首页> 外文期刊>Proceedings of the National Academy of Sciences of the United States of America >Responses of IL-18- and IL-18 receptor-deficient pancreatic islets with convergence of positive and negative signals for the IL-18 receptor
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Responses of IL-18- and IL-18 receptor-deficient pancreatic islets with convergence of positive and negative signals for the IL-18 receptor

机译:IL-18和IL-18受体缺陷型胰岛对IL-18受体阳性和阴性信号的反应

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摘要

Pancreatic islets contain cells that produce IL-18 and cells that express IL-18 receptors. In experimentally induced diabetes, islet failure correlates with IL-18 levels and diabetes is delayed with blockade of endogenous IL-18. We studied islet-derived IL-18 and responses to IL-18 in a mouse model of islet allograft transplantation. In vitro, IL-18-stimulated islets produced nitric oxide, which closely matched islet apoptosis. By neutralizing IL-18 activity with IL-18 binding protein (IL-18BP), we observed that islets produce bioactive IL-18. In vivo, transgenic mice overproducing IL-18BP (IL-18BP-Tg) exhibited delayed hyperglycemia induced by beta cell toxic streptozotocin. Similarly, cultured IL-18BP-Tg islets were protected from streptozotocin-induced apoptosis. In the transplant model, islets grafted from WT to IL-18BP-Tg mice achieved prolonged normoglycemia (P = 0.031). Improved graft function was also observed by using IL-18-deficient islets transplanted into WT recipients, demonstrating that endogenous, islet-derived IL-18 mediates IL-18-driven graft damage. Unexpectedly, islets from mice deficient in IL-18 receptor a chain (IL-18R) exhibited rapid graft failure (P = 0.024; IL-18- versus IL-18R-deficient grafts in WT recipients). In related studies, IL-18R-deficient splenocytes and macrophages produced 2-to 3-fold greater amounts of IL-18, TNF alpha, macrophage inflammatory protein 1, macrophage inflammatory protein 2, and IFN gamma upon stimulation with Con A, Toll-like receptor 2 agonist, or anti-CD3 antibodies. These data reveal a role for islet-derived IL-18 activity during inflammation-mediated islet injury. Importantly, discrepancies between IL-18- and IL-18R-deficient cells suggest that IL-18R alpha chain is used by an inflammation-suppressing signal.
机译:胰岛包含产生IL-18的细胞和表达IL-18受体的细胞。在实验诱发的糖尿病中,胰岛衰竭与IL-18水平相关,而糖尿病由于内源性IL-18的阻滞而延迟。我们在胰岛同种异体移植小鼠模型中研究了胰岛来源的IL-18和对IL-18的反应。在体外,IL-18刺激的胰岛产生一氧化氮,其与胰岛细胞凋亡紧密匹配。通过用IL-18结合蛋白(IL-18BP)中和IL-18活性,我们观察到胰岛产生了生物活性IL-18。在体内,过量生产IL-18BP(IL-18BP-Tg)的转基因小鼠表现出由β细胞毒性链脲佐菌素诱导的高血糖延迟。类似地,保护了培养的IL-18BP-Tg胰岛免受链脲佐菌素诱导的细胞凋亡。在移植模型中,从WT移植到IL-18BP-Tg小鼠的胰岛实现了正常血糖升高(P = 0.031)。还可以通过将IL-18缺陷的胰岛移植到WT受体中来观察到移植物功能的改善,表明内源性胰岛衍生的IL-18介导了IL-18驱动的移植物损伤。出乎意料的是,来自缺乏IL-18受体A链(IL-18R)的小鼠的胰岛表现出快速的移植失败(P = 0.024; WT受体中的IL-18-与IL-18R缺陷的移植物)。在相关研究中,在用Con A,Toll-β刺激后,缺乏IL-18R的脾细胞和巨噬细胞产生的IL-18,TNFα,巨噬细胞炎性蛋白1,巨噬细胞炎性蛋白2和IFNγ的含量要高2至3倍。如受体2激动剂或抗CD3抗体。这些数据揭示了在炎症介导的胰岛损伤期间胰岛来源的IL-18活性的作用。重要的是,IL-18和IL-18R缺陷细胞之间的差异表明IL-18Rα链可用于抑制炎症的信号。

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