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Open AccessJournal ArticleDOI

Gout-associated uric acid crystals activate the NALP3 inflammasome

TLDR
It is shown that MSU and CPPD engage the caspase-1-activating NALP3 (also called cryopyrin) inflammasome, resulting in the production of active interleukin (IL)-1β and IL-18 in mice deficient in the IL-1β receptor.
Abstract
Development of the acute and chronic inflammatory responses known as gout and pseudogout are associated with the deposition of monosodium urate (MSU) or calcium pyrophosphate dihydrate (CPPD) crystals, respectively, in joints and periarticular tissues. Although MSU crystals were first identified as the aetiological agent of gout in the eighteenth century and more recently as a 'danger signal' released from dying cells, little is known about the molecular mechanisms underlying MSU- or CPPD-induced inflammation. Here we show that MSU and CPPD engage the caspase-1-activating NALP3 (also called cryopyrin) inflammasome, resulting in the production of active interleukin (IL)-1beta and IL-18. Macrophages from mice deficient in various components of the inflammasome such as caspase-1, ASC and NALP3 are defective in crystal-induced IL-1beta activation. Moreover, an impaired neutrophil influx is found in an in vivo model of crystal-induced peritonitis in inflammasome-deficient mice or mice deficient in the IL-1beta receptor (IL-1R). These findings provide insight into the molecular processes underlying the inflammatory conditions of gout and pseudogout, and further support a pivotal role of the inflammasome in several autoinflammatory diseases.

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Inflammasomes and their roles in health and disease.

TL;DR: This review presents recently gained insight on the distinct inflammasome types, their activation and effector mechanisms, and their modulation by microbial virulence factors and discusses recently gained knowledge on the role of deregulated inflammal activity in human autoinflammatory, autoimmune, and infectious diseases.
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TLRs, NLRs and RLRs: a trinity of pathogen sensors that co-operate in innate immunity.

TL;DR: It is hypothesize that during the first phase of the host response to infection, an important interplay occurs between these families, providing a substantial combinatorial repertoire in innate immunity.
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Role of inflammation in the pathogenesis of osteoarthritis: latest findings and interpretations

TL;DR: This review will discuss a wide range of evolving data leading to the current hypotheses regarding the role of immune activation and inflammation in OA onset and progression as this is the joint most well characterized by epidemiologic, imaging, and translational studies investigating the association of inflammation with OA.
Journal ArticleDOI

Inflammatory caspases and inflammasomes: master switches of inflammation

TL;DR: The role of inflammasomes and inflammatory caspases in innate immunity against pathogens, autoinflammatory syndromes and in the biology of reproduction is highlighted, underlining the importance of the NLR family members, NALPs, NAIP and IPAF.
References
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Journal ArticleDOI

Innate Immune Recognition

TL;DR: Microbial recognition by Toll-like receptors helps to direct adaptive immune responses to antigens derived from microbial pathogens to distinguish infectious nonself from noninfectious self.
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The inflammasome: a molecular platform triggering activation of inflammatory caspases and processing of proIL-beta.

TL;DR: In this article, the inflammasome is identified as a caspase-activating complex that comprises caspases-1, casp-5, Pycard/Asc, and NALP1, a Pyrin domain-containing protein sharing structural homology with NODs.
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The Danger Model: A Renewed Sense of Self

TL;DR: A model of immunity based on the idea that the immune system is more concerned with entities that do damage than with those that are foreign is outlined.
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Differential activation of the inflammasome by caspase-1 adaptors ASC and Ipaf.

TL;DR: Interestingly, cell death triggered by stimuli that engage caspase-1 was ablated in macrophages lacking either ASC or Ipaf, suggesting a coupling between the inflammatory and cell death pathways.
Journal ArticleDOI

Molecular identification of a danger signal that alerts the immune system to dying cells

TL;DR: Uric acid stimulates dendritic cell maturation and, when co-injected with antigen in vivo, significantly enhances the generation of responses from CD8+ T cells, and have important implications for vaccines, autoimmunity and inflammation.
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