Ciufolini Marco A
Laboratoire de Synthèse et Méthodologie Organiques (LSMO), Université Claude Bernard Lyon 1 et Ecole Supérieure de Chimie, Physique, Electronique de Lyon, 43, Boulevard du 11-Novembre-1918, 69622 Villeurbanne cedex, France.
Farmaco. 2005 Aug;60(8):627-41. doi: 10.1016/j.farmac.2005.01.007.
This article reviews past and ongoing research in the author's laboratory directed toward the synthesis of natural products displaying an azaspirocyclic framework, or incorporating a medium-ring nitrogen heterocycle. New synthetic technologies were devised in order to address the synthetic problems posed by the target molecules. Thus, efforts in the area of azaspirocyclic substances have relied on an oxidative amidation of phenols promoted by iodobenzene diacetate, whereas access to medium-ring nitrogen heterocycles has been secured by means of a ring expansion sequence that relies on the fragmentation of an aziridine triggered by a homo-Brook transposition. Details of the development of these technologies are presented, together with applications to the total synthesis of FR-901483, TAN-1251C, cylindricines, and mitomycinoids.
本文综述了作者实验室过去及正在进行的研究,这些研究旨在合成具有氮杂螺环骨架或含有中环氮杂环的天然产物。为解决目标分子带来的合成问题,设计了新的合成技术。因此,在氮杂螺环化合物领域的研究工作依赖于由二醋酸碘苯促进的酚类氧化酰胺化反应,而中环氮杂环的合成则通过一种扩环序列实现,该序列依赖于由同系物 - 布鲁克重排引发的氮丙啶开环反应。文中介绍了这些技术的发展细节,以及它们在FR - 901483、TAN - 1251C、圆柱海绵素和丝裂霉素类化合物全合成中的应用。