Bräse Stefan, Gil Carmen, Knepper Kerstin
Kekulé-Institut für Organische Chemie und Biochemie der Rheinischen Friedrich-Wilhelms-Universität Bonn, Gerhard-Domagk-Strasse 1, D-53121 Bonn, Germany.
Bioorg Med Chem. 2002 Aug;10(8):2415-37. doi: 10.1016/s0968-0896(02)00025-1.
Benzoannelated heterocycles such as benzodiazepines and indoles can be prepared efficiently through cyclization on solid supports, although no single approach is currently universal for the preparation of all benzoannelated N-heterocycle chemistries. In this review, a number of synthetic strategies for the generation of benzoannelated nitrogen heterocycles using resin-bound substrates have been described. Classical heterocycle forming reactions such as the Fischer indole, the Bischler-Napieralski tetrahydroisoquinoline, the Pictet-Spengler tetrahydro-beta-carboline, the Tsuge, the Nenitzescu and the Richter cinnoline reaction are presented. In addition, the Heck, Sonogashira, Wittig, Diels-Alder, and olefin metathesis reactions have been also used. Multicomponent reactions such as the Grieco three-component assembly have been exploited for the synthesis of heterocycles. Cyclative cleavage from the solid support is particularly suitable for the synthesis of heterocycles while particular emphasis has been focused on the synthesis of libraries and the use of combinatorial chemistry techniques. In addition, the most relevant pharmacological properties of benzoannelated nitrogen heterocycles are included.
苯并稠合杂环,如苯二氮䓬类和吲哚类,可以通过在固体载体上的环化反应高效制备,尽管目前还没有一种单一的方法能普遍适用于所有苯并稠合氮杂环化合物的制备。在本综述中,已经描述了许多使用树脂结合底物生成苯并稠合氮杂环的合成策略。介绍了经典的杂环形成反应,如费歇尔吲哚反应、比施勒-纳皮耶拉尔斯基四氢异喹啉反应、皮克特-施彭格勒四氢-β-咔啉反应、津下反应、内尼茨escu反应和里希特噌啉反应。此外,还使用了赫克反应、索尼加什ira反应、维蒂希反应、狄尔斯-阿尔德反应和烯烃复分解反应。多组分反应,如格里eco三组分组装反应,已被用于杂环的合成。从固体载体上进行环化裂解特别适合于杂环的合成,同时特别强调了文库的合成和组合化学技术的应用。此外,还包括了苯并稠合氮杂环最相关的药理性质。