Abstract
Mammalian macrophages can adopt polarization states that, depending on the exact stimuli present in their extracellular environment, can lead to very different functions. Although these different polarization states have been shown primarily for macrophages of humans and mice, it is likely that polarized macrophages with corresponding phenotypes exist across mammals. Evidence of functional conservation in macrophages from teleost fish suggests that the same, or at least comparable polarization states should also be present in teleosts. However, corresponding transcriptional profiles of marker genes have not been reported thus far. In this study we confirm that macrophages from common carp can polarize into M1- and M2 phenotypes with conserved functions and corresponding transcriptional profiles compared to mammalian macrophages. Carp M1 macrophages show increased production of nitric oxide and a transcriptional profile with increased pro-inflammatory cytokines and mediators, including il6, il12 and saa. Carp M2 macrophages show increased arginase activity and a transcriptional profile with increased anti-inflammatory mediators, including cyr61, timp2b and tgm2b. Our RNA sequencing approach allowed us to list, in an unbiased manner, markers discriminating between M1 and M2 macrophages of teleost fish. We discuss the importance of our findings for the evaluation of immunostimulants for aquaculture and for the identification of gene targets to generate transgenic zebrafish for detailed studies on M1 and M2 macrophages. Above all, we discuss the striking degree of evolutionary conservation of macrophage polarization in a lower vertebrate.
| Original language | English |
|---|---|
| Article number | 13470 |
| Number of pages | 15 |
| Journal | Scientific Reports |
| Volume | 10 |
| DOIs | |
| Publication status | Published - 10 Aug 2020 |
| Externally published | Yes |
Funding
The authors gratefully acknowledge Professor T. Moritomo and Dr. F. Katakura for the expression plasmid encoding recombinant Il-4/13b1 and for their protocols for recombinant protein expression. The authors gratefully acknowledge Willy van den Berg and Mirelle Kleuskens for their contribution in the production of recombinant Il-4/13b1 and Edwin Tijhaar for the production of recombinant Ifn-γ. This work was supported by the European Commission under the 8th (H2020) Framework Program for Research and Technological Development of the European Union (PARAFISHCONTROL Grant No. 634429) and by the 7th Framework program [NEMO Grant No. PITN-GA-2008–214505]. This publication reflects the views only of the authors, and the European Commission cannot be held responsible for any use which may be made of the information.
| Funders | Funder number |
|---|---|
| European Union's Horizon 2020 - Research and Innovation Framework Programme | |
| European Commission | 634429, H2020 |
Keywords
- Animals
- Anti-Inflammatory Agents/pharmacology
- Carps/genetics
- Cell Polarity/physiology
- Cytokines/pharmacology
- Fishes
- Interleukin-12/pharmacology
- Macrophage Activation
- Macrophages/cytology
- Nitric Oxide/pharmacology
- Sequence Analysis, RNA/methods
- Signal Transduction
- Transcriptome
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