Gazquez Casals Andreu, Berkowitz Alex J, Yu Alice J, Waters Hope E, Schiavone Daniel V, Kapkayeva Diana M, Morrison Lynda A, Murelli Ryan P
Department of Molecular Microbiology and Immunology, Saint Louis University School of Medicine St. Louis MO USA
Department of Chemistry, Brooklyn College, The City University of New York Brooklyn NY USA
RSC Adv. 2023 Mar 15;13(13):8743-8752. doi: 10.1039/d2ra06749h. eCollection 2023 Mar 14.
α-Hydroxytropolones (αHTs) have potent antiviral activity against herpes simplex virus-1 and -2 (HSV-1 and HSV-2) in cell culture, including against acyclovir-resistant mutants, and as a result have the potential to be developed as antiviral drugs targeting these viruses. We recently described a convenient final-step amidation strategy to their synthesis, and this was used to generate 57 amide-substituted αHTs that were tested against hepatitis B virus. The following manuscript describes the evaluation of this library against HSV-1, as well as a subset against HSV-2. The structure-function analysis obtained from these studies demonstrates the importance of lipophilicity and rigidity to αHT-based anti-HSV potency, consistent with our prior work on smaller libraries. We used this information to synthesize and test a targeted library of 4 additional amide-appended αHTs. The most potent of this new series had a 50% effective concentration (EC) for viral inhibition of 72 nM, on par with the most potent αHT antivirals we have found to date. Given the ease of synthesis of amide-appended αHTs, this new class of antiviral compounds and the chemistry to make them should be highly valuable in future anti-HSV drug development.
α-羟基环庚三烯酚酮(αHTs)在细胞培养中对单纯疱疹病毒1型和2型(HSV-1和HSV-2)具有强大的抗病毒活性,包括对阿昔洛韦耐药突变体,因此有潜力被开发为针对这些病毒的抗病毒药物。我们最近描述了一种简便的合成αHTs的最后一步酰胺化策略,并利用该策略生成了57种酰胺取代的αHTs,对其进行了抗乙型肝炎病毒测试。以下手稿描述了该文库对HSV-1的评估,以及对HSV-2的一个子集的评估。从这些研究中获得的结构-功能分析表明,亲脂性和刚性对基于αHTs的抗HSV效力很重要,这与我们之前对较小文库的研究一致。我们利用这些信息合成并测试了另外4种酰胺附加型αHTs的靶向文库。该新系列中最有效的化合物对病毒抑制的50%有效浓度(EC)为72 nM,与我们迄今发现的最有效的αHT抗病毒药物相当。鉴于酰胺附加型αHTs易于合成,这类新的抗病毒化合物及其合成化学在未来抗HSV药物开发中应具有很高的价值。