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Updated: Aug 27, 2025

Real-Time Measurement of the Mitochondrial Bioenergetic Profile of Neutrophils
Published on: June 2, 2023
CARD9 in neutrophils protects from colitis and controls mitochondrial metabolism and cell survival
Camille Danne1,2,3, Chloé Michaudel4,3, Jurate Skerniskyte5
1Université Paris-Saclay, INRAE, AgroParisTech, Micalis Institute, Jouy-en-Josas, France camille.danne@gmail.com harry.sokol@aphp.fr.
Insights
Caspase recruitment domain 9 (CARD9) protects against inflammatory bowel disease (IBD) by maintaining neutrophil function. CARD9 deficiency impairs neutrophil mitochondria, leading to apoptosis and increased susceptibility to gut inflammation.
Area of Science:
- Immunology
- Gastroenterology
- Microbiology
Background:
- Inflammatory bowel disease (IBD) involves genetic, microbial, and environmental factors causing chronic gut inflammation.
- Caspase recruitment domain 9 (CARD9) is an IBD susceptibility gene offering protection against intestinal inflammation and fungal infections.
- The specific cell types and mechanisms underlying CARD9's protective role in IBD remain unclear.
Purpose of the Study:
- To identify the specific cell types mediating CARD9's protective effects in intestinal inflammation.
- To elucidate the molecular mechanisms by which CARD9 influences immune cell function in the context of IBD.
Main Methods:
- Utilized dextran sulfate sodium (DSS)-induced and adoptive transfer colitis mouse models with CARD9 knockout.
- Assessed neutrophil function via fungal infection models, flow cytometry, proteomics, and bioenergetic profiling (Seahorse).
Main Results:
- CARD9's protective role against colitis is neutrophil-dependent, not involving lymphocytes, epithelial cells, or CD11c+ cells.
- CARD9 deficiency causes mitochondrial dysfunction in neutrophils, increasing reactive oxygen species (ROS) and leading to premature apoptosis.
- Impaired neutrophil function in CARD9-deficient mice contributes to poor fungal containment and heightened susceptibility to intestinal inflammation.
Conclusions:
- CARD9 is crucial for maintaining neutrophil mitochondrial function and integrity.
- Neutrophil dysfunction resulting from CARD9 deficiency exacerbates intestinal inflammation.
- Targeting neutrophil function presents a potential therapeutic strategy for IBD.
Objectives:
Inflammatory bowel disease (IBD) results from a combination of genetic predisposition, dysbiosis of the gut microbiota and environmental factors, leading to alterations in the gastrointestinal immune response and chronic inflammation. Caspase recruitment domain 9 (Card9), one of the IBD susceptibility genes, has been shown to protect against intestinal inflammation and fungal infection. However, the cell types and mechanisms involved in the CARD9 protective role against inflammation remain unknown.
Design:
We used dextran sulfate sodium (DSS)-induced and adoptive transfer colitis models in total and conditional CARD9 knock-out mice to uncover which cell types play a role in the CARD9 protective phenotype. The impact of Card9 deletion on neutrophil function was assessed by an in vivo model of fungal infection and various functional assays, including endpoint dilution assay, apoptosis assay by flow cytometry, proteomics and real-time bioenergetic profile analysis (Seahorse).
Results:
Lymphocytes are not intrinsically involved in the CARD9 protective role against colitis. CARD9 expression in neutrophils, but not in epithelial or CD11c+cells, protects against DSS-induced colitis. In the absence of CARD9, mitochondrial dysfunction increases mitochondrial reactive oxygen species production leading to the premature death of neutrophilsthrough apoptosis, especially in oxidative environment. The decreased functional neutrophils in tissues might explain the impaired containment of fungi and increased susceptibility to intestinal inflammation.
Conclusion:
These results provide new insight into the role of CARD9 in neutrophil mitochondrial function and its involvement in intestinal inflammation, paving the way for new therapeutic strategies targeting neutrophils.
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