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建立鱼类细胞系的 3D 球体细胞培养系统用于体外感染研究:与寄生腐霉的评估。

Development of a 3D spheroid cell culture system from fish cell lines for in vitro infection studies: Evaluation with Saprolegnia parasitica.

机构信息

Scottish Fish Immunology Research Centre, School of Biological Sciences, University of Aberdeen, Aberdeen, UK.

Aberdeen Oomycete Laboratory, School of Medicine, Medical Sciences & Nutrition, University of Aberdeen, Aberdeen, UK.

出版信息

J Fish Dis. 2021 Jun;44(6):701-710. doi: 10.1111/jfd.13331. Epub 2021 Jan 12.

Abstract

Understanding the ways in which pathogens infect host cells is essential to improve and develop new treatment strategies. This study aimed to generate a novel in vitro infection model by establishing a reproducible 3D spheroid cell culture system that may lead to a reduced need for animals in fish disease research. 2D models (commonly cell lines) cannot replicate many key conditions of in vivo infections, but 3D spheroids have the potential to provide bridging technology between in vivo and in vitro systems. 3D spheroids were generated using cells from rainbow trout (Oncorhynchus mykiss) cell lines, RTG-2 and RTS-11. The RTG-2 spheroids were tested for their potential to be infected upon exposure to Saprolegnia parasitica spores. Positive infiltration of mycelia into the spheroids was verified by confocal microscopy. As a closer analogue of in vivo conditions encountered during infection, the straightforward model developed in this study shows promise as an additional tool that can be used to further our understanding of host-pathogen interactions for Saprolegnia and possibly a variety of other fish pathogens.

摘要

了解病原体感染宿主细胞的方式对于改进和开发新的治疗策略至关重要。本研究旨在通过建立可重复的 3D 球体细胞培养系统来产生新型的体外感染模型,从而减少鱼类疾病研究中对动物的需求。2D 模型(通常是细胞系)无法复制体内感染的许多关键条件,但 3D 球体有可能成为体内和体外系统之间的桥梁技术。使用虹鳟鱼(Oncorhynchus mykiss)细胞系 RTG-2 和 RTS-11 生成 3D 球体。测试 RTG-2 球体在暴露于寄生霜霉菌孢子时被感染的潜力。通过共聚焦显微镜验证了菌丝体阳性渗透到球体中。作为体内感染过程中遇到的条件的更接近的模拟物,本研究中开发的简单模型显示出作为进一步了解寄生霜霉菌和可能的各种其他鱼类病原体的宿主-病原体相互作用的附加工具的潜力。

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