Laboratorio de Química Orgánica y Biomolecular, CMN , Universidad Industrial de Santander , Parque Tecnológico Guatiguará, Km 2 Vía Refugio , Piedecuesta 681011 , Colombia.
J Org Chem. 2019 Dec 6;84(23):15294-15308. doi: 10.1021/acs.joc.9b02093. Epub 2019 Nov 15.
A five-step total synthesis of alkaloids has been achieved using a biomimetic approach from zanthoxylamide protoalkaloids. The synthesis featured a direct amidation and a Bischler-Napieralski reaction to form the dihydroisoquinoline ring, which was then subjected to a Noyori asymmetric transfer hydrogenation to establish the stereogenic center at C-1. Our synthetic sequence provides an important perspective on the biosynthetic origin of alkaloids, since 6 natural alkaloids and 12 synthetic analogues were obtained with high enantioselectivity and in overall yields up to 68%. In addition, we describe the acute toxicity toward zebrafish embryos of alkaloids, comparing their toxicity with that of their corresponding zanthoxylamide protoalkaloids and establishing an enantioselectivity-toxicity relationship.
采用生物模拟方法,从樟柳酰胺原生物碱出发,实现了生物碱的五步全合成。该合成方法具有直接酰胺化和 Bischler-Napieralski 反应,形成二氢异喹啉环,然后进行 Noyori 不对称转移氢化,在 C-1 建立手性中心。我们的合成序列为生物碱的生物合成起源提供了一个重要视角,因为用高对映选择性和高达 68%的总收率获得了 6 种天然生物碱和 12 种合成类似物。此外,我们还描述了生物碱对斑马鱼胚胎的急性毒性,比较了它们与相应的樟柳酰胺原生物碱的毒性,并建立了对映选择性-毒性关系。