Qu Yong, Zhou Tian-Yi, Guo Feng-Wei, Wei Mei-Yan, Chen Guang-Ying, Gu Yu-Cheng, Wang Chang-Yun, Shao Chang-Lun
Key Laboratory of Marine Drugs, The Ministry of Education of China, School of Medicine and Pharmacy, College of Food Science and Engineering, Ocean University of China, Qingdao, 266003, People's Republic of China; Laoshan Laboratory, Qingdao, 266237, People's Republic of China.
Key Laboratory of Marine Drugs, The Ministry of Education of China, School of Medicine and Pharmacy, College of Food Science and Engineering, Ocean University of China, Qingdao, 266003, People's Republic of China.
Eur J Med Chem. 2023 Mar 15;250:115183. doi: 10.1016/j.ejmech.2023.115183. Epub 2023 Feb 4.
Inflammation is connected with a variety of diseases and there is still a need to develop more effective and safer anti-inflammatory drugs. Herein, we synthesized, resolved, and characterized eight enantiopure isomers of yaequinolone J1 (1), yaequinolone J2 (2), 4'-desmethoxyyaequinolone J1 (3), and 4'-desmethoxyyaequinolone J2 (4). The key synthetic steps were extended and 34 racemic analogues modified at the 4-aryl, the N-position, and the pyran ring were designed and synthesized. All the synthesized compounds were evaluated for their anti-inflammatory activities in RAW 264.7 cells of which 13 compounds showed significant inhibition of nitric oxide (NO) production at a concentration of 0.1 μM, which was more potent than that of indomethacin. Furthermore, compounds (-)-3, (-)-4, 5h, and 6g reduced the production of IL-6 in LPS-stimulated RAW 264.7 cells at a concentration of 50 nM. A preliminary SAR indicated that 3'-Br (5h), 4'-NO (6g) on 4-phenyl and 3-bromobenzyl (7f) on the N-position were the most effective substituents. This is the first report of the anti-inflammatory yaequinolone alkaloids and the present study provided evidence for exploiting this series of highly efficacious derivatives for new anti-inflammatory agents.
炎症与多种疾病相关,仍然需要开发更有效、更安全的抗炎药物。在此,我们合成、拆分并表征了鸦喹诺酮J1(1)、鸦喹诺酮J2(2)、4'-去甲氧基鸦喹诺酮J1(3)和4'-去甲氧基鸦喹诺酮J2(4)的八个对映体纯异构体。扩展了关键合成步骤,并设计合成了在4-芳基、N-位和吡喃环上修饰的34个外消旋类似物。对所有合成化合物在RAW 264.7细胞中的抗炎活性进行了评估,其中13种化合物在0.1μM浓度下对一氧化氮(NO)的产生表现出显著抑制作用,比吲哚美辛更有效。此外,化合物(-)-3、(-)-4、5h和6g在50 nM浓度下降低了LPS刺激的RAW 264.7细胞中IL-6的产生。初步的构效关系表明,4-苯基上的3'-Br(5h)、4'-NO(6g)和N-位上的3-溴苄基(7f)是最有效的取代基。这是关于抗炎鸦喹诺酮生物碱的首次报道,本研究为开发这一系列高效衍生物作为新型抗炎药物提供了证据。