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γ-烷基丁烯内酯的全合成,来自泰国药用植物 Melodorum fruticosum 的强效黑色素生成抑制剂。

Total Synthesis of γ-Alkylidenebutenolides, Potent Melanogenesis Inhibitors from Thai Medicinal Plant Melodorum fruticosum.

出版信息

J Org Chem. 2018 Aug 3;83(15):8250-8264. doi: 10.1021/acs.joc.8b00986. Epub 2018 Jul 17.

DOI:10.1021/acs.joc.8b00986
PMID:29972303
Abstract

A hitherto unreported member of γ-alkylidenebutenolides in Melodorum fruticosum (Annonaceae), (4 E)-6-benzoyloxy-7-hydroxy-2,4-heptadiene-4-olide, named as isofruticosinol (4) was isolated from the methanol extract of flowers, along with the known related butenolides, namely, the (4 Z)-isomer (3) of 4, melodrinol (1), and its (4 E)-isomer (2). To unambiguously determine the absolute configuration at the C-6 position in these butenolides, the first total syntheses of both enantiomers of 2-4 were achieved over 6-7 steps from commercially available D- or L-ribose (D- and L-5). Using the same protocol, both enantiomers of 1 were also synthesized. Based on chiral HPLC analysis of all synthetic compounds ( S- and R-1-4), all naturally occurring butenolides were assigned as partial racemic mixtures with respect to the chiral center at C-6 (enantiomeric ratio, 6 S/6 R = ∼83/17). Furthermore, the melanogenesis inhibitory activities of S- and R-1-4 were evaluated, with all shown to be potent inhibitors with IC values in the range 0.29-2.9 μM, regardless of differences in the stereochemistry at C-6. In particular, S-4 (IC = 0.29 μM) and R-4 (0.39 μM) showed potent inhibitory activities compared with that of reference standard arbutin (174 μM).

摘要

从苦槛蓝(番荔枝科)花的甲醇提取物中分离得到一种 hitherto unreported member of γ-alkylidenebutenolides,命名为异苦槛蓝醇(4),其结构与已知的 butenolides 有关,包括(4 Z)-异构体(3)、melodrinol(1)及其(4 E)-异构体(2)。为了明确这些 butenolides 中 C-6 位的绝对构型,通过商业可得的 D-或 L-核糖(D-和 L-5)经 6-7 步反应首次实现了 2-4 的对映异构体的全合成。使用相同的方案,也合成了 1 的对映异构体。基于所有合成化合物( S-和 R-1-4)的手性 HPLC 分析,所有天然存在的 butenolides 均被分配为 C-6 手性中心的部分外消旋混合物(对映体比例,6 S/6 R = ∼83/17)。此外,还评估了 S-和 R-1-4 的黑色素生成抑制活性,所有化合物均表现出较强的抑制活性,IC 值范围为 0.29-2.9 μM,与 C-6 立体化学的差异无关。特别是 S-4(IC = 0.29 μM)和 R-4(0.39 μM)的抑制活性强于参考标准熊果苷(174 μM)。

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