全合成
化学
紫杉烷
立体中心
紫杉醇
药物发现
抗癌药
计算生物学
组合化学
立体化学
药品
药理学
癌症
乳腺癌
对映选择合成
有机化学
生物
生物化学
遗传学
催化作用
作者
Long Min,Jing‐Chun Han,Wen Zhang,Chen-Chen Gu,Yun-Peng Zou,Chuang‐Chuang Li
出处
期刊:Chemical Reviews
[American Chemical Society]
日期:2023-03-14
卷期号:123 (8): 4934-4971
被引量:32
标识
DOI:10.1021/acs.chemrev.2c00763
摘要
Taxol (paclitaxel), the most well-known taxane diterpenoid, is the best-selling natural-source anticancer drug ever produced and one of the most common prescriptions in the treatment of breast, lung, and ovarian cancers, saving countless lives around the world. Structurally, Taxol possesses a highly oxygenated [6–8–6–4] core bearing 11 stereocenters, seven of which are contiguous chiral centers. Moreover, the extremely strained bicyclo[5.3.1] undecane ring system with a bridgehead double bond is a unique structural feature. All these features make Taxol a highly challenging synthetic target. Tremendous synthetic efforts from more than 60 research groups around the world have already culminated in ten total syntheses and three formal syntheses, as well as more than 60 synthetic model studies of Taxol. This review is intended to provide a long-overdue appraisal of the great achievements in the total syntheses of Taxol reported in the last few decades. In doing so, we summarize the development of synthesis toward Taxol from 1994 to 2022, including the evolution of synthetic strategy for accessing this complex molecular scaffold and key lessons learned from such endeavors. Finally, we briefly discuss the future of the research in this area.
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