Chauhan P M, Srivastava S K
Division of Medicinal Chemistry, Central Drug Research Institute, Lucknow, India.
Comb Chem High Throughput Screen. 2001 Feb;4(1):35-51. doi: 10.2174/1386207013331327.
Recognizing the potential of combinatorial chemistry to accelerate drug discovery and development, most pharmaceutical and related industries are seriously looking toward combinatorial synthesis of compounds in order to facilitate the identification of 'lead' molecules. In particular, solid phase synthesis is the core technology for combinatorial chemistry and is widely used for generating libraries of structurally related compounds. Since many drugs contain the nitrogen heterocyclic component and since heterocycles possess a high order of structural diversity, a precise overview of recent progress in the combinatorial synthesis of nitrogen heterocycles using solid phase methodology would be useful. Since the progress in solid phase synthesis of organic molecules has been reviewed regularly from 1992 to 1998, only the development of solid phase combinatorial synthetic approaches of small nitrogen heterocycles since 1999 will be reviewed here. This review describes the solid phase synthesis of azepanes, benzodiazepines, benzimidazoles, benzothiazepines, cinnolines, indolizines, beta lactams, oxazepins, oxazoles including benzisooxazoles, hydantoins, piperidines, pyrimidines, pyrazolones, quinolones, trizolopyridazines and thiazoles.
认识到组合化学在加速药物发现和开发方面的潜力,大多数制药及相关行业都在认真考虑化合物的组合合成,以促进“先导”分子的识别。特别是,固相合成是组合化学的核心技术,被广泛用于生成结构相关化合物的文库。由于许多药物含有氮杂环成分,且杂环具有高度的结构多样性,因此对使用固相方法进行氮杂环组合合成的最新进展进行精确概述将很有帮助。鉴于1992年至1998年期间已定期对有机分子固相合成的进展进行了综述,本文仅对1999年以来小氮杂环固相组合合成方法的发展进行综述。本综述描述了氮杂环庚烷、苯二氮䓬类、苯并咪唑、苯并硫氮杂䓬、噌啉、中氮茚、β-内酰胺、氧氮杂䓬、恶唑(包括苯并异恶唑)、乙内酰脲、哌啶、嘧啶、吡唑啉酮、喹诺酮、三唑并哒嗪和噻唑的固相合成。