首页> 外文期刊>Journal of Neuroscience Methods >Retrograde tracing with Fluoro-Gold: different methods of tracer detection at the ultrastructural level and neurodegenerative changes of back-filled neurons in long-term studies.
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Retrograde tracing with Fluoro-Gold: different methods of tracer detection at the ultrastructural level and neurodegenerative changes of back-filled neurons in long-term studies.

机译:荧光金逆行示踪:长期研究中超微结构水平示踪剂检测的不同方法以及回填神经元的神经退行性变化。

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摘要

Among the available retrograde fluorescent tracers Fluoro-Gold (FG) is particularly advantageous because it (1) is not only detectable by fluorescence microscopy but also immunocytochemically, resulting in an almost complete staining of the dendritic arbor, (2) is visible in lysosome-like structures allowing for the identification of projection neurons at the ultrastructural level, and (3) remains in the labeled neurons for extended periods of time. Photoconversion and immunostaining for FG, respectively, result in a stable, electron-dense reaction product. Thus, the retrogradely labeled cells can be analyzed quantitatively in the light- and electron microscope for their structural characteristics and input synapses. Long-term studies of back-filled neurons provided evidence for neurotoxic effects of FG in these cells.
机译:在可用的逆行荧光示踪剂中,荧光金(FG)特别有利,因为它(1)不仅可以通过荧光显微镜检出,而且可以通过免疫细胞化学法检出,导致树突状乔木几乎完全染色,(2)在溶酶体中可见。类似的结构允许在超​​结构水平上识别投射神经元,(3)在标记的神经元中保留了较长的时间。 FG的光转换和免疫染色分别产生稳定的电子致密反应产物。因此,可以在光学和电子显微镜中定量分析逆行标记的细胞的结构特征和输入突触。回填神经元的长期研究为FG对这些细胞的神经毒性作用提供了证据。

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