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首页> 外文期刊>Immunology: An Official Journal of the British Society for Immunology >cAIMP cAIMP administration in humanized mice induces a chimerization‐level‐dependent STING STING response
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cAIMP cAIMP administration in humanized mice induces a chimerization‐level‐dependent STING STING response

机译:人类源化小鼠的Caimp Caimp助理诱导嵌入式依赖性刺痛响应

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Summary It is well understood?that the STING signalling pathway is critical for generating a robust innate immune response to pathogens. Human and mouse STING signalling pathways are not identical, however. For example, mice lack IFI 16, which has been proven important for the human STING pathway. Therefore, we investigated whether humanized mice are an appropriate experimental platform for exploring the human STING signalling cascade in vivo . We found that NOG mice reconstituted with human cord blood haematopoietic stem cells (humanized NOG mice) exhibit human STING signalling responses to an analogue of the cyclic di‐nucleotide cGAMP . There was an increase in the proportions of monocytes in the lungs of mice receiving cGAMP analogue. The most robust levels of STING expression and STING ‐induced responses were observed in mice exhibiting the highest levels of human chimerization. Notably, differential levels of STING in lung versus spleen following cGAMP analogue treatment suggest that there are tissue‐specific kinetics of STING activation and/or degradation in effector versus inductive sites. We also examined the mouse innate immune response to cGAMP analogue treatment. We detected that mouse cells in the immunodeficient NOG mice responded to the cGAMP analogue and they do so with distinct kinetics from the human response. In conclusion, humanized NOG mice represent a valuable experimental model for examining in vivo human STING responses.
机译:发明内容众所周知的是,STING信号通路对于产生对病原体的强大的先天免疫反应至关重要。然而,人和小鼠刺戳信号通路不相同。例如,小鼠缺少IFI 16,这已被证明对人类刺痛途径很重要。因此,我们研究人源化小鼠是否是用于探索体内人类尖锐信号级联的适当实验平台。我们发现用人脐带血血液血管干细胞(人源化的Nog小鼠)重构的Nog小鼠表现出对环状二核苷酸Cgamp的类似物的人谱信令响应。接受CGAMP模拟的小鼠肺部的单核细胞比例增加了。在表现出最高水平的人嵌合化水平的小鼠中观察到最强大的刺痛表达和刺痛的反应。值得注意的是,CGAMP模拟治疗后肺肺与脾脏的差异水平表明,在效应部位与诱导位点的术术和/或降解存在组织特异性动力学。我们还检查了对CGAMP模拟处理的鼠标先天免疫应答。我们检测到免疫缺陷小鼠中的小鼠细胞对CGAMP模拟作出反应,它们从人类反应中具有不同的动力学。总之,人源化的腹部小鼠代表了体内人类刺痛响应检查的宝贵实验模型。

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