Departamento de Química Orgánica y Farmacéutica, Facultad de Farmacia, Universidad Complutense, Pza. Ramón y Cajal s/n 28040-Madrid, Spain.
Chemistry. 2010 Aug 23;16(32):9722-34. doi: 10.1002/chem.201000532.
Saframycins, safracins, renieramycins, cribrostatins, and esteinascidins are 6,15-iminoisoquino[3,2-b]3-benzazocine compounds that constitute the largest subgroup among the antitumor antibiotics belonging to the tetrahydroisoquinoline family. Their structural complexity has led to widespread synthetic attention to obtain them in both racemic and enantiopure forms. Publication in 1996 of the first total synthesis of ecteinascidin 743 by Corey's group was an important milestone, but the development of preparative protocols for these structures has continued, offering new possibilities to exploit the biological activity of the above-mentioned natural products and their analogues. This minireview is intended to update this progress following a methodological rather than a chronological organization. Besides of a brief description of the different strategies evolved from retrosynthetic analyses, which have been organized according to the order of bonding events that will link the precursors, semisynthetic approaches and a brief account of the total syntheses of ecteinascidin 743, have been analyzed.
沙福菌素、沙福霉素、雷尼霉素、棘菌素和依替生菌素是 6,15-亚氨基异喹诺[3,2-b]3-苯并氮杂卓类化合物,构成了属于四氢异喹啉家族的抗肿瘤抗生素中最大的亚组。它们的结构复杂性导致了广泛的合成关注,以获得它们的外消旋和对映纯形式。1996 年,Corey 小组发表了第一个依替生菌素 743 的全合成,这是一个重要的里程碑,但这些结构的制备方案的发展仍在继续,为上述天然产物及其类似物的生物活性提供了新的可能性。本篇综述旨在按照成键事件的顺序对不同的合成策略进行综述,这些策略是根据回溯分析来组织的,综述了半合成方法和依替生菌素 743 的全合成。