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Observation and characterisation of macrophages in zebrafish liver
Delfine Cheng1, Marco Morsch2, Gerald J Shami1
1School of Medical Sciences (Discipline of Anatomy and Histology) - The Bosch Institute, The University of Sydney, NSW 2006, Australia.
Abstract:
Kupffer cells are liver-resident macrophages that play an important role in mediating immune-related functions in mammals and humans. They are well-known for their capacity to phagocytose large amounts of waste complexes, cell debris, microbial particles and even malignant cells. Location, appearance and functional aspects are important features used to identify these characteristic cells of the liver sinusoid. To-date, there is limited information on the occurrence of macrophages in zebrafish liver. Therefore, we aimed to characterise the ultrastructural and functional aspects of liver-associated macrophages in the zebrafish model by taking advantage of the latest advances in zebrafish genetics and multimodal correlative imaging. Herein, we report on the occurrence of macrophages within the zebrafish liver exhibiting conventional ultrastructural features (e.g. presence of pseudopodia, extensive lysosomal apparatus, a phagolysosome and making up ∼3% of the liver volume). Intriguingly, these cells were not located within the sinusoidal vascular bed of hepatic tissue but instead resided between hepatocytes and lacked phagocytic function. While our results demonstrated the presence and structural similarities with liver macrophages from other experimental models, their functional characteristics were distinctly different from Kupffer cells that have been described in rodents and humans. These findings illustrate that the innate immune system of the zebrafish liver has some distinctly different characteristics compared to other animal experimental models. This conclusion underpins our call for future studies in order to have a better understanding of the physiological role of macrophages residing between the parenchymal cells of the zebrafish liver.
Insights
Zebrafish liver macrophages share structural similarities with Kupffer cells but lack phagocytic function and reside between hepatocytes, not in sinusoids. This highlights unique innate immune characteristics in zebrafish liver compared to mammals.
Area of Science:
- Immunology
- Cell Biology
- Zebrafish Model Organisms
Background:
- Kupffer cells are crucial liver-resident macrophages in mammals, known for phagocytosis and immune regulation within liver sinusoids.
- Limited understanding exists regarding macrophages in the zebrafish liver, a key model organism for biological research.
Purpose of the Study:
- To characterize the ultrastructural and functional aspects of liver-associated macrophages in zebrafish.
- To investigate the location and phagocytic capabilities of these cells using advanced imaging techniques.
Main Methods:
- Utilized zebrafish genetics and multimodal correlative imaging to study liver macrophages.
- Examined ultrastructural features, cellular location, and phagocytic activity.
Main Results:
- Identified macrophages in zebrafish liver with conventional ultrastructural features, comprising approximately 3% of liver volume.
- Observed these macrophages located between hepatocytes, not within the sinusoidal vascular bed.
- Demonstrated a lack of phagocytic function in these zebrafish liver macrophages.
Conclusions:
- Zebrafish liver macrophages exhibit distinct functional characteristics compared to mammalian Kupffer cells, particularly regarding phagocytosis and location.
- These findings reveal unique aspects of the zebrafish innate immune system in the liver.
- Further research is needed to elucidate the physiological role of these unique liver-resident macrophages in zebrafish.

