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Metabolic regulation of neutrophil functions in homeostasis and diseases. | LitMetric

Metabolic regulation of neutrophil functions in homeostasis and diseases.

J Leukoc Biol

Infectious and Immune Diseases Axis, CHU de Québec-Université Laval Research Center, 2705 Boul. Laurier, Québec City, Québec G1V 4G2, Canada.

Published: September 2024

AI Article Synopsis

  • - Neutrophils are key immune cells that respond first to infections and they utilize various metabolic pathways, including glycolysis, fatty acid oxidation, and oxidative phosphorylation, to carry out their functions beyond just glycolysis.
  • - Their metabolism changes from using fatty acids in immature neutrophils to glycolysis in mature ones, and this shift is influenced by the surrounding tissue environment, including nutrient availability and inflammation.
  • - Disruptions in neutrophil metabolism can impair essential immune functions, linking these changes to diseases like antiphospholipid syndrome and COVID-19, with potential interventions targeting metabolic regulators like AMPK and mTOR for treatment.

Article Abstract

Neutrophils are the most abundant leukocytes in humans and play a role in the innate immune response by being the first cells attracted to the site of infection. While early studies presented neutrophils as almost exclusively glycolytic cells, recent advances show that these cells use several metabolic pathways other than glycolysis, such as the pentose phosphate pathway, oxidative phosphorylation, fatty acid oxidation, and glutaminolysis, which they modulate to perform their functions. Metabolism shifts from fatty acid oxidation-mediated mitochondrial respiration in immature neutrophils to glycolysis in mature neutrophils. Tissue environments largely influence neutrophil metabolism according to nutrient sources, inflammatory mediators, and oxygen availability. Inhibition of metabolic pathways in neutrophils results in impairment of certain effector functions, such as NETosis, chemotaxis, degranulation, and reactive oxygen species generation. Alteration of these neutrophil functions is implicated in certain human diseases, such as antiphospholipid syndrome, coronavirus disease 2019, and bronchiectasis. Metabolic regulators such as AMPK, HIF-1α, mTOR, and Arf6 are linked to neutrophil metabolism and function and could potentially be targeted for the treatment of diseases associated with neutrophil dysfunction. This review details the effects of alterations in neutrophil metabolism on the effector functions of these cells.

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Source
http://dx.doi.org/10.1093/jleuko/qiae025DOI Listing

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