Faculty of Chemistry, Shahid Beheshti University, G. C., P. O. Box 19396-4716, Tehran, Iran.
Mol Divers. 2019 Aug;23(3):751-807. doi: 10.1007/s11030-018-9902-8. Epub 2018 Dec 14.
5-Amino-pyrazoles have proven to be a class of fascinating and privileged organic tools for the construction of diverse heterocyclic or fused heterocyclic scaffolds. This review presents comprehensively the applications of 5-amino-pyrazoles as versatile synthetic building blocks in the synthesis of remarkable organic molecules with an emphasis on versatile functionalities. Following a brief introduction of synthesis methods, planning strategies to construct organic compounds, particularly diverse heterocyclic scaffolds, such as poly-substituted heterocyclic compounds and fused heterocyclic compounds via 5-amino-pyrazoles, have been summarized. Fused heterocycles are classified as bicyclic, tricyclic, tetracyclic, and spiro-fused pyrazole derivatives. These outstanding compounds synthesized via wide variety of approaches include conventional reactions, one-pot multi-component reactions, cyclocondensation, cascade/tandem protocols, and coupling reactions. 5-Amino-pyrazoles represent a class of promising functional reagents, similar to the biologically active compounds, highlighted with diverse applications especially in the field of pharmaceutics and medicinal chemistry. Notably, this critical review covers the articles published from 1981 to 2018.
5-氨基吡唑已被证明是一类引人入胜且享有特权的有机工具,可用于构建各种杂环或稠合杂环支架。本综述全面介绍了 5-氨基吡唑作为多功能合成砌块在合成具有多功能的显著有机分子中的应用。在简要介绍了合成方法之后,重点总结了通过 5-氨基吡唑构建有机化合物,特别是各种杂环支架(如多取代杂环化合物和稠合杂环化合物)的规划策略。稠合杂环分为双环、三环、四环和螺稠合吡唑衍生物。通过多种方法合成的这些杰出化合物包括常规反应、一锅多组分反应、环缩合、级联/串联方案和偶联反应。5-氨基吡唑代表了一类有前途的功能试剂,类似于具有广泛应用的生物活性化合物,特别是在药物学和药物化学领域。值得注意的是,这篇重要的综述涵盖了 1981 年至 2018 年发表的文章。