首页> 美国卫生研究院文献>The American Journal of Pathology >The Inhibitory Receptor FcγRII Reduces Joint Inflammation and Destruction in Experimental Immune Complex-Mediated Arthritides Not Only by Inhibition of FcγRI/III but Also by Efficient Clearance and Endocytosis of Immune Complexes
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The Inhibitory Receptor FcγRII Reduces Joint Inflammation and Destruction in Experimental Immune Complex-Mediated Arthritides Not Only by Inhibition of FcγRI/III but Also by Efficient Clearance and Endocytosis of Immune Complexes

机译:抑制性受体FcγRII不仅通过抑制FcγRI/ III而且通过有效清除和免疫复合物的内吞作用减少了实验性免疫复合物介导的关节炎中的关节发炎和破坏。

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摘要

Studies of FcγRII−/− mice identified the inhibitory function of this receptor in joint inflammation and cartilage destruction induced with immune complexes (ICs). To extend our insight in the role of FcγRII in arthritis, we explored the role of FcγRII in the absence of activating receptors I and III using FcγRI/III−/− as well as FcγRI/II/III−/− mice. When antigen-induced arthritis (AIA) was elicited, which is a mixture of T cell and IC-driven inflammation, arthritis was almost absent at day 7 in FcγRI/III−/− mice. Remarkably, in FcγRI/II/III−/− mice, this model induced a tremendously increased arthritis as compared to wild-type controls. This implies that FcγRII regulates joint inflammation also in the absence of activating FcγRI and III. To confirm the IC specificity of this finding, similar studies were done with ICs or zymosan as arthritogenic stimuli. Strongly elevated inflammation was found in FcγRI/II/III−/− mice with IC but not with zymosan. Clearance studies identified accumulation of IgG in the knee joint in the absence of FcγRII. Moreover, macrophages expressing only FcγRII showed prominent endocytosis of preformed soluble ICs not different from controls. In total absence of FcγR (FcγRI/II/III−/−), macrophages completely failed to endocytose ICs. Although joint inflammation was much higher in AIA arthritic knee joints of FcγRI/II/III−/− and the inflammatory cells still expressed an inflammatory phenotype, severe cartilage destruction (MMP-mediated neoepitopes in the matrix and chondrocyte death) was completely prevented in contrast to the marked destruction which was observed in the wild-type. Our study indicates that FcγRII reduces joint inflammation in the absence of activating FcγR by promoting endocytosis and clearance of ICs from the joint. Infiltrating cells, which fail to express activating FcγR although they still become stimulated are no longer capable of inducing severe cartilage destruction.
机译:FcγRII-/-小鼠的研究确定了该受体在免疫复合物(IC)诱导的关节炎症和软骨破坏中的抑制功能。为了扩展我们对FcγRII在关节炎中的作用的认识,我们使用FcγRI/ III-/-和FcγRI/ II / III-/-小鼠探索了在不存在活化受体I和III的情况下FcγRII的作用。当引起抗原诱导的关节炎(AIA)时,它是T细胞和IC驱动的炎症的混合物,在FcγRI/ III-/-小鼠中,第7天几乎没有关节炎。值得注意的是,与野生型对照相比,在FcγRI/ II / III-/-小鼠中,该模型诱发的关节炎大大增加。这意味着在没有活化的FcγRI和III的情况下,FcγRII也调节关节炎症。为了证实该发现的IC特异性,使用IC或酵母聚糖作为促关节炎的刺激物进行了类似的研究。 FcγRI/ II / III-/-小鼠中,IC引起的炎症强烈增强,而酵母聚糖则没有。清除研究确定了在不存在FcγRII的情况下IgG在膝关节中的蓄积。而且,仅表达FcγRII的巨噬细胞显示出与对照无异的预先形成的可溶性IC的显着内吞作用。在完全不存在FcγR(FcγRI/ II / III-/-)的情况下,巨噬细胞完全无法吞噬IC。尽管在FcγRI/ II / III-/-的AIA关节炎膝关节中关节炎症更高,并且炎症细胞仍表现出炎症表型,但相比之下,完全防止了严重的软骨破坏(基质中MMP介导的新表位和软骨细胞死亡)在野生型中观察到明显的破坏。我们的研究表明,在不激活FcγR的情况下,FcγRII通过促进胞吞作用和清除关节中IC的作用来减轻关节炎症。尽管仍受到刺激,但无法表达活化性FcγR的浸润细胞不再能够诱导严重的软骨破坏。

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