Nagy Gyorgy, Koncz Agnes, Perl Andras
Section of Rheumatology, Department of Medicine, State University of New York, Upstate Medical University, College of Medicine, Syracuse, NY 13210, USA.
Crit Rev Immunol. 2005;25(2):123-40. doi: 10.1615/critrevimmunol.v25.i2.30.
Systemic lupus erythematosus (SLE) is a complex autoimmune disease characterized by the production of antinuclear autoantibodies and clinical involvement in multiple organ systems. T cells from patients with SLE have been shown to be activated in vivo and provide help to autoreactive B cells. Abnormal expression of key signaling molecules, defective signal transduction pathways, and permanent mitochondrial dysfunction--associated with a significantly increased mitochondrial mass--appear to be the axis of T-lymphocyte dysfunction. Lupus T cells exhibit persistent mitochondrial hyperpolarization (MHP), cytoplasmic alkalinization, increased ROI production, and ATP depletion that mediate enhanced spontaneous and diminished activation-induced apoptosis and sensitize lupus T cells to necrosis. Necrotic, but not apoptotic, cell lysates activate dendritic cells and may account for increased interferon-alpha production, inflammation, and antinuclear antibody production. Recent data indicate that B cells are not merely the passive producers of autoantibodies, but also play a central role in autoimmunity via nonconventional mechanisms, including autoantigen presentation and modulation of other immune cells. This article reviews recent advancements in the understanding of the molecular mechanisms involved in the pathogenesis of lupus autoimmunity and highlights the development of novel therapies in SLE.
系统性红斑狼疮(SLE)是一种复杂的自身免疫性疾病,其特征是产生抗核自身抗体并累及多个器官系统。研究表明,SLE患者的T细胞在体内被激活,并为自身反应性B细胞提供帮助。关键信号分子的异常表达、有缺陷的信号转导途径以及与线粒体质量显著增加相关的永久性线粒体功能障碍,似乎是T淋巴细胞功能障碍的轴心。狼疮T细胞表现出持续的线粒体超极化(MHP)、细胞质碱化、活性氧生成增加和ATP耗竭,这些介导了自发凋亡增强和活化诱导凋亡减弱,并使狼疮T细胞对坏死敏感。坏死而非凋亡的细胞裂解物可激活树突状细胞,并可能导致干扰素-α生成增加、炎症反应和抗核抗体产生。最近的数据表明,B细胞不仅是自身抗体的被动产生者,还通过非传统机制(包括自身抗原呈递和对其他免疫细胞的调节)在自身免疫中发挥核心作用。本文综述了对狼疮自身免疫发病机制中分子机制的最新认识进展,并强调了SLE新型疗法的发展。