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10.01 - Respiratory infections最新文献

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Functional profiling and visualization of stromal cell dynamics in the influenza virus infected lung 流感病毒感染肺间质细胞动力学的功能分析和可视化
Pub Date : 2021-03-11 DOI: 10.1183/23120541.LSC-2021.1
J. Worrell, G. Finney, C. Hansell, J. Singh-Nijjar, F. Morton, J. Cole, M. Macleod
Introduction: Influenza A virus (IAV) respiratory infections are a major cause of morbidity and mortality. Stromal cells co-ordinate with immune cells to clear IAV. While the immediate responses of stromal cells to IAV are well characterised, few studies have investigated the long-term consequences of infection. Methods: To address this, we performed RNA-seq on FACS sorted lung epithelial cells and fibroblasts from naive animals and at early (day 10) and late time points (day 40) following intranasal IAV infection. Biological functions were investigated by flow cytometry. The location of altered stromal and immune cells in the lung was determined using RNAscope and immunohistochemistry. Results: Analysis of differentially expressed genes (DEGs) demonstrated an enrichment in cell cycle and extracellular matrix genes at day 10. More strikingly, immune related genes were enriched in the DEGs at day 10 and 40; many, including MHCII and CXCL9/10, are regulated by the inflammatory cytokine interferon-γ. SpiB, a transcription factor that regulates genes involved in antigen processing/presentation, was found in epithelial cells in infected mice using RNAscope, but only in airways in close proximity to B220+ immune clusters. Furthermore, immunohistochemistry demonstrated that expression of the immunomodulatory molecule, podoplanin, was limited to cluster‑adjacent fibroblasts. Conclusions: Our functional and geographical analysis of the post-IAV lung indicate a prolonged dynamic relationship between immune cells and infection altered stromal cells. These data have important implications for understanding the altered dynamic communications between lung immune and stromal cells during and following subsequent lung infections.
甲型流感病毒(IAV)呼吸道感染是发病率和死亡率的主要原因。基质细胞与免疫细胞协同清除IAV。虽然基质细胞对IAV的直接反应已被很好地表征,但很少有研究调查感染的长期后果。方法:为了解决这个问题,我们在鼻内IAV感染后的早期(第10天)和后期(第40天)对未成熟动物的FACS分类的肺上皮细胞和成纤维细胞进行了rna测序。流式细胞术检测细胞生物学功能。利用RNAscope和免疫组化技术确定肺间质和免疫细胞改变的位置。结果:差异表达基因(DEGs)分析显示,细胞周期和细胞外基质基因在第10天富集。更引人注目的是,在第10天和第40天,免疫相关基因在deg中富集;许多,包括MHCII和CXCL9/10,是由炎性细胞因子干扰素-γ调节的。SpiB是一种调节参与抗原加工/呈递的基因的转录因子,使用RNAscope在感染小鼠的上皮细胞中发现,但仅在靠近B220+免疫簇的气道中发现。此外,免疫组织化学表明免疫调节分子podoplanin的表达仅限于簇相邻的成纤维细胞。结论:我们对iav后肺的功能和地理分析表明免疫细胞和感染改变的基质细胞之间存在长期的动态关系。这些数据对于理解肺部感染期间和之后肺部免疫细胞和间质细胞之间改变的动态通信具有重要意义。
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10.01 - Respiratory infections
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