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生物素化葡聚糖胺和生物胞素在硬骨鱼神经系统中的顺行和逆行轴突运输。

The anterograde and retrograde axonal transport of biotinylated dextran amine and biocytin in the nervous system of teleosts.

作者信息

Xue Hao-Gang, Yang Chun-Ying, Ito Hironobu

机构信息

Department of Anatomy, Nippon Medical School, Sendagi 1-1-5, Bunkyo-ku, Tokyo 113-8602, Japan.

出版信息

Brain Res Brain Res Protoc. 2004 Jun;13(2):106-14. doi: 10.1016/j.brainresprot.2004.03.001.

Abstract

Biotinylated dextran amine (BDA) and biocytin are well transported both retrogradely and anterogradely. Both tracers have stable molecular structure for long-term storage and examination, and their visualizations can be realized by simple histochemical reactions. Therefore, the BDA and biocytin are widely used in neuroanatomical studies as the tract-tracing markers. The results obtained by BDA and biocytin applications to various areas of the nervous system in teleosts were qualitatively identical, and the retrogradely and anterogradely labeled structures could be clearly identified with reference to the counter-staining. Iontophoretic injections or crystal insertions resulted in filling of cell bodies, dendrites and terminals in the core of injection side, revealing morphological details of the local and distant somata, dendritic arborizations and axonal terminals. However, biocytin exhibited superior to BDA in anterograde transport, and could label very thin axons, axonal collaterals and terminal ramifications. In contrast, retrograde transport of BDA was superior to that of biocytin, and resulted in more complete dendritic filling of retrograde labeled neurons including dendritic arborizations and spines.

摘要

生物素化葡聚糖胺(BDA)和生物胞素既能逆行运输,也能顺行运输。这两种示踪剂都具有稳定的分子结构,便于长期保存和检测,并且通过简单的组织化学反应就能实现可视化。因此,BDA和生物胞素作为神经解剖学研究中的神经束示踪标记被广泛应用。将BDA和生物胞素应用于硬骨鱼神经系统的各个区域所得到的结果在性质上是相同的,并且通过对比染色可以清晰地识别逆行和顺行标记的结构。离子电渗注射或晶体植入会使注射侧核心区域的细胞体、树突和终末充满示踪剂,从而揭示局部和远处躯体、树突分支和轴突终末的形态细节。然而,生物胞素在顺行运输方面表现优于BDA,能够标记非常细的轴突、轴突侧支和终末分支。相比之下,BDA的逆行运输优于生物胞素,能使逆行标记的神经元包括树突分支和棘突的树突填充更完整。

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