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1.
Exp Parasitol ; 220: 108034, 2021 Jan.
Article in English | MEDLINE | ID: mdl-33188795

ABSTRACT

Eimeria ninakohlyakimovae represents a highly pathogenic coccidian parasite causing severe haemorrhagic typhlocolitis in goat kids worldwide. NETosis was recently described as an efficient defense mechanism of polymorphonuclear neutrophils (PMN) acting against different parasites in vitro and in vivo. In vitro interactions of caprine PMN with parasitic stages of E. ninakohlyakimovae (i. e. oocysts and sporozoites) as well as soluble oocyst antigens (SOA) were analyzed at different ratios, concentrations and time spans. Extracellular DNA staining was used to illustrate classical molecules induced during caprine NETosis [i. e. histones (H3) and neutrophil elastase (NE)] via antibody-based immunofluorescence analyses. Functional inhibitor treatments with DPI and DNase I were applied to unveil role of NADPH oxidase (NOX) and characterize DNA-backbone composition of E. ninakohlyakimovae-triggered caprine NETosis. Scanning electron microscopy (SEM)- and immunofluorescence-analyses demonstrated that caprine PMN underwent NETosis upon contact with sporozoites and oocysts of E. ninakohlyakimovae, ensnaring filaments which firmly entrapped parasites. Detailed co-localization studies of E. ninakohlyakimovae-induced caprine NETosis revealed presence of PMN-derived DNA being adorned with nuclear H3 and NE corroborating molecular characteristics of NETosis. E. ninakohlyakoimovae-induced caprine NETosis was found to be NOX-independent since DPI inhibition led to a slight decrease of NETosis. Exposure of caprine PMN to vital E. ninakohlyakimovae sporozoites as well as SOA resulted in up-regulation of IL-12, TNF-α, IL-6, CCL2 and iNOS gene transcription in stimulated PMN. Since vital E. ninakohlyakimovae-sporozoites induced caprine NETosis, this effective entrapment mechanism might reduce initial sporozoite epithelial host cell invasion during goat coccidiosis ultimately resulting in less macromeront formation and reduced merozoites I production.


Subject(s)
Coccidiosis/veterinary , Cytokines/genetics , Eimeria/immunology , Goat Diseases/parasitology , Neutrophils/parasitology , Analysis of Variance , Animals , Chemokine CCL2/genetics , Chemokine CCL2/metabolism , Coccidiosis/immunology , Coccidiosis/parasitology , Colitis/parasitology , Colitis/veterinary , Cytokines/metabolism , Eimeria/genetics , Eimeria/ultrastructure , Gastrointestinal Hemorrhage/parasitology , Gastrointestinal Hemorrhage/veterinary , Goat Diseases/immunology , Goats , Interleukin-12/genetics , Interleukin-12/metabolism , Interleukin-6/genetics , Interleukin-6/metabolism , Microscopy, Electron, Scanning/veterinary , NADPH Oxidases/metabolism , Neutrophils/immunology , Neutrophils/ultrastructure , Nitric Oxide Synthase Type II/genetics , Nitric Oxide Synthase Type II/metabolism , Oocysts/genetics , Oocysts/immunology , Polymerase Chain Reaction/veterinary , Sporozoites/genetics , Sporozoites/immunology , Transcription, Genetic , Tumor Necrosis Factor-alpha/genetics , Tumor Necrosis Factor-alpha/metabolism , Typhlitis/parasitology , Typhlitis/veterinary , Up-Regulation
2.
Vet Parasitol ; 227: 143-50, 2016 Aug 30.
Article in English | MEDLINE | ID: mdl-27523951

ABSTRACT

Extracellular trap (ET) formation has been demonstrated as novel effector mechanism against diverse pathogens in polymorphonuclear neutrophils (PMN), eosinophils, mast cells, macrophages and recently also in monocytes. In the current study, we show that E. ninakohlyakimovae triggers the deliverance of monocyte-derived ETs in vitro. Fluorescence illustrations as well as scanning electron microscopy (SEM) analyses showed that monocyte-derived ET formation was rapidly induced upon exposure to viable sporozoites, sporocysts and oocysts of E. ninakohlyakimovae. Classical features of monocyte-released ETs were confirmed by the co-localization of extracellular DNA adorned with myeloperoxidase (MPO) and histones (H3) in parasite-entrapping structures. The treatment of caprine monocyte ET structures with NADPH oxidase inhibitor diphenylene iodondium (DPI) significantly reduced ETosis confirming the essential role of reactive oxygen species (ROS) in monocyte mediated ETs formation. Additionally, co-culture of monocytes with viable sporozoites and soluble oocyst antigen (SOA) induced distinct levels of cytokine and chemokine gene transcription. Thus, the transcription of genes encoding for IL-12 and TNF-α was significantly upregulated after sporozoite encounter. In contrast IL-6 and CCL2 gene transcripts were rather weakly induced by parasites. Conversely, SOA only induced the up-regulation of IL-6 and CCL2 gene transcription, and failed to enhance transcripts of IL-12 and TNF-α in vitro. We here report on monocyte-triggered ETs as novel effector mechanism against E. ninakohlyakimovae. Our results strongly suggest that monocyte-mediated innate immune reactions might play an important role in early host immune reactions against E. ninakohlyakimovae in goats.


Subject(s)
Cytokines/metabolism , Eimeria/classification , Gene Expression Regulation/immunology , Monocytes/physiology , NADPH Oxidases/metabolism , Animals , Cells, Cultured , Chemokine CCL2/genetics , Chemokine CCL2/metabolism , Cytokines/genetics , Goat Diseases/parasitology , Goats , Interleukin-12/genetics , Interleukin-12/metabolism , Interleukin-6/genetics , Interleukin-6/metabolism , Monocytes/ultrastructure , NADPH Oxidases/genetics , Tumor Necrosis Factor-alpha/genetics , Tumor Necrosis Factor-alpha/metabolism , Up-Regulation
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