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咪唑类药物化学的最新发展综述。

Comprehensive review in current developments of imidazole-based medicinal chemistry.

机构信息

Laboratory of Bioorganic & Medicinal Chemistry, School of Chemistry and Chemical Engineering, Southwest University, Chongqing 400715, People's Republic of China.

出版信息

Med Res Rev. 2014 Mar;34(2):340-437. doi: 10.1002/med.21290. Epub 2013 Jun 5.

Abstract

Imidazole ring is an important five-membered aromatic heterocycle widely present in natural products and synthetic molecules. The unique structural feature of imidazole ring with desirable electron-rich characteristic is beneficial for imidazole derivatives to readily bind with a variety of enzymes and receptors in biological systems through diverse weak interactions, thereby exhibiting broad bioactivities. The related research and developments of imidazole-based medicinal chemistry have become a rapidly developing and increasingly active topic. Particularly, numerous imidazole-based compounds as clinical drugs have been extensively used in the clinic to treat various types of diseases with high therapeutic potency, which have shown the enormous development value. This work systematically gives a comprehensive review in current developments of imidazole-based compounds in the whole range of medicinal chemistry as anticancer, antifungal, antibacterial, antitubercular, anti-inflammatory, antineuropathic, antihypertensive, antihistaminic, antiparasitic, antiobesity, antiviral, and other medicinal agents, together with their potential applications in diagnostics and pathology. It is hoped that this review will be helpful for new thoughts in the quest for rational designs of more active and less toxic imidazole-based medicinal drugs, as well as more effective diagnostic agents and pathologic probes.

摘要

咪唑环是一种重要的五元芳香杂环,广泛存在于天然产物和合成分子中。咪唑环独特的结构特征具有理想的富电子特性,有利于咪唑衍生物通过多种弱相互作用与生物系统中的各种酶和受体轻易结合,从而表现出广泛的生物活性。基于咪唑的药物化学的相关研究和开发已经成为一个迅速发展和日益活跃的课题。特别是,许多基于咪唑的化合物作为临床药物已广泛应用于临床,以治疗各种类型的疾病,具有很高的治疗效力,显示出巨大的发展价值。这项工作系统地综述了咪唑类化合物在整个药物化学领域的抗癌、抗真菌、抗菌、抗结核、抗炎、抗神经病变、降压、抗组胺、抗寄生虫、抗肥胖、抗病毒等药物中的最新发展,以及它们在诊断和病理学中的潜在应用。希望本综述能为合理设计更有效、毒性更低的基于咪唑的药物以及更有效的诊断试剂和病理探针提供新的思路。

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