Yoshida Nagisa, Frickel Eva-Maria, Mostowy Serge
Host-Toxoplasma Interaction Laboratory, The Francis Crick Institute, London, United Kingdom.
Section of Microbiology, MRC Centre for Molecular Bacteriology and Infection, Imperial College London, London, United Kingdom.
Front Immunol. 2017 Dec 1;8:1703. doi: 10.3389/fimmu.2017.01703. eCollection 2017.
Macrophages provide front line defense against infections. The study of macrophage-microbe interplay is thus crucial for understanding pathogenesis and infection control. Zebrafish () larvae provide a unique platform to study macrophage-microbe interactions , from the level of the single cell to the whole organism. Studies using zebrafish allow non-invasive, real-time visualization of macrophage recruitment and phagocytosis. Furthermore, the chemical and genetic tractability of zebrafish has been central to decipher the complex role of macrophages during infection. Here, we discuss the latest developments using zebrafish models of bacterial and fungal infection. We also review novel aspects of macrophage biology revealed by zebrafish, which can potentiate development of new therapeutic strategies for humans.
巨噬细胞为抵御感染提供一线防御。因此,研究巨噬细胞与微生物的相互作用对于理解发病机制和感染控制至关重要。斑马鱼幼虫为研究巨噬细胞与微生物的相互作用提供了一个独特的平台,从单细胞水平到整个生物体水平。利用斑马鱼进行的研究能够对巨噬细胞的募集和吞噬作用进行非侵入性的实时可视化观察。此外,斑马鱼在化学和遗传学方面的易操作性对于解读巨噬细胞在感染过程中的复杂作用至关重要。在此,我们讨论利用斑马鱼细菌和真菌感染模型所取得的最新进展。我们还综述了斑马鱼揭示的巨噬细胞生物学的新方面,这可能会促进人类新治疗策略的开发。