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Constructing lboga Alkaloids via C-H Bond Functionalization: Examination of the Direct and Catalytic Union of Heteroarenes and Isoquinuclidine Alkenes

机译:通过C-H键功能化构建lboga生物碱:杂芳烃和异喹核烷烯烃的直接和催化结合的检验

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摘要

The iboga alkaloids have attracted considerable attention in both the scientific community and popular media due to their reported ability to reverse or markedly diminish cravings for, and self-administration of, the major drugs of abuse. We have developed three new intramolecular CH functionalization procedures leading to the core seven-membered ring of the iboga skeleton, a cyclization that proved to be highly challenging. The electrophilic palladium salt Pd(CH3CN)(4)(BF4)(2) was effective for the cyclization of diverse N-(2-arylethyl)isoquinuclidines with yields of 10-35%. A two-step, bromination-reductive Heck reaction protocol was also effective for the synthesis of ibogamine in 42% yield. Finally, a direct Ni(0)-catalyzed CH functionalization provided the benzofuran analogues of ibogamine (74%) and epi-ibogamine (38%). Although each approach suffers from significant shortcomings, in combination, the methods described provide practical routes to diverse ibogamine analogues
机译:由于据报道伊博加生物碱具有逆转或显着减少对主要滥用药物的渴望和自我管理的能力,因此在科学界和大众媒体中都引起了相当大的关注。我们开发了三种新的分子内CH官能化程序,可产生iboga骨架的核心七元环,这种环化过程极具挑战性。亲电钯盐Pd(CH3CN)(4)(BF4)(2)可有效地环化各种N-(2-芳基乙基)异喹核苷,收率10%至35%。两步溴化还原型Heck反应方案对于以42%的收率合成ibogamine也是有效的。最后,直接Ni(0)催化的CH官能化提供了依巴戈明(74%)和表依巴戈明(38%)的苯并呋喃类似物。尽管每种方法都存在明显的缺点,但结合起来,所描述的方法提供了通往各种异多巴胺类似物的实用途径

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