van Bilsen Jolanda H M, Wagenaar-Hilbers Josée P A, Grosfeld-Stulemeijer Mayken C J T, van der Cammen Maarten J F, van Dijk Mariska E A, van Eden Willem, Wauben Marca H M
Department of Infectious Diseases and Immunology, Faculty of Veterinary Medicine, Utrecht University, Utrecht, The Netherlands.
J Immunol. 2004 Apr 15;172(8):5063-8. doi: 10.4049/jimmunol.172.8.5063.
Novel therapies for rheumatoid arthritis aiming at intervention in the inflammatory process by manipulation of autoreactive T and B lymphocytes receive major interest. However, the development of such therapies is largely hampered by the lack of knowledge of self-Ags recognized during the disease process. Recently, we predicted putative T cell self-epitopes based on a computer search profile. In the present study, the predicted self-epitopes were tested for T cell recognition in two experimental arthritis models, and their arthritogenic capacity was analyzed. Fourteen of n = 51 predicted self-epitopes were recognized during experimental arthritis of which six were able to actively induce arthritis. Interestingly, three of these six peptides were derived from matrix metalloproteinases (MMP), and only T cells responsive to MMP-derived epitopes were able to passively transfer arthritis to naive rats. Moreover, we demonstrate the presence of Abs to MMP-3 during the course of adjuvant arthritis. Together these data indicate that MMPs play a pivotal role as target for T and B cells during the development of inflammatory arthritis. This finding sheds new light on the pathophysiological role of MMPs during arthritis and opens novel possibilities for Ag-specific immunotherapy.
旨在通过操纵自身反应性T和B淋巴细胞来干预炎症过程的类风湿性关节炎新疗法备受关注。然而,由于缺乏对疾病过程中所识别的自身抗原的了解,此类疗法的开发在很大程度上受到阻碍。最近,我们基于计算机搜索图谱预测了假定的T细胞自身表位。在本研究中,在两种实验性关节炎模型中测试了预测的自身表位的T细胞识别情况,并分析了它们的致关节炎能力。在n = 51个预测的自身表位中,有14个在实验性关节炎期间被识别,其中6个能够主动诱发关节炎。有趣的是,这6个肽中有3个源自基质金属蛋白酶(MMP),并且只有对MMP衍生表位有反应的T细胞能够将关节炎被动转移给未致敏的大鼠。此外,我们证明在佐剂性关节炎过程中存在针对MMP - 3的抗体。这些数据共同表明,在炎性关节炎的发展过程中,MMP作为T和B细胞的靶标发挥着关键作用。这一发现为MMP在关节炎期间的病理生理作用提供了新的见解,并为抗原特异性免疫疗法开辟了新的可能性。