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Divergent Total Synthesis of Triptolide, Triptonide, Tripdiolide, 16-Hydroxytriptolide, and Their Analogues

机译:雷公藤内酯醇,雷公藤内酯,雷公藤内酯,16-羟基雷公藤内酯及其类似物的不同全合成

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摘要

A divergent route was developed for the formal total synthesis of triptolide, triptonide, and tripdiolide, as well as a total synthesis of 16-hydroxytriptolide and their analogues in an enantioselective form. Common advanced intermediate 5 was concisely assembled by employing an indium(III)-catalyzed cationic polycyclization reaction and a palladium-catalyzed carbonylation?lactone formation reaction as key steps. This advanced intermediate was readily converted to the above natural products by using palladium-catalyzed cross-coupling or the Claisen rearrangement reaction as key steps. Additionally, preliminary structure?cytotoxic activity relationship studies of C13 suggested that it might be a new modification site that could still retain the cytotoxicity.
机译:为雷公藤内酯醇,雷公藤内酯和雷公藤内酯的正式全合成以及对映选择性形式的16-羟基雷公藤内酯及其类似物的全合成开发了一条分歧的路线。通过采用铟(III)催化的阳离子多环化反应和钯催化的羰基化-内酯形成反应,将关键的高级中间体5简明地组装在一起。通过使用钯催化的交叉偶联或克莱森重排反应作为关键步骤,可以将该高级中间体轻松转化为上述天然产物。此外,对C13的初步结构-细胞毒性活性关系的研究表明,它可能是一个新的修饰位点,仍然可以保留细胞毒性。

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