Institute for Medical Microbiology, Immunology and Hygiene, University of Cologne, Germany.
ChemMedChem. 2010 Dec 3;5(12):2065-71. doi: 10.1002/cmdc.201000320.
Inflammation is a hallmark of microbial infection in mammals and is the result of a pathogen-induced release of inflammatory effectors. In humans a variety of germ-line encoded receptors, so-called pattern-recognition receptors, respond to conserved signatures on invading pathogens, which results in the transcriptional activation of pro-inflammatory responses. Inflammation is often detrimental to the host and leads to tissue damage and/or systemic dysfunctions. Thus, specific inhibitors of these pathways are desirable for medical interventions. Herein we report on the synthesis and use of some chromium-containing compounds (arene--Cr(CO)₃ complexes) with a core structure related to anti-inflammatory diterpenes produced by the sea whip Pseudopterogorgia elisabethae. By using cell-based reporter assays we identified complexes with a potent inhibitory activity on tumour necrosis factor (TNF), Toll-like receptor (TLR), and nucleotide binding domain, leucine-rich repeat-containing receptor (NLR) pathways. Moreover, we found one complex to be a specific inhibitor of inflammatory responses mediated by the NLR protein NOD2, a pivotal innate immune receptor involved in bacterial recognition. Synthesis and characterisation of a set of derivatives of this substance revealed structural requirements for NOD2 specificity. Taken together, our studies suggest this type of arene--Cr(CO)₃ complex as a potential lead for the development of antiphlogistica and pharmacologically relevant NOD2 inhibitors.
炎症是哺乳动物微生物感染的标志,是病原体诱导释放炎症效应物的结果。在人类中,多种种系编码的受体,即所谓的模式识别受体,对入侵病原体的保守特征作出反应,导致促炎反应的转录激活。炎症通常对宿主有害,导致组织损伤和/或全身功能障碍。因此,这些途径的特异性抑制剂是医学干预的理想选择。在此,我们报告了一些含铬化合物(芳烃-Cr(CO)₃ 配合物)的合成和应用,这些化合物的核心结构与来自海鞭 Pseudopterogorgia elisabethae 的抗炎二萜有关。通过使用基于细胞的报告基因检测,我们鉴定出了对肿瘤坏死因子 (TNF)、Toll 样受体 (TLR) 和核苷酸结合域、富含亮氨酸重复受体 (NLR) 途径具有强大抑制活性的配合物。此外,我们发现一种复合物是 NLR 蛋白 NOD2 介导的炎症反应的特异性抑制剂,NOD2 是一种参与细菌识别的关键先天免疫受体。对该物质的一组衍生物的合成和表征揭示了 NOD2 特异性的结构要求。总之,我们的研究表明,这种芳烃-Cr(CO)₃ 配合物可能是开发抗炎药和具有药理相关性的 NOD2 抑制剂的潜在先导化合物。