Sun Yulong, Liu Jia, Jiang Xianxing, Sun Tao, Liu Luping, Zhang Xiaoyuan, Ding Shaoli, Li Jingyi, Zhuang Yan, Wang Yiqing, Wang Rui
School of Pharmaceutical Sciences, Sun Yat-Sen University, Guangzhou, China, 510006.
Key Laboratory of Preclinical Study for New Drugs of Gansu Province, School of Basic Medical Sciences, Lanzhou University, China, 730000.
Sci Rep. 2015 Sep 1;5:13699. doi: 10.1038/srep13699.
Here we report a facile approach to synthesize highly optically active oxindole-type analogues with both high yield and enantioselectivity. This single-step synthesis strategy represents a substantial improvement upon existing methods that are often involved with multi-step routes and have suboptimal atomic economy. One such compound, namely Q4c, showed remarkable in vivo anti-inflammatory activity with efficiency approaching to that of a steroidal compound dexamethasone. Moreover, Q4c alleviated pain in mouse models with comparable activity to morphine. Further investigation suggested that nitric oxide signaling pathway is involved in the anti-inflammatory and analgesic activities of Q4c. Notably, this is the first time that chiral oxindole-type analogues have been identified to be both anti-inflammatory and analgesic, and our study also paved the way for future development of oxindoles as drug candidates in this field.
在此,我们报道了一种简便的方法,可高产率且对映选择性地合成具有高光学活性的氧化吲哚类类似物。这种单步合成策略相较于现有方法有显著改进,现有方法通常涉及多步路线且原子经济性欠佳。其中一种化合物,即Q4c,在体内显示出显著的抗炎活性,其效率接近甾体化合物地塞米松。此外,Q4c在小鼠模型中减轻疼痛,活性与吗啡相当。进一步研究表明,一氧化氮信号通路参与了Q4c的抗炎和镇痛活性。值得注意的是,这是首次发现手性氧化吲哚类类似物具有抗炎和镇痛作用,我们的研究也为该领域将氧化吲哚作为候选药物的未来发展铺平了道路。