Abstract
Invertebrates are becoming increasingly popular models for research on the immune system. The innate immunity possessed by insects shows both structural and functional similarity to the resistance displayed by mammals, and many processes occurring in insect hemocytes are similar to those that occur in mammals. However, the use of insects as research models requires the development of methods for working with hemocytes. The aim of this study was to develop a protocol for intracellular cytokine detection inGalleria mellonellalarvae hemocytes based on flow cytometry. It describes the anticoagulant composition of the buffer, the optimal conditions for hemocyte permeabilization and fixation, as well as the conditions of cell centrifugation to prevent cell disintegration. A key element is the selection of staining conditions, especially the length of the incubation time with the primary antibody, which turned out to be much longer than recommended for mammalian cells. The development of these individual steps allowed for the creation of a reproducible protocol for cytokine detection using flow cytometry in wax moth hemocytes. This will certainly facilitate the development of further protocols allowing for wider use of insect cells in immunological research.
Publisher
Public Library of Science (PLoS)
Reference32 articles.
1. Detection of Intracellular Cytokines by Flow Cytometry;Y Yin;Curr Protoc Immunol.,2015
2. Flow Cytometry: An Overview;KM McKinnon;Curr Protoc Immunol,2018
3. Multiparameter intracellular cytokine staining;P Lovelace;Methods Mol Biol,2011
4. Recent Advances in the Use of Galleria mellonella Model to Study Immune Responses against Human Pathogens;TC Pereira;J Fungi [Basel],2018
5. Isolation and primary culture of Galleria mellonella hemocytes for infection studies;NJ Senior;F1000Res,2020
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