A method of identifying compounds as direct inhibitors of Keap1-Nrf2 interaction through high-throughput screening and lead development. The direct inhibitors of Keap1-Nrf2 interaction are more specific and free of various undesirable effects than existing indirect inhibitors, and are potential drug candidates of chemopreventive and therapeutic agents for treatment of various diseases or conditions involving oxidative stress and/or inflammation, including but not limited to cancers, diabetes, Alzheimer's, and Parkinson's. Novel compounds are identified and methods of preventing or treating diseases or conditions related to Keap1-Nrf2 interaction activity by use of the novel compounds identified or compositions containing such compounds are also disclosed.
通过高通量筛选和引物开发的方法,识别化合物作为Keap1-Nrf2相互作用的直接
抑制剂。Keap1-Nrf2相互作用的直接
抑制剂比现有的间接
抑制剂更具特异性,不受各种不良影响,并且是
化学预防和治疗各种涉及氧化应激和/或炎症的疾病或症状的潜在药物候选者,包括但不限于癌症、糖尿病、阿尔茨海默病和帕
金森病。还公开了识别新化合物以及使用所识别的新化合物或含有这些化合物的组合物来预防或治疗与Keap1-Nrf2相互作用活性相关的疾病或症状的方法。