Mandrup-Poulsen T, Zumsteg U, Reimers J, Pociot F, Mørch L, Helqvist S, Dinarello C A, Nerup J
Steno Diabetes Center, Gentofte, Denmark.
Cytokine. 1993 May;5(3):185-91. doi: 10.1016/1043-4666(93)90003-n.
In this review we propose that the balance between the action of interleukin 1 (IL-1) and its natural antagonist IL-1ra on the level of the insulin-producing pancreatic beta-cell may play a decisive role in the pathogenesis of insulin-dependent diabetes mellitus (IDDM). We argue that IL-1 potentiated by other cytokines (tumor necrosis factor alpha, interferon gamma) is an important effector molecule involved in both early and late events in the immune-mediated process that leads to beta-cell destruction and IDDM. We also point out that surprisingly high molar excesses of IL-1ra over IL-1 are necessary to block the action of IL-1 on islet beta-cells compared to islet alpha-cells in vitro and in animals. We suggest that the selectivity of beta-cell destruction in IDDM may be conferred on several levels: (1) homing of beta-cell antigen specific T cells, (2) targeted delivery of cytokines by lymphocytic and monocytic cells beta-cells, (3) high molar excesses of IL-1ra over IL-1 needed to prevent IL-1 mediated beta-cell toxicity, (4) increased beta-cell sensitivity to free nitric oxide and oxygen radical formation induced by IL-1 and (5) inadequate oxidative stress response by beta-cells to cytokines. Further studies are needed to establish the in vivo role of an imbalance between the amounts of IL-1 and IL-1ra produced relative to their action in the pathogenesis of IDDM.
在本综述中,我们提出白细胞介素1(IL-1)及其天然拮抗剂IL-1ra在胰岛素生成胰腺β细胞水平上的作用平衡,可能在胰岛素依赖型糖尿病(IDDM)的发病机制中起决定性作用。我们认为,由其他细胞因子(肿瘤坏死因子α、干扰素γ)增强的IL-1是一种重要的效应分子,参与免疫介导过程中导致β细胞破坏和IDDM的早期和晚期事件。我们还指出,与胰岛α细胞相比,在体外和动物实验中,要阻断IL-1对胰岛β细胞的作用,需要IL-1ra相对于IL-1有惊人的高摩尔过量。我们认为IDDM中β细胞破坏的选择性可能在几个层面上产生:(1)β细胞抗原特异性T细胞的归巢;(2)淋巴细胞和单核细胞向β细胞靶向递送细胞因子;(3)防止IL-1介导的β细胞毒性所需的IL-1ra相对于IL-1的高摩尔过量;(4)β细胞对IL-1诱导的游离一氧化氮和氧自由基形成的敏感性增加;(5)β细胞对细胞因子的氧化应激反应不足。需要进一步研究来确定相对于它们在IDDM发病机制中的作用,IL-1和IL-1ra产生量失衡在体内的作用。