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Updated: Apr 10, 2026

Live Imaging of Chemokine Receptors in Zebrafish Neutrophils During Wound Responses
Published on: December 4, 2020
Defining the phenotype of neutrophils following reverse migration in zebrafish
Felix Ellett1, Philip M Elks1, Anne L Robertson1
1Bateson Centre and Department of Infection and Immunity, University of Sheffield, Sheffield, United Kingdom.
Abstract:
Stimulation of neutrophil reverse migration presents an attractive, alternative therapeutic pathway to driving inflammation resolution. However, little is known about whether the activity of wound-experienced neutrophils is altered and whether encouraging dispersal of such neutrophils back into the body may have undesirable consequences. This study used a zebrafish tail transection inflammation model, in combination with a photoconvertible neutrophil transgenic line, to allow internally controlled, simultaneous comparison of reverse-migrated neutrophils with naïve neutrophils in the presence and absence of secondary insult. Detailed microscopy revealed that reverse-migrated neutrophils exhibited an activated morphology but responded normally to secondary insult and are able to mount an effective antimicrobial response to Staphylococcus aureus. These results support a model in which reverse-migrated neutrophils exhibit no long-term behavioral alterations and encourage the notion of enhanced reverse migration as a viable target for pharmaceutical manipulation.
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