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通过神经元特异性慢病毒载体的逆行转基因表达依赖于物种和输入投射。

Retrograde Transgene Expression via Neuron-Specific Lentiviral Vector Depends on Both Species and Input Projections.

机构信息

Systems Neuroscience Section, Department of Neuroscience, Primate Research Institute, Kyoto University, Inuyama 484-8506, Aichi, Japan.

Department of Rehabilitation, Faculty of Health Science, University of Tokyo Health Sciences, Tama, Tokyo 206-0033, Japan.

出版信息

Viruses. 2021 Jul 16;13(7):1387. doi: 10.3390/v13071387.

Abstract

For achieving retrograde gene transfer, we have so far developed two types of lentiviral vectors pseudotyped with fusion envelope glycoprotein, termed HiRet vector and NeuRet vector, consisting of distinct combinations of rabies virus and vesicular stomatitis virus glycoproteins. In the present study, we compared the patterns of retrograde transgene expression for the HiRet vs. NeuRet vectors by testing the cortical input system. These vectors were injected into the motor cortex in rats, marmosets, and macaques, and the distributions of retrograde labels were investigated in the cortex and thalamus. Our histological analysis revealed that the NeuRet vector generally exhibits a higher efficiency of retrograde gene transfer than the HiRet vector, though its capacity of retrograde transgene expression in the macaque brain is unexpectedly low, especially in terms of the intracortical connections, as compared to the rat and marmoset brains. It was also demonstrated that the NeuRet but not the HiRet vector displays sufficiently high neuron specificity and causes no marked inflammatory/immune responses at the vector injection sites in the primate (marmoset and macaque) brains. The present results indicate that the retrograde transgene efficiency of the NeuRet vector varies depending not only on the species but also on the input projections.

摘要

为了实现逆行基因转移,我们目前已经开发了两种假型慢病毒载体,即 HiRet 载体和 NeuRet 载体,它们由狂犬病病毒和水疱性口炎病毒糖蛋白的不同组合组成。在本研究中,我们通过测试皮质输入系统比较了 HiRet 与 NeuRet 载体的逆行转基因表达模式。将这些载体注射到大鼠、狨猴和猕猴的运动皮层中,研究逆行标记物在皮层和丘脑中的分布。我们的组织学分析表明,NeuRet 载体通常比 HiRet 载体具有更高的逆行基因转移效率,尽管它在猕猴脑中的逆行转基因表达能力出乎意料地低,特别是与大鼠和狨猴大脑相比,其皮质内连接的能力较低。此外,还表明只有 NeuRet 载体而不是 HiRet 载体在灵长类(狨猴和猕猴)大脑中显示出足够高的神经元特异性,并且在载体注射部位不会引起明显的炎症/免疫反应。这些结果表明,NeuRet 载体的逆行转基因效率不仅取决于物种,还取决于输入投射。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2441/8310113/5d32027f382f/viruses-13-01387-g001.jpg

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