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Dysregulated NADPH Oxidase Promotes Bone Damage in Murine Model of Autoinflammatory Osteomyelitis

Jarmila Králová, Ales Drobek, Jan Procházka, František Špoutil, Matej Fabišik, Daniela Glatzová, Šimon Borna, Jana Pokorná, Tereza Skopcova, Pavla Angelisová, Martin Gregor, Pavel Kovarik, Radislav Sedláček, Tomáš Brdička

2020The Journal of Immunology15 citationsDOI

Abstract

Abstract Autoinflammatory diseases are characterized by dysregulation of the innate immune system, leading to spontaneous inflammation. Pstpip2cmo mouse strain is a well-characterized model of this class of disorders. Because of the mutation leading to the lack of adaptor protein PSTPIP2, these animals suffer from autoinflammatory chronic multifocal osteomyelitis similar to several human syndromes. Current evidence suggests that it is driven by hyperproduction of IL-1β by neutrophil granulocytes. In this study, we show that in addition to IL-1β, PSTPIP2 also negatively regulates pathways governing reactive oxygen species generation by neutrophil NOX2 NADPH oxidase. Pstpip2cmo neutrophils display highly elevated superoxide production in response to a range of stimuli. Inactivation of NOX2 NADPH oxidase in Pstpip2cmo mice did not affect IL-1β levels, and the autoinflammatory process was initiated with similar kinetics. However, the bone destruction was almost completely alleviated, suggesting that dysregulated NADPH oxidase activity is a key factor promoting autoinflammatory bone damage in Pstpip2cmo mice.

Topics & Concepts

NADPH oxidaseInnate immune systemInflammationImmunologyCell biologySuperoxideReactive oxygen speciesChemistryImmune systemBiologyBiochemistryEnzymeInflammasome and immune disordersOsteomyelitis and Bone Disorders ResearchNeutrophil, Myeloperoxidase and Oxidative Mechanisms