Numerous intracellular bacterial pathogens interfere with macrophage function, including macrophage polarization, to establish a niche and persist. However, the spatiotemporal dynamics of macrophage polarization during infection within host remain to be investigated. Here, we implement a model of persistent Salmonella Typhimurium infection in zebrafish, which allows visualization of polarized macrophages and bacteria in real time at high resolution. While macrophages polarize toward M1-like phenotype to control early infection, during later stages, Salmonella persists inside non-inflammatory clustered macrophages. Transcriptomic profiling of macrophages showed a highly dynamic signature during infection characterized by a switch from pro-inflammatory to anti-inflammatory/pro-regenerative status and revealed a shift in adhesion program. In agreement with this specific adhesion signature, macrophage trajectory tracking identifies motionless macrophages as a permissive niche for persistent Salmonella. Our results demonstrate that zebrafish model provides a unique platform to explore, in a whole organism, the versatile nature of macrophage functional programs during bacterial acute and persistent infections.
Dynamics of macrophage polarization support Salmonella persistence in a whole living organism.
巨噬细胞极化的动态变化支持沙门氏菌在整个活体生物体内的持续存在
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作者:Leiba Jade, Sipka Tamara, Begon-Pescia Christina, Bernardello Matteo, Tairi Sofiane, Bossi Lionello, Gonzalez Anne-Alicia, Mialhe Xavier, Gualda Emilio J, Loza-Alvarez Pablo, Blanc-Potard Anne, Lutfalla Georges, Nguyen-Chi Mai E
| 期刊: | Elife | 影响因子: | 6.400 |
| 时间: | 2024 | 起止号: | 2024 Jan 15; 13:e89828 |
| doi: | 10.7554/eLife.89828 | 研究方向: | 细胞生物学 |
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