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尼曼-匹克病C型。大脑储存过程本质的研究。

Niemann-Pick disease type C. Study on the nature of the cerebral storage process.

作者信息

Elleder M, Jirásek A, Smíd F, Ledvinová J, Besley G T

出版信息

Acta Neuropathol. 1985;66(4):325-36. doi: 10.1007/BF00690966.

DOI:10.1007/BF00690966
PMID:4013680
Abstract

A complex neuropathological study of two cases of Niemann-Pick disease (NPD) type C (NPDC) revealed some novel features in the chemical pathology of the neuronal storage. Lipid histochemistry showed the presence of a lipid which met the criteria of a neuronal glycosphingolipid. Sphingomyelin (SM) was not detected in the neurones in any of the regions examined. Lipid chemical analysis of total extracts and of partially purified lysosomal fraction of the brain cortex showed markedly increased levels of neutral ceramide hexosides especially of glucosylceramide and ceramide dihexoside (mostly of its slower band). Phospholipids were not significantly increased. Monosialogangliosides GM2 and GM3 were increased only slightly. The storage process displayed the well known fine structure and was accompanied by a marked secondary increase in some lysosomal enzyme activities. There was neuroaxonal dystrophy (NAD) of considerable intensity and extent. Many spheroids contained masses of degenerated organelles and neurofilaments in various proportions and displayed variable activities of acid phosphatase, nonspecific esterase and dehydrogenases. There was marked brain atrophy accompanied in one case by severe demyelination. Enzyme studies revealed partial decrease of sphingomyelinase (SMase) and beta-glucosidase activities in cultured fibroblasts, as well as lack of cathodic SMase activity on isoelectric focusing. No defects of these enzymes were found in the brain samples. The findings are regarded as significant since they indicate a biochemical defect in which SM is not primarily involved and which may thus be fundamentally different from that in type A of NPD.

摘要

对两例C型尼曼-匹克病(NPDC)进行的一项复杂神经病理学研究揭示了神经元储存化学病理学中的一些新特征。脂质组织化学显示存在一种符合神经元糖鞘脂标准的脂质。在所检查的任何区域的神经元中均未检测到鞘磷脂(SM)。对大脑皮层总提取物和部分纯化的溶酶体组分进行脂质化学分析显示,中性神经酰胺己糖苷水平显著升高,尤其是葡糖神经酰胺和二己糖神经酰胺(主要是其较慢的条带)。磷脂没有显著增加。单唾液酸神经节苷脂GM2和GM3仅略有增加。储存过程呈现出众所周知的精细结构,并伴随着一些溶酶体酶活性的显著继发性增加。存在相当严重程度和范围的神经轴突营养不良(NAD)。许多球形小体含有各种比例的退化细胞器和神经丝团块,并显示出酸性磷酸酶、非特异性酯酶和脱氢酶的不同活性。存在明显的脑萎缩,其中一例伴有严重的脱髓鞘。酶学研究显示培养的成纤维细胞中鞘磷脂酶(SMase)和β-葡糖苷酶活性部分降低,以及在等电聚焦时缺乏阴极SMase活性。在脑样本中未发现这些酶的缺陷。这些发现被认为具有重要意义,因为它们表明存在一种生化缺陷,其中SM并非主要参与,因此可能与A型NPD的生化缺陷根本不同。

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