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滑膜炎中的神经内分泌-免疫相互作用

Neuroendocrine-immune interactions in synovitis.

作者信息

Cutolo Maurizio, Straub Rainer H, Bijlsma Johannes W J

机构信息

Department of Rheumatology, University of Genova, Viale Benedetto XV, 6-16132 Genova, Italy.

出版信息

Nat Clin Pract Rheumatol. 2007 Nov;3(11):627-34. doi: 10.1038/ncprheum0601.

Abstract

Synovial tissue lines the noncartilaginous surfaces of synovial joints and supplies these avascular structures with nutrients. In diseases such as rheumatoid arthritis, inflammation of the synovial tissue--synovitis--induces diffuse damage to the joints. The presence of functional receptors for glucocorticoids, androgens and estrogens in synoviocytes might link inflammation and the endocrine system at the local level. Synovial tissue could be regarded as an intracrine tissue, whereby active steroids influence the cells in which they are synthesized, without their release into the extracellular space. An increase in the peripheral metabolism of sex steroids is characteristic of rheumatoid synovitis, with an augmented ratio of estrogen to androgen occurring in both male and female patients. Changes in the peripheral nervous system at the site of local inflammation are also hallmarks of synovitis in rheumatoid arthritis. In the chronic phase of synovitis, sympathetic nerve fibers are lost; by contrast, sensory nerve fibers sprout into the inflamed tissue. Complex interactions occur between the endocrine, nervous and immune systems during synovitis. In particular, studying neuroendocrine-immune interactions in the inflamed synovium will potentially uncover new mechanisms in the pathophysiology of rheumatoid arthritis and might lead to new methods of therapeutic intervention.

摘要

滑膜组织衬于滑膜关节的非软骨表面,为这些无血管结构提供营养。在类风湿性关节炎等疾病中,滑膜组织的炎症——滑膜炎——会导致关节的弥漫性损伤。滑膜细胞中存在糖皮质激素、雄激素和雌激素的功能性受体,这可能在局部层面将炎症与内分泌系统联系起来。滑膜组织可被视为一种自分泌组织,即活性类固醇在不释放到细胞外空间的情况下影响其合成所在的细胞。性类固醇外周代谢增加是类风湿性滑膜炎的特征,男性和女性患者的雌激素与雄激素比例均会升高。局部炎症部位的外周神经系统变化也是类风湿性关节炎滑膜炎的标志。在滑膜炎的慢性期,交感神经纤维会丧失;相反,感觉神经纤维会向炎症组织中生长。在滑膜炎期间,内分泌、神经和免疫系统之间会发生复杂的相互作用。特别是,研究炎症滑膜中的神经内分泌 - 免疫相互作用可能会揭示类风湿性关节炎病理生理学中的新机制,并可能带来新的治疗干预方法。

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