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胶质纤维酸性蛋白的表达增强以及铜银变性反应可作为神经毒性的敏感和早期指标。

Enhanced expression of glial fibrillary acidic protein and the cupric silver degeneration reaction can be used as sensitive and early indicators of neurotoxicity.

作者信息

O'Callaghan J P, Jensen K F

机构信息

Neurotoxicology Division, U.S. Environmental Protection Agency, Research Triangle Park, North Carolina 27711.

出版信息

Neurotoxicology. 1992 Spring;13(1):113-22.

PMID:1508411
Abstract

The mammalian central nervous system is composed of a large and diverse array of its two principle cell types, neurons and glia. Given this extreme cellular heterogeneity, it is not surprising that targets of neurotoxic insult often are diverse and unpredictable. In devising strategies to assess neurotoxicity, one must overcome the obstacle posed by not knowing where to look for damage. Our approach to the detection and localization of sites of toxicant-induced damage has been to take advantage of two general responses to nervous system insult, astrogliosis and argyrophilia. Assays for GFAP, the principle intermediate filament protein of astrocytes, have been devised to quantify astrogliosis and a modified cupric silver degeneration stain has been employed to examine patterns of argyrophilia. Using these methods, we found that increases in GFAP and the occurrence of argyrophilia are consistent responses to neurotoxic insults. Moreover, increments in these two indicators reveal dose-, time- and region-dependent patterns of neurotoxicity at toxicant dosages below those that cause light microscopic evidence of cell loss or damage. The rapid onset of astrogliosis and argyrophilia following specific toxicant exposures suggests that the signals underlying these events are among the earliest that can be linked to the neurotoxic state.

摘要

哺乳动物的中枢神经系统由其两种主要细胞类型——神经元和神经胶质细胞大量且多样地组成。鉴于这种极端的细胞异质性,神经毒性损伤的靶点往往多样且不可预测也就不足为奇了。在设计评估神经毒性的策略时,必须克服因不知道何处寻找损伤而带来的障碍。我们检测和定位毒物诱导损伤部位的方法是利用对神经系统损伤的两种一般反应,即星形胶质细胞增生和嗜银性。已设计出针对星形胶质细胞的主要中间丝蛋白GFAP的检测方法来量化星形胶质细胞增生,并采用改良的铜银变性染色法来检查嗜银性模式。使用这些方法,我们发现GFAP的增加和嗜银性的出现是对神经毒性损伤的一致反应。此外,在低于导致细胞丢失或损伤的光学显微镜证据的毒物剂量下,这两个指标的增加揭示了神经毒性的剂量、时间和区域依赖性模式。特定毒物暴露后星形胶质细胞增生和嗜银性的迅速出现表明,这些事件背后的信号是最早可与神经毒性状态相关联的信号之一。

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