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Published on: January 9, 2019
Illuminating Macrophage Contributions to Host-Pathogen Interactions In Vivo: the Power of Zebrafish
1Department of Biological Sciences, Clemson University, Clemson, South Carolina, USA erosows@clemson.edu.
Abstract:
Macrophages are a key cell type in innate immunity. Years of in vitro cell culture studies have unraveled myriad macrophage pathways that combat pathogens and demonstrated how pathogen effectors subvert these mechanisms. However, in vitro cell culture studies may not accurately reflect how macrophages fit into the context of an innate immune response in whole animals with multiple cell types and tissues. Larval zebrafish have emerged as an intermediate model of innate immunity and host-pathogen interactions to bridge the gap between cell culture studies and mammalian models. These organisms possess an innate immune system largely conserved with that of humans and allow state-of-the-art genetic and imaging techniques, all in the context of an intact organism. Using larval zebrafish, researchers are elucidating the function of macrophages in response to many different infections, including both bacterial and fungal pathogens. The goal of this review is to highlight studies in zebrafish that utilized live-imaging techniques to analyze macrophage activities in response to pathogens. Recent studies have explored the roles of specific pathways and mechanisms in macrophage killing ability, explored how pathogens subvert these responses, identified subsets of macrophages with differential microbicidal activities, and implicated macrophages as an intracellular niche for pathogen survival and trafficking. Research using this model continues to advance our understanding of how macrophages, and specific pathways inside these cells, fit into complex multicellular innate immune responses in vivo, providing important information on how pathogens evade these pathways and how we can exploit them for development of treatments against microbial infections.
Insights
Larval zebrafish models reveal how macrophages function in whole-organism immunity against pathogens. Live imaging shows macrophage roles in fighting infections and how microbes evade these critical innate immune cells.
Area of Science:
- Immunology
- Microbiology
- Developmental Biology
Background:
- Macrophages are crucial for innate immunity, with many functions studied in vitro.
- In vitro studies may not fully represent macrophage roles in complex in vivo immune responses.
- Larval zebrafish offer a conserved, whole-organism model for studying innate immunity.
Purpose of the Study:
- To review studies using live-imaging in zebrafish to analyze macrophage responses to pathogens.
- To highlight how macrophages combat infections and how pathogens subvert these defenses in vivo.
Main Methods:
- Live-imaging techniques in larval zebrafish.
- Genetic and advanced imaging approaches in an intact organism.
- Analysis of bacterial and fungal infections in zebrafish models.
Main Results:
- Zebrafish studies elucidate macrophage killing mechanisms and pathogen evasion strategies.
- Identification of distinct macrophage subsets with varying microbicidal activities.
- Macrophages serve as intracellular niches for pathogen survival and dissemination.
Conclusions:
- Larval zebrafish models advance understanding of in vivo macrophage function in innate immunity.
- Insights into pathogen evasion of macrophage-mediated defenses inform therapeutic strategies.
- This model system is key for developing new treatments against microbial infections.

