吴茱萸碱
炎症
氧化磷酸化
化学
MAPK/ERK通路
骨架(计算机编程)
氧化应激
信号转导
药理学
医学
生物化学
免疫学
解剖
作者
Nan‐Ying Chen,Cai-Neng Zhang,Xiu-Yun Guo,Liu-Song Lan,Yi-Fan Geng,Jinhui Peng,Cheng‐Xue Pan,Yan Huang,Gui‐Fa Su
摘要
In recent years, skeleton reorganization based on bioactive natural products has emerged as a novel alternative strategy to the classical approach, mainly focusing on the peripheral modification of the inherent natural skeleton. Such reorganizations not only afford structurally unique molecules but also provide unanticipated bioactivities compared with the unaltered natural precursors. Herein, by rebuilding the inherent rigid skeleton of cardioprotective rutaecarpine (RUT), thirty-three structural derivatives were designed and synthesized, with 5Ci being the most representative example, which exhibited superior protective effects against inflammation-induced ROS accumulation and cellular damage compared with the clinically used anti-inflammation drug indomethacin.
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