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Amphidinolide B: Total Synthesis Structural Investigation and Biological Evaluation

机译:amphidinolide B:全合成结构调查与生物学评价

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摘要

The total synthesis of amphidinolide B1 and the proposed structure of amphidinolide B2 has been accomplished. Key aspects of this work include the development of a practical, non-transition metal mediated method for the construction of the C13-C15 diene, the identification of α-chelation and dipole minimization models for diastereoselective methyl ketone aldol reactions, the discovery of a spontaneous Horner-Wadsworth-Emmons macrocyclization strategy and the development of a novel late stage method for construction of an allylic epoxide moiety. The originally proposed structure for amphidinolide B2 and diastereomers thereof display potent anti-tumor activities with IC50 values ranging from 3.3 nM to 94.5 nM against human solid and blood tumor cells. Of the different stereoisomers, the proposed structure of amphidinolide B2 is over 12-fold more potent than the C8,9-epimer and C18-epimer in human DU145 prostate cancer cells. These data suggest that the epoxide stereochemistry is a significant factor for anticancer activity.
机译:两性霉素B1的全合成和两性化合物B2的拟议结构均已完成。这项工作的关键方面包括开发一种实用的,非过渡金属介导的方法来构建C13-C15二烯,确定非对映选择性甲基酮羟醛反应的α-螯合和偶极极小化模型,发现自发性Horner-Wadsworth-Emmons的大环化策略以及构建烯丙基环氧部分的新型晚期方法的开发。最初提出的两性霉素B2及其非对映异构体的结构显示出有效的抗肿瘤活性,其对人实体和血液肿瘤细胞的IC50值为3.3 nM至94.5 nM。在不同的立体异构体中,所提议的安非他命B2结构在人DU145前列腺癌细胞中的效力比C8,9-epimer和C18-epimer高12倍以上。这些数据表明,环氧立体化学是抗癌活性的重要因素。

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