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靶向 MIF 在癌症中的治疗策略:当前的发展和未来的机会。

Targeting MIF in Cancer: Therapeutic Strategies, Current Developments, and Future Opportunities.

机构信息

Department of Clinical Medicine, School of Medicine, Trinity Biomedical Sciences Institute, Trinity College Dublin, Pearse Street, Dublin 2, Ireland.

Department of Clinical Medicine, Trinity Centre for Health Sciences, Tallaght Hospital, Tallaght, Dublin 24, Ireland.

出版信息

Med Res Rev. 2016 May;36(3):440-60. doi: 10.1002/med.21385. Epub 2016 Jan 18.

Abstract

Strong evidence has been presented linking chronic inflammation to the onset and pathogenesis of cancer. The multifunctional pro-inflammatory protein macrophage migration inhibitory factor (MIF) occupies a central role in the inflammatory pathway and has been implicated in the tumorigenesis, angiogenesis, and metastasis of many cancer phenotypes. This review highlights the current state of the art, which presents MIF, and the second member of the MIF structural superfamily, D-DT (MIF2), as significant mediators in the inflammatory-cancer axis. Although the mechanism by which MIF asserts its biological activity has yet to be fully understood, it has become clear in recent years that for certain phenotypes of cancer, MIF represents a valid therapeutic target. Current research efforts have focused on small molecule approaches that target MIF's unique tautomerase active site and neutralization of MIF with anti-MIF antibodies. These approaches have yielded promising results in a number of preclinical murine cancer models and have helped to increase our understanding of MIF biological activity. More recently, MIF's involvement in a number of key protein-protein interactions, such as with CD74 and HSP90, has been highlighted and provides a novel platform for the development of anti-MIF chemotherapeutic strategies in the future.

摘要

大量证据表明,慢性炎症与癌症的发生和发病机制有关。多功能促炎蛋白巨噬细胞移动抑制因子(MIF)在炎症途径中占据核心地位,并与许多癌症表型的肿瘤发生、血管生成和转移有关。这篇综述强调了目前的最新进展,即 MIF 和 MIF 结构超家族的第二个成员 D-DT(MIF2)作为炎症-癌症轴中的重要介质。尽管 MIF 发挥其生物学活性的机制尚未完全了解,但近年来已经清楚的是,对于某些癌症表型,MIF 代表了一个有效的治疗靶点。目前的研究重点是针对 MIF 独特的互变异构酶活性位点的小分子方法,以及用抗 MIF 抗体中和 MIF。这些方法在许多临床前的小鼠癌症模型中取得了有希望的结果,并帮助我们更好地理解了 MIF 的生物学活性。最近,MIF 参与了许多关键的蛋白质-蛋白质相互作用,如与 CD74 和 HSP90 的相互作用,已经得到了强调,并为未来开发抗 MIF 化疗策略提供了一个新的平台。

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