TLR7型
系统性红斑狼疮
TLR9型
药理学
TLR2型
TLR4型
兴奋剂
炎症
受体
免疫学
疾病
化学
Toll样受体
生物
医学
先天免疫系统
免疫系统
内科学
生物化学
基因表达
DNA甲基化
基因
作者
Shailesh Dudhgaonkar,Sourabh Ranade,Jignesh Nagar,Siva Subramani,Durga Shiv Prasad,Preethi Karunanithi,Ratika Srivastava,Kamala Venkatesh,Sabariya Selvam,Prasad Krishnamurthy,T. Thanga Mariappan,Ajay Saxena,Fan Li,Dawn K. Stetsko,Deborah A. Holloway,Xin Li,Jun Zhu,Wen-Pin Yang,Stefan Ruepp,Satheesh K. Nair
出处
期刊:Journal of Immunology
[American Association of Immunologists]
日期:2016-12-22
卷期号:198 (3): 1308-1319
被引量:73
标识
DOI:10.4049/jimmunol.1600583
摘要
Abstract The serine/threonine kinase IL-1R–associated kinase (IRAK)4 is a critical regulator of innate immunity. We have identified BMS-986126, a potent, highly selective inhibitor of IRAK4 kinase activity that demonstrates equipotent activity against multiple MyD88-dependent responses both in vitro and in vivo. BMS-986126 failed to inhibit assays downstream of MyD88-independent receptors, including the TNF receptor and TLR3. Very little activity was seen downstream of TLR4, which can also activate an MyD88-independent pathway. In mice, the compound inhibited cytokine production induced by injection of several different TLR agonists, including those for TLR2, TLR7, and TLR9. The compound also significantly suppressed skin inflammation induced by topical administration of the TLR7 agonist imiquimod. BMS-986126 demonstrated robust activity in the MRL/lpr and NZB/NZW models of lupus, inhibiting multiple pathogenic responses. In the MRL/lpr model, robust activity was observed with the combination of suboptimal doses of BMS-986126 and prednisolone, suggesting the potential for steroid sparing activity. BMS-986126 also demonstrated synergy with prednisolone in assays of TLR7- and TLR9-induced IFN target gene expression using human PBMCs. Lastly, BMS-986126 inhibited TLR7- and TLR9-dependent responses using cells derived from lupus patients, suggesting that inhibition of IRAK4 has the potential for therapeutic benefit in treating lupus.
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