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Studies Toward The Total Synthesis Of Subincanadine E

机译:Subincanadine E的全合成研究

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摘要

Progress towards a concise total synthesis of subincanadine E is reported. This natural product was first isolated from the Picralima nitida cell suspension culture line in 1982 under the name pericine and later in 2002 from Aspidosperma subincanum as subincanadine E. It is the most potent compound of its class with in vitro cytotoxicity against both murine lymphoma L1210 and human epidermoid carcinoma KB cells (LD50, 0.3 ug/mL and 4.4 ug/mL, respectively) and was found to be six times more potent than codeine as an opiate agonist in a 3H-naloxone binding study (IC50, 0.6 umol/L).The first-generation synthesis produced an undesired internal olefin that, upon attempted isomerization, catalyzed an unusual intermolecular Diels-Alder reaction. A revised second-generation synthesis employed (±)-harmicine and showcased an intramolecular Pd-catalyzed cross-coupling reaction that furnished an unanticipated 5-membered ring instead of the predicted 6-membered ring via methylene linker activation. Further studies utilizing an amide intermediate and organocuprate chemistry produced no desired carbon-carbon bond formation.A third-generation synthesis was carried out from enantiopure (S)-carvone. This route explored regioselective oxime formation and protecting group manipulations for a subsequent Beckmann rearrangement, which provided the first access to 5-amino derivatives of carvone. An intramolecular Pd-catalyzed cross-coupling reaction was performed to construct the aza-bicycle prior to indole installation. Contingent on its success, indole introduction and a double alkylation would provide an akuammicine-like scaffold that can ring-open upon hydride exposure to afford (15S)-subincanadine E in 16 overall steps. This work accomplished 10 steps toward the first total asymmetric synthesis of (15S)-subincanadine E.
机译:据报道,在简明全合成亚辛卡那丁E方面的进展。这种天然产物首先于1982年从Picralima nitida细胞悬浮培养品系中以pericine的名称分离,随后于2002年从Aspidosperma subincanum的亚incanadine E分离。它是同类中最有效的化合物,对鼠淋巴瘤L1210和L1210均具有体外细胞毒性。人表皮样癌KB细胞(分别为LD50、0.3 ug / mL和4.4 ug / mL),并且在3H-纳洛酮结合研究(IC50,0.6 umol / L)中作为鸦片激动剂的功效是可待因的六倍。第一代合成过程产生了不希望的内烯烃,这种烯烃在尝试异构化后催化了一种不寻常的分子间Diels-Alder反应。修订的第二代合成采用(±)-甜菜碱,并展示了分子内Pd催化的交叉偶联反应,该反应提供了未预期的5元环,而不是通过亚甲基接头活化而预测的6元环。利用酰胺中间体和有机铜酸盐化学进行的进一步研究未产生所需的碳-碳键形成。从对映纯(S)-香芹酮进行了第三代合成。这条路线探索了区域选择性肟的形成和保护基团的操纵,以进行随后的贝克曼重排,从而首次获得了香芹酮的5-氨基衍生物。在吲哚安装之前,进行分子内Pd催化的交叉偶联反应以构建氮杂双环。取决于其成功,吲哚的引入和双烷基化将提供一种类似akuammicine的支架,该支架可以在暴露于氢化物后开环,从而在16个整体步骤中得到(15S)-subincanadineE。这项工作完成了向(15S)-亚incanadine E的第一个完全不对称合成的10个步骤。

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    Sadlowski Corinne Marie;

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  • 年度 2015
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  • 原文格式 PDF
  • 正文语种 en
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