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IgM抗体在尿酸钠晶体形成及相关佐剂性中的作用。

A role of IgM antibodies in monosodium urate crystal formation and associated adjuvanticity.

作者信息

Kanevets Uliana, Sharma Karan, Dresser Karen, Shi Yan

机构信息

Immunology Research Group and Department of Microbiology and Infectious Diseases, University of Calgary, Calgary, Alberta, Canada.

出版信息

J Immunol. 2009 Feb 15;182(4):1912-8. doi: 10.4049/jimmunol.0803777.

Abstract

Uric acid is released from injured cells and can act as an adjuvant signal to the immune system. Uric acid crystals invoke strong inflammatory responses in tissues. Although their biological effects are evident and the associated signaling mechanisms are becoming clear, it remains unexplained as to why uric acid precipitates rapidly in vivo, in sharp contrast to the minimal crystallization in vitro. We report in this study that a group of IgM Abs is able to bind to these crystals, which is interesting in light that B cell-deficient mice do not sense the proinflammatory adjuvant effect of uric acid. The titers of these Abs increase upon immunization with uric acid crystals. We have produced large quantities of such mAbs. The purified IgM Abs can significantly facilitate uric acid precipitation to form the inflammatory crystals in vitro. Infusion of these Abs into B cell-deficient mice significantly increases the basal level of inflammation in these recipients and restores the host's ability to sense uric acid's adjuvanticity. Therefore, we have identified a factor in determining uric acid precipitation and possibly its ability to function as an endogenous adjuvant. This finding suggests a new mechanism of the pathogenesis of gouty arthritis and uric acid-induced immune activation.

摘要

尿酸从受损细胞中释放出来,可作为免疫系统的辅助信号。尿酸晶体会在组织中引发强烈的炎症反应。尽管它们的生物学效应很明显,相关的信号传导机制也逐渐清晰,但与体外极少结晶形成鲜明对比的是,尿酸在体内为何会迅速沉淀仍无法解释。我们在这项研究中报告,一组IgM抗体能够结合这些晶体,鉴于B细胞缺陷小鼠无法感知尿酸的促炎佐剂效应,这一点很有趣。在用尿酸晶体免疫后,这些抗体的滴度会升高。我们已经大量生产了此类单克隆抗体。纯化的IgM抗体在体外能显著促进尿酸沉淀形成炎性晶体。将这些抗体注入B细胞缺陷小鼠体内可显著提高这些受体的基础炎症水平,并恢复宿主感知尿酸佐剂性的能力。因此,我们确定了一个决定尿酸沉淀以及可能决定其作为内源性佐剂功能的因素。这一发现提示了痛风性关节炎发病机制以及尿酸诱导免疫激活的新机制。

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