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中枢神经系统病毒感染的切片培养建模。

Slice Culture Modeling of CNS Viral Infection.

机构信息

Department of Neurology, Denver Veterans Affairs Medical Center, Aurora, CO, USA.

出版信息

Methods Mol Biol. 2021;2311:109-130. doi: 10.1007/978-1-0716-1437-2_8.

Abstract

The complexity of the central nervous system (CNS) is not recapitulated in cell culture models. Thin slicing and subsequent culture of CNS tissue has become a valued means to study neuronal and glial biology within the context of the physiologically relevant tissue milieu. Modern membrane-interface slice culturing methodology allows for straightforward access to both CNS tissue and feeding medium, enabling experimental manipulations and analyses that would otherwise be impossible in vivo. CNS slices can be successfully maintained in culture for up to several weeks for investigation of evolving pathology and long-term intervention in models of chronic neurologic disease.Herein, membrane-interface slice culture models for studying viral encephalitis and myelitis are detailed, with emphasis on the use of these models for investigation of pathogenesis and evaluation of novel treatment strategies. We describe techniques to (1) generate brain and spinal cord slices from rodent donors, (2) virally infect slices, (3) monitor viral replication, (4) assess virally induced injury/apoptosis, (5) characterize "CNS-specific" cytokine production, and, (6) treat slices with cytokines/pharmaceuticals. Although our focus is on CNS viral infection, we anticipate that the described methods can be adapted to address a wide range of investigations within the fields of neuropathology, neuroimmunology, and neuropharmacology.

摘要

中枢神经系统(CNS)的复杂性无法在细胞培养模型中重现。薄切片和随后的 CNS 组织培养已成为一种有价值的方法,可以在生理相关的组织环境中研究神经元和神经胶质生物学。现代的膜界面切片培养方法允许直接进入 CNS 组织和饲养培养基,从而能够进行体内不可能进行的实验操作和分析。CNS 切片可以在培养中成功维持数周,以研究不断发展的病理学,并对慢性神经疾病模型进行长期干预。本文详细介绍了用于研究病毒性脑炎和脊髓炎的膜界面切片培养模型,重点介绍了这些模型在发病机制研究和新型治疗策略评估中的应用。我们描述了从啮齿动物供体中生成脑和脊髓切片的技术、病毒感染切片、监测病毒复制、评估病毒诱导的损伤/细胞凋亡、描述“中枢神经系统特异性”细胞因子产生,并对切片进行细胞因子/药物治疗的方法。尽管我们的重点是 CNS 病毒感染,但我们预计所描述的方法可以适应神经病理学、神经免疫学和神经药理学领域的广泛研究。

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