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具有生物活性的环戊并[b]吲哚的立体选择性合成。

Diastereoselective Synthesis of Biologically Active Cyclopenta[b]indoles.

机构信息

Instituto Federal de Educação, Ciência e Tecnologia de São Paulo , Campus Matão, 15991-502 Matão, SP, Brazil.

Laboratório de Química Medicinal e Computacional, Instituto de Física da USP - São Carlos , 13563-120 São Carlos, SP, Brazil.

出版信息

J Org Chem. 2016 Aug 5;81(15):6626-39. doi: 10.1021/acs.joc.6b01270. Epub 2016 Jul 28.

Abstract

The cyclopenta[b]indole motif is present in several natural and synthetic biologically active compounds, being directly responsible for the biological effects some of them present. We described herein a three step sequence for the synthesis of cyclopenta[b]indoles with a great structural diversity. The method is based on an oxidative Michael addition of suitable indoles on the double bond of Morita-Baylis-Hillman adducts mediated by a hypervalent iodine reagent (IBX) to form β-ketoesters, which were chemoselectively reduced with NaBH4 in THF to give the corresponding β-hydroxy-esters. The diastereoisomeric mixture was then treated with a catalytic amount of triflic acid (20 mol %) to give cyclopenta[b]indoles with overall yields ranging from 8 to 73% (for 2 steps). The acid-catalyzed cyclization step gave the required heterocycles, via an intramolecular Friedel-Crafts reaction, with high diastereoselectivity, where only the trans product was observed. A mechanistic study monitored by ESI-(+)-MS was also conducted to collect evidence about the mechanism of this reaction. The new molecules herein synthesized were also evaluated against a panel of human cancer cells demonstrating a promising antitumoral profile.

摘要

环戊并[b]吲哚母核存在于几种天然和合成的具有生物活性的化合物中,直接负责其中一些化合物所具有的生物效应。我们在此描述了一种具有广泛结构多样性的环戊并[b]吲哚的三步合成序列。该方法基于通过高价碘试剂(IBX)介导的合适吲哚对 Morita-Baylis-Hillman 加合物双键的氧化迈克尔加成,形成β-酮酯,然后在四氢呋喃中用硼氢化钠选择性还原得到相应的β-羟基酯。然后,将非对映异构体混合物用催化量的三氟甲磺酸(20mol%)处理,以 8%至 73%的总收率(两步)得到环戊并[b]吲哚。酸催化的环化步骤通过分子内傅克反应以高非对映选择性得到所需的杂环,仅观察到反式产物。还通过 ESI-(+)-MS 监测进行了一项机理研究,以收集关于该反应机理的证据。本文合成的新分子也针对一组人类癌细胞进行了评估,显示出有希望的抗肿瘤特性。

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