Karati Dipanjan, Mukherjee Swarupananda, Roy Souvik
Department of Pharmaceutical Technology, Techno India University, Kolkata, West Bengal, 700091, India.
Department of Pharmaceutical Technology, NSHM Knowledge Campus, Kolkata, 124 B.L. Saha Road, Kolkata, West Bengal 700053, India.
Med Chem. 2023;19(10):960-985. doi: 10.2174/1573406419666230707105221.
In the recent era, developments in the field of bio-inorganic chemistry have improved interest in Schiff base complexes (imine scaffolds) for their pharmacological excellence in different areas. Schiff bases are a kind of synthetic molecule that is synthesized by the condensation reaction between a 1o amine and a carbonyl compound. Imine derivatives are also acknowledged for their ability to form complexes with several metals. Due to their wide range of biological activities, they have acquired prominence in the therapeutic and pharmaceutical industries. Inorganic chemists have continued to be intrigued by the vast range of uses of these molecules. Many of them are also thermally stable and have structural flexibility. Some of these chemicals have been discovered to be beneficial as clinical diagnostic agents as well as chemotherapeutic agents. Because of the flexibility of the reactions, these complexes have a wide range of characteristics and applications in biological systems. Anti-neoplastic activity is one of them. This review attempts to draw attention to the most notable examples of these novel compounds, which have excellent anticancer activity against different cancers. The synthetic scheme of these scaffolds, their metal complexes, and the explanation of their anticancer mechanism reported in this paper lead the researchers to design and synthesize more target-specific Schiff base congeners with little or no side effects in the future.
近年来,生物无机化学领域的发展提高了人们对席夫碱配合物(亚胺支架)的兴趣,因为它们在不同领域具有卓越的药理活性。席夫碱是一类由伯胺与羰基化合物缩合反应合成的合成分子。亚胺衍生物也因其与多种金属形成配合物的能力而受到认可。由于其广泛的生物活性,它们在治疗和制药行业中备受瞩目。无机化学家一直对这些分子的广泛用途感兴趣。它们中的许多还具有热稳定性和结构灵活性。其中一些化学物质已被发现作为临床诊断剂和化学治疗剂具有益处。由于反应的灵活性,这些配合物在生物系统中具有广泛的特性和应用。抗肿瘤活性就是其中之一。本综述试图关注这些新型化合物中最显著的例子,它们对不同癌症具有出色的抗癌活性。本文报道的这些支架的合成方案、它们的金属配合物以及它们抗癌机制的解释,将引导研究人员在未来设计和合成更多具有很少或没有副作用的靶向特异性席夫碱同系物。