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Published on: February 18, 2020
Macrophages mediate flagellin induced inflammasome activation and host defense in zebrafish
William J B Vincent1,2, Christina M Freisinger2,3, Pui-Ying Lam4
1Microbiology Doctoral Training Program, University of Wisconsin-Madison, Madison, Wisconsin, 53706, USA.
Abstract:
The inflammasome is an innate immune complex whose rapid inflammatory outputs play a critical role in controlling infection; however, the host cells that mediate inflammasome responses in vivo are not well defined. Using zebrafish larvae, we examined the cellular immune responses to inflammasome activation during infection. We compared the host responses with two Listeria monocytogenes strains: wild type and Lm-pyro, a strain engineered to activate the inflammasome via ectopic expression of flagellin. Infection with Lm-pyro led to activation of the inflammasome, macrophage pyroptosis and ultimately attenuation of virulence. Depletion of caspase A, the zebrafish caspase-1 homolog, restored Lm-pyro virulence. Inflammasome activation specifically recruited macrophages to infection sites, whereas neutrophils were equally recruited to wild type and Lm-pyro infections. Similar to caspase A depletion, macrophage deficiency rescued Lm-pyro virulence to wild-type levels, while defective neutrophils had no specific effect. Neutrophils were, however, important for general clearance of L. monocytogenes, as both wild type and Lm-pyro were more virulent in larvae with defective neutrophils. This study characterizes a novel model for inflammasome studies in an intact host, establishes the importance of macrophages during inflammasome responses and adds importance to the role of neutrophils in controlling L. monocytogenes infections.
Insights
Zebrafish studies reveal macrophages are key immune cells mediating inflammasome responses during Listeria infection. This innate immunity complex activation leads to pyroptosis and reduced bacterial virulence.
Area of Science:
- Immunology
- Microbiology
- Zebrafish models
Background:
- The inflammasome, an innate immune complex, is crucial for controlling infections.
- Host cells mediating inflammasome responses in vivo are not well-defined.
Purpose of the Study:
- To investigate cellular immune responses to inflammasome activation in vivo.
- To characterize the roles of macrophages and neutrophils in inflammasome-mediated immunity.
Main Methods:
- Utilized zebrafish larvae infected with wild-type and engineered Listeria monocytogenes strains (Lm-pyro).
- Examined inflammasome activation, pyroptosis, and immune cell recruitment (macrophages, neutrophils).
- Assessed the impact of caspase A (caspase-1 homolog) and immune cell depletion on virulence.
Main Results:
- Lm-pyro infection activated inflammasomes, induced macrophage pyroptosis, and attenuated virulence.
- Depletion of caspase A or macrophages restored Lm-pyro virulence.
- Inflammasome activation specifically recruited macrophages, while neutrophils were recruited to both strains.
- Neutrophils were essential for general Listeria clearance but not specifically for inflammasome responses.
Conclusions:
- Macrophages are critical host cells for inflammasome-mediated defense against Listeria.
- Zebrafish provide a valuable model for studying inflammasome responses in a whole organism.
- Neutrophils play a vital role in controlling Listeria monocytogenes infections.

