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Osteoclasts in arthritis and Th17 cell development.

机译:关节炎和Th17细胞发育中的骨核苷酸。

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Bone destruction associated with rheumatoid arthritis (RA) is mainly attributed to the abnormal activation of osteoclasts, which are terminally differentiated cells of monocyte/macrophage lineage that resorb bone matrix. Studies on the immune regulation of osteoclasts in RA have promoted the new research field of osteoimmunology systems at the molecular level. This interdisciplinary field is proving to be crucial to advances in the treatment of diseases associated with the bone and/or immune systems. As for the mechanisms of the bone destruction found in RA, accumulating evidence lends support to the theory that interleukin (IL)-17-producing helper T (Th17) cells induce the expression of receptor activator of nuclear factor-kappaB ligand (RANKL) in synovial cells, which in turn stimulates the differentiation and activation of osteoclasts together with inflammatory cytokines. Thus, inhibition of Th17 is potentially beneficial for the amelioration of the bone damage which occurs in RA. A recent study revealed that IkappaBzeta is essential to the development of Th17 cells. These findings comprise an important advance in our understanding of the pathogenesis of RA and potentially effective therapeutic strategies.
机译:与类风湿性关节炎(RA)相关的骨破坏主要归因于破骨细胞的异常激活,其是重复骨基质的单核细胞/巨噬细胞谱系的末端分化细胞。 RA骨骨骨膜免疫调节的研究促进了分子水平的骨苗系统新研究领域。该跨学域旨在对治疗与骨和/或免疫系统相关的疾病的进步至关重要。对于在RA中发现的骨破坏的机制,积累的证据支持对白细胞介素(IL)-17-产生的辅助T(TH17)细胞诱导核因子 - κB配体(RANKL)的受体激活剂表达的理论的支持滑膜细胞,其又刺激了骨细胞的分化和激活与炎症细胞因子一起。因此,对Th17的抑制可能是有益于在RA中发生的骨损伤的改善。最近的一项研究表明,Ikappabzeta对Th17细胞的发展至关重要。这些发现包括我们对RA发病机制和潜在有效的治疗策略的重要提前。

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