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衰老加速小鼠(SAM)大脑中过碘酸-希夫(PAS)染色阳性的颗粒状结构增加。

Periodic acid-Schiff (PAS)-positive, granular structures increase in the brain of senescence accelerated mouse (SAM).

作者信息

Akiyama H, Kameyama M, Akiguchi I, Sugiyama H, Kawamata T, Fukuyama H, Kimura H, Matsushita M, Takeda T

出版信息

Acta Neuropathol. 1986;72(2):124-9. doi: 10.1007/BF00685973.

Abstract

Abnormal granular structures, which stained positively with periodic acid-Schiff (PAS-positive granular structures; PGS), were observed in the brain of senescence accelerated mouse (SAM). They were small, round to ovoid, homogeneous structures measuring up to 5 microns in diameter and usually grouped in clusters. PGS were localized in the hippocampus, piriform cortices, olfactory tubercle, nucleus of the trapezoid body, and cerebellar cortices. Quantitative analysis revealed that PGS remarkably increased in the hippocampus of SAM-P/8, a substrain of SAM, with advancing age, although a few PGS also appeared in the aged control mice, SAM-R/1 and DDD. Their histochemical nature, morphological features and distribution pattern were different from those of corpora amylacea and other similar bodies. A close anatomical relationship between PGS and glial fibrillary acidic protein-positive astrocytes was inferred from immunohistochemical studies. PGS is considered to be one of the morphological manifestations of senescence in mice brains, and are found to occur more numerously in the brains of learning or memory deficit mice, SAM-P/8.

摘要

在快速老化小鼠(SAM)的大脑中观察到异常颗粒结构,这些结构经高碘酸-希夫染色呈阳性(PAS阳性颗粒结构;PGS)。它们体积小,呈圆形至椭圆形,为均匀结构,直径达5微米,通常聚集成簇。PGS定位于海马体、梨状皮质、嗅结节、斜方体核和小脑皮质。定量分析显示,SAM的一个亚系SAM-P/8的海马体中PGS随年龄增长显著增加,尽管在老年对照小鼠SAM-R/1和DDD中也出现了一些PGS。它们的组织化学性质、形态特征和分布模式与淀粉样体和其他类似物体不同。免疫组织化学研究推断PGS与胶质纤维酸性蛋白阳性星形胶质细胞之间存在密切的解剖学关系。PGS被认为是小鼠大脑衰老的形态学表现之一,并且发现在学习或记忆缺陷小鼠SAM-P/8的大脑中数量更多。

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