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The transcriptome of MHV-infected RAW264.7 cells offers an alternative model for macrophage innate immunity research

摘要Background:Macrophages are the primary innate immune cells encountered by the invading coronaviruses,and their abilities to initiate inflammatory reactions,to main-tain the immunity homeostasis by differential polarization,to train the innate immune system by epigenic modification have been reported in laboratory animal research.Methods:In the current in vitro research,murine macrophage RAW 264.7 cell were infected by mouse hepatitis virus,a coronavirus existed in mouse.At 3-,6-,12-,24-,and 48-h post infection(hpi.),the attached cells were washed with PBS and harvested in Trizol reagent.Then The harvest is subjected to transcriptome sequencing.Results:The transcriptome analysis showed the immediate(3 hpi.)up regulation of DEGs related to inflammation,like Il1b and Il6.DEGs related to M2 differential po-larization,like Irf4 showed up regulation at 24 hpi.,the late term after viral infection.In addition,DEGs related to metabolism and histone modification,like Ezh2 were de-tected,which might correlate with the trained immunity of macrophages.Conclusions:The current in vitro viral infection study showed the key innated im-munity character of macrophages,which suggested the replacement value of viral infection cells model,to reduce the animal usage in preclinical research.

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作者 Yun Liu [1] Ting-Ting Feng [1] Wei Tong [1] Zhi Guo [1] Xia Li [1] Qi Kong [1] Zhi-Guang Xiang [1] 学术成果认领
作者单位 Institute of Laboratory Animal Sciences,Chinese Academy of Medical Sciences(CAMS)and Comparative Medicine Center,Peking Union Medical College(PUMC),Beijing,P.R.China [1]
DOI 10.1002/ame2.12443
发布时间 2025-03-05(万方平台首次上网日期,不代表论文的发表时间)
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动物模型与实验医学(英文)

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