Tsypyshev Dmitry O, Klabukov Artem M, Razgulaeva Daria N, Galochkina Anastasia V, Shtro Anna A, Borisevich Sophia S, Khomenko Tatyana M, Volcho Konstantin P, Komarova Nina I, Salakhutdinov Nariman F
Department of Medicinal Chemistry, N. N. Vorozhtsov Novosibirsk Institute of Organic Chemistry 9, Akademika Lavrentieva Ave. 630090 Novosibirsk Russia
Laboratory of Chemotherapy for Viral Infections, Smorodintsev Research Institute of Influenza Professor Popova Str., 15/17 197376 St. Petersburg Russia.
RSC Med Chem. 2024 Dec 2. doi: 10.1039/d4md00728j.
Respiratory syncytial virus (RSV) is the leading cause of acute lower respiratory infections in babies across the world. Irrespective of progress in the development of RSV vaccines, effective small molecule drugs are still not available on the market. Based on our previous data we designed and synthesized triazole-linked coumarin-monoterpene hybrids and showed that they are indeed effective in inhibiting the RSV replication. The most effective compounds are active against both RSV serotypes, A and B, with IC in the low micromolar or submicromolar range of concentrations. These are the most active coumarin derivatives found so far. Compound 45 combining 3,7-dimethyloctane and cyclopentane-annealed coumarin fragments has a selectivity index of 160 for serotype A and 1147 for serotype B. According to the results of the time-of-addition experiments, the conjugates are active at the early stages of the virus cycle. Based on biological evaluation and molecular modeling data, RSV F protein is a possible target.
呼吸道合胞病毒(RSV)是全球范围内引起婴儿急性下呼吸道感染的主要原因。尽管RSV疫苗的研发取得了进展,但市场上仍没有有效的小分子药物。基于我们之前的数据,我们设计并合成了三唑连接的香豆素-单萜杂化物,并表明它们确实能有效抑制RSV复制。最有效的化合物对RSV A和B两种血清型均有活性,其半数抑制浓度(IC)处于低微摩尔或亚微摩尔浓度范围。这些是迄今为止发现的活性最高的香豆素衍生物。结合了3,7-二甲基辛烷和环戊烷退火香豆素片段的化合物45对A血清型的选择性指数为160,对B血清型为1147。根据添加时间实验的结果,这些缀合物在病毒周期的早期具有活性。基于生物学评估和分子模拟数据,RSV F蛋白是一个可能的靶点。