Wang Qian, Han Jianlin, Sorochinsky Alexander, Landa Aitor, Butler Greg, Soloshonok Vadim A
Jiangsu Co-Innovation Center of Efficient Processing and Utilization of Forest Resources, College of Chemical Engineering, Nanjing Forestry University, Nanjing 210037, China.
V.P. Kukhar Institute of Bioorganic Chemistry and Petrochemistry, The National Academy of Sciences of Ukraine, 1 Murmanska Str., 02094 Kyiv, Ukraine.
Pharmaceuticals (Basel). 2022 Aug 14;15(8):999. doi: 10.3390/ph15080999.
Nowadays, the selective introduction of fluorine into bioactive compounds is a mature strategy in the design of drugs allowing to increase efficiency, biological half-life and bio-absorption. On the other hand, amino acids (AAs) represent one of the most ubiquitious classes of naturally occurring organic compounds, which are found in over 40% of newly marked small-molecule pharmaceutical drugs and medical formulations. The primary goal of this work is to underscore two major trends in the design of modern pharmaceuticals. The first is dealing with the unique structural characteristics provided by the structure of amino acids featuring an abundance of functionality and the presence of a stereogenic center, all of which bodes well for the successful development of targeted bioactivity. The second is related to fine-tuning the desired activity and pharmacokinetics by selective introduction of fluorine. Historically, both trends were developed separately as innovative and prolific approaches in modern drug design. However, in recent decades, these approaches are clearly converging leading to an ever-increasing number of newly approved pharmaceuticals containing both structural features of amino acids and fluorine.
如今,在药物设计中,将氟选择性引入生物活性化合物是一种成熟的策略,可提高药物的效率、生物半衰期和生物吸收。另一方面,氨基酸是自然界中最普遍存在的有机化合物类别之一,超过40%的新上市小分子药物和医学制剂中都含有氨基酸。这项工作的主要目的是强调现代药物设计中的两个主要趋势。第一个趋势是处理氨基酸结构所提供的独特结构特征,氨基酸具有丰富的官能团和一个手性中心,所有这些都为成功开发靶向生物活性奠定了良好基础。第二个趋势是通过选择性引入氟来微调所需的活性和药代动力学。从历史上看,这两个趋势在现代药物设计中都是作为创新且富有成效的方法分别发展起来的。然而,近几十年来,这些方法明显趋于融合,导致越来越多新批准的药物同时含有氨基酸和氟的结构特征。