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EHV-1 Pathogenesis: Current in vitro Models and Future Perspectives

机译:EHV-1发病机制:当前的体外模型和未来展望

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摘要

Primary infection and pathogenesis of equine herpesvirus type 1 (EHV-1) require an intricate interaction of virus with the mucosal epithelium, mononuclear cells and the vascular endothelium. Studies on EHV-1 have been facilitated by the development of different in vitro models that recapitulate the in vivo tissue complexity. The available in vitro assays can be categorized into (i) models mimicking the epithelium-peripheral blood mononuclear cell (PBMC) interaction, which include ex vivo mucosal (nasal and vaginal) explants and equine respiratory epithelial cells (EREC) cultures; and (ii) PBMC-endothelium mimicking models, including flow chamber and contact assays. These in vitro models have proven their worth in attempts to recapitulate the in vivo architecture and complexity, produce data relevant to natural host infection, and reduce animal use due to in vivo experiments. Although horse models are still needed for certain experiments, e.g., EHV-1 myeloencephalopathy or vaccination studies, available in vitro models can be used to obtain highly valuable data on virus-host tissue interactions. Microfluidic based 3D culture system (e.g., horse-on-a-chip) could be a potential upgraded version of these in vitro models for future research.
机译:马1型疱疹病毒(EHV-1)的原发感染和发病机制要求病毒与粘膜上皮,单核细胞和血管内皮细胞发生复杂的相互作用。通过概述体内组织复杂性的不同体外模型,促进了EHV-1的研究。可用的体外测定法可分为(i)模仿上皮-外周血单核细胞(PBMC)相互作用的模型,包括离体粘膜(鼻和阴道)外植体和马呼吸道上皮细胞(EREC)培养物; (ii)PBMC-内皮模拟模型,包括流动室和接触分析。这些体外模型已经证明了其在概括体内结构和复杂性,产生与天然宿主感染有关的数据以及减少由于体内实验而减少动物使用方面的价值。尽管某些实验仍需要使用马模型,例如EHV-1脊髓性脑病或疫苗接种研究,但可用的体外模型可用于获得有关病毒与宿主组织相互作用的极有价值的数据。基于微流体的3D培养系统(例如,芯片上的马)可能是这些体外模型的潜在升级版本,以供将来研究。

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