Princeton Neuroscience Institute, Princeton University, Princeton, New Jersey.
Current address: Spark Therapeutics, Philadelphia, PA, 19104.
Curr Protoc. 2023 Jul;3(7):e841. doi: 10.1002/cpz1.841.
Our ability to understand the function of the nervous system is dependent upon defining the connections of its constituent neurons. Development of methods to define connections within neural networks has always been a growth industry in the neurosciences. Transneuronal spread of neurotropic viruses currently represents the best means of defining synaptic connections within neural networks. The method exploits the ability of viruses to invade neurons, replicate, and spread through the intimate synaptic connections that enable communication among neurons. Since the method was first introduced in the 1970s, it has benefited from an increased understanding of the virus life cycle, the function of viral genomes, and the ability to manipulate the viral genome in support of directional spread of virus and the expression of transgenes. In this article, we review these advances in viral tracing technology and the ways in which they may be applied for functional dissection of neural networks. © 2023 The Authors. Current Protocols published by Wiley Periodicals LLC. Basic Protocol 1: Retrograde infection of CNS circuits by peripheral injection of virus Basic Protocol 2: Transneuronal analysis by intracerebral injection Alternate Protocol 1: Transneuronal analysis with multiple recombinant strains Alternate Protocol 2: Conditional replication and spread of PRV Alternate Protocol 3: Conditional reporters of PRV infection and spread Alternate Protocol 4: Reporters of neural activity in polysynaptic circuits Support Protocol 1: Growing and titering a PRV viral stock Support Protocol 2: Immunohistochemical processing and detection Support Protocol 3: Dual-immunofluorescence localization.
我们理解神经系统功能的能力取决于确定其组成神经元的连接。开发定义神经网络内连接的方法一直是神经科学的一个不断发展的领域。神经嗜性病毒的跨神经元传播目前代表了定义神经网络内突触连接的最佳方法。该方法利用病毒入侵神经元、复制和通过使神经元之间能够进行通信的紧密突触连接传播的能力。自该方法于 20 世纪 70 年代首次引入以来,它得益于对病毒生命周期、病毒基因组功能以及操纵病毒基因组以支持病毒的定向传播和转基因表达的能力的深入了解。在本文中,我们回顾了这些病毒示踪技术的进展以及它们在神经网络功能剖析中的应用方式。© 2023 作者。Wiley Periodicals LLC 出版的《当代协议》。基本方案 1:通过外周注射病毒逆行感染中枢神经系统回路基本方案 2:通过脑内注射进行跨神经元分析备选方案 1:使用多个重组株进行跨神经元分析备选方案 2:PRV 的条件复制和传播备选方案 3:PRV 感染和传播的条件报告基因备选方案 4:多突触回路中神经活动的报告基因支持方案 1:生长和滴定 PRV 病毒 stock支持方案 2:免疫组织化学处理和检测支持方案 3:双重免疫荧光定位。