Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
10595441 | Bioorganic & Medicinal Chemistry Letters | 2013 | 8 Pages |
Abstract
The cytotoxic activities of sesquilignans, (7S,8S,7â²R,8â²R)- and (7R,8R,7â²S,8â²S)-morinol A and (7S,8S,7â²S,8â²S)- and (7R,8R,7â²R,8â²R)-morinol B were compared, showing no significant difference between stereoisomers (IC50 = 24-35 μM). As a next stage, the effect of substituents at 7, 7â², and 7â³-aromatic ring on the activity was evaluated to find out the higher activity of (7S,8S,7â²R,8â²R)-7,7â²,7â³-phenyl derivative 18 (IC50 = 6-7 μM). In the research on the structure-activity relationship of 7â³-position of (7S,8S,7â²R,8â²R)-7,7â²,7â³-phenyl derivative 18, the most potent compounds were 7,7â²,7â³-phenyl derivative 18 (IC50 = 6 μM) against HeLa cells. Against HL-60 cells, 7â³-(4-nitrophenyl)-7,7â²-phenyl derivative 33 and 7â³-hexyl-7,7â²-phenyl derivative 37 (IC50 = 5 μM) showed highest activity. We discovered the compounds showed four to sevenfold potent activity than that of natural (7S,8S,7â²R,8â²R)-morinol A. It was also confirmed that the 7â²-benzylic hydroxy group have an important role for exhibiting activity, on the other hand, the resonance system of cinnamyl structure is not crucial for the potent activity.
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Physical Sciences and Engineering
Chemistry
Organic Chemistry
Authors
Satoshi Yamauchi, Saya Kawahara, Tuti Wukirsari, Hisashi Nishiwaki, Kosuke Nishi, Takuya Sugahara, Koichi Akiyama, Taro Kishida,