Tan Uygun Meltem, Menges Nurettin
Pharmaceutical Chemistry Section, Van Yuzuncu Yil University, 65080, Van, Turkey.
SAFF Chemical Reagent RδD Laboratory, VAN-TEKNOKENT, 65080, Van, Turkey.
Org Biomol Chem. 2022 May 26;20(20):4161-4166. doi: 10.1039/d2ob00396a.
A manageable, one-pot, and high-yield protocol for synthesising highly reactive spiroindolenine derivatives is reported. Spiroindolenines are furnished by a reaction between DCC (dicyclohexylcarbodiimide) and indole-3-butenoic acid derivatives. The protocol proposed here involves the construction of a carbon-carbon bond through intramolecular domino cyclisation. The reaction mechanism for spirocyclisation is discussed; both NMR and X-ray analysis were used to verify the structure of spiroindolenine. The applied strategy allowed the formation of spiroindolenine with a dione substructure, which is an unknown compound with a spirocyclic nucleus. Further reactions of spiroindolenines with di-amines, a primary amine, and alcohol have been reported, and new types of indole derivatives, such as indoloquinoxalines, where the spirocentre atom undergoes a nucleophilic attack, are yielded.
报道了一种用于合成高反应性螺吲哚啉衍生物的可控、一锅法且高产率的方案。螺吲哚啉由二环己基碳二亚胺(DCC)与吲哚 - 3 - 丁烯酸衍生物之间的反应制备。这里提出的方案涉及通过分子内多米诺环化构建碳 - 碳键。讨论了螺环化的反应机理;使用核磁共振(NMR)和X射线分析来验证螺吲哚啉的结构。所应用的策略使得能够形成具有二酮亚结构的螺吲哚啉,这是一种具有螺环核的未知化合物。还报道了螺吲哚啉与二胺、伯胺和醇的进一步反应,并生成了新型吲哚衍生物,如螺中心原子发生亲核攻击的吲哚喹喔啉。