPβCD)可改善神经功能障碍、减少胆固醇和神经鞘脂的积累,并延长 NPC1 猫的寿命。在治疗动物中,LC3 病理学减少,这表明 HPβCD 给药还可改善自噬异常。这项研究首次在 NPC1 的任何物种中(i)鉴定出表现出自噬异常的特定脑区,(ii)提供了离散脑核和通路之间存在差异易感性的证据,以及(iii)表明用 HPβCD 治疗 NPC1 猫可改善这些异常。