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首页> 外文期刊>Journal of Neuroscience Methods >Embedding, sectioning, immunocytochemical and stereological methods that optimise research on the lesioned adult rat spinal cord.
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Embedding, sectioning, immunocytochemical and stereological methods that optimise research on the lesioned adult rat spinal cord.

机译:嵌入,切片,免疫细胞化学和体视学方法可优化对成年大鼠脊髓的研究。

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Numerous methods have been developed to embed, section and immunocytochemically label nervous tissue and the method chosen depends upon numerous factors. However, many of these methods have technical drawbacks that make them difficult to use in studies using injured/lesioned tissue. We present here, methods for embedding, sectioning and immunocytochemically labelling lesioned adult spinal cord tissue at the light microscope level. We have developed a novel, gelatine-embedding technique for vibratome sectioning which overcomes many of the difficulties encountered with lesioned tissue. Individualised immunocytochemical protocols have also been developed for the antibodies GFAP (to label astrocytes), MBP (to label myelin) and CNP-ase (to label oligodendrocytes). Sequential pre-treatment with proteinase-K, methanol and sodium borohydride achieved optimal GFAP localisation. MBP and CNP-ase were optimally localised after sequential pre-treatment with proteinase-K (at different concentrations) and sodium borohydride. Methanol pre-treatment resulted in a loss of immunoreactivity for these latter two antibodies. Each protocol achieved full immunocytochemical penetration throughout 40 microns vibratome sections. These techniques enable the new unbiased stereological tools (that is, the Cavalieri and optical disector principles) to be utilised.
机译:已经开发出许多方法来嵌入,切片和免疫细胞化学标记神经组织,并且所选择的方法取决于许多因素。但是,这些方法中的许多方法都有技术上的缺陷,使其难以在使用受伤/病变组织的研究中使用。我们在这里介绍了在光学显微镜水平上对病变的成年脊髓组织进行包埋,切片和免疫细胞化学标记的方法。我们已经开发出一种新颖的明胶包埋技术,用于切片机切片术,克服了病变组织遇到的许多困难。还针对抗体GFAP(标记星形胶质细胞),MBP(标记髓磷脂)和CNP-酶(标记少突胶质细胞)开发了个性化的免疫细胞化学方案。蛋白酶K,甲醇和硼氢化钠的顺序预处理实现了最佳的GFAP定位。用蛋白酶K(不同浓度)和硼氢化钠进行顺序预处理后,MBP和CNP酶的位置最佳。甲醇预处理导致后两种抗体的免疫反应性降低。每种方案在整个40微米的玻璃纤维切片中均实现了完全的免疫细胞化学渗透。这些技术使新的无偏立体学工具(即Cavalieri和光学解剖器​​原理)得以使用。

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