Petrova Juliana V, Kukushkin Maxim E, Beloglazkina Elena K
Department of Chemistry, M.V. Lomonosov Moscow State University, Leninskie Gory 1-3, 119991 Moscow, Russia.
Organic Chemistry Department, RUDN University, Miklukho-Maklaya St. 6, 117198 Moscow, Russia.
Int J Mol Sci. 2025 Sep 5;26(17):8673. doi: 10.3390/ijms26178673.
Nitrile imines and nitrile oxides are capable of undergoing (3+2)-cycloaddition reactions at double and triple carbon-carbon, carbon-heteroatom, or heteroatom-heteroatom bonds of various dipolarophiles, forming five-membered heterocyclic compounds. When cyclic dipolarophiles bearing an exocyclic carbon-nitrogen double bond (exo-C=N) are introduced into the reaction with these dipoles, spiro-fused 1,2,4-triazoline or 1,2,4-oxadiazoline cycles are formed. Such reactions can provide efficient synthetic approaches to spiro-heterocyclic compounds with enhanced biological activity. This review comprehensively summarizes the literature data on the 1,3-dipolar cycloaddition of nitrile imines and nitrile oxides to exo-C=N bonds for spiro compound synthesis. The research area covers reactions of both saturated and unsaturated dipolarophiles, monocyclic and polycyclic molecules, as well as compounds containing one to three heteroatoms, with special emphasis on systems containing biologically significant heterocyclic pharmacophores. Recent advances in reaction techniques, such as microwave and ultrasonic activation, as well as one-pot and diffusion protocols, are also mentioned.
腈亚胺和腈氧化物能够与各种亲偶极体的碳 - 碳双键、碳 - 杂原子双键或杂原子 - 杂原子双键发生(3 + 2)环加成反应,形成五元杂环化合物。当将带有环外碳 - 氮双键(exo-C=N)的环状亲偶极体引入到与这些偶极体的反应中时,会形成螺稠合的1,2,4 - 三唑啉或1,2,4 - 恶二唑啉环。此类反应可为具有增强生物活性的螺杂环化合物提供有效的合成方法。本综述全面总结了关于腈亚胺和腈氧化物与exo-C=N键进行1,3 - 偶极环加成反应以合成螺化合物的文献数据。研究领域涵盖饱和与不饱和亲偶极体、单环和多环分子以及含有一至三个杂原子的化合物的反应,特别强调含有具有生物学意义的杂环药效基团的体系。还提到了反应技术的最新进展,如微波和超声活化以及一锅法和扩散方案。