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利用双逆向跨突触病毒感染解析神经网络

Untangling neural networks with dual retrograde transsynaptic viral infection.

作者信息

Ohara Shinya, Inoue Ken-Ichi, Witter Menno P, Iijima Toshio

机构信息

Division of Systems Neuroscience, Tohoku University Graduate School of Life Sciences Sendai, Japan.

出版信息

Front Neurosci. 2009 Dec 15;3(3):344-9. doi: 10.3389/neuro.01.032.2009. eCollection 2009.

Abstract

Using recombinant rabies virus (RV), we developed a dual transsynaptic retrograde tracing technique in the rat central nervous system. Two strains of recombinant RV, injected into two separate loci of the brain, were taken up through axon terminals and carried retrogradely and transsynaptically from neuron to neuron. Each viral strain expresses a unique marker in infected neurons. Therefore, neurons that project transsynaptically to two brain loci can be detected by double-labeling. In this review, we will introduce the advantage of dual viral tracing by recombinant RV, and will also address some potential weaknesses of this technique. Although false negative results may arise due to interference between two strains of RV, the ability of the recombinant RV to visualize the morphology of the infected cell and to infect primates in addition to rodents will make this technique a potential tool to provide new insights into the complex organization of brain networks.

摘要

利用重组狂犬病病毒(RV),我们在大鼠中枢神经系统中开发了一种双跨突触逆行追踪技术。将两株重组RV注射到大脑的两个不同位点,它们通过轴突终末被摄取,并在神经元之间进行逆行和跨突触运输。每株病毒在受感染的神经元中表达一种独特的标记物。因此,通过双重标记可以检测到跨突触投射到两个脑位点的神经元。在这篇综述中,我们将介绍重组RV双病毒追踪的优势,也将探讨该技术的一些潜在弱点。尽管由于两株RV之间的干扰可能会出现假阴性结果,但重组RV能够可视化受感染细胞的形态并且除了啮齿动物之外还能感染灵长类动物,这将使该技术成为一种潜在工具,为深入了解脑网络的复杂组织提供新的见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/534f/2796918/8fa8ebd14dc6/fnins-03-344-g001.jpg

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