Department of Pharmaceutical Chemistry, Faculty of Pharmacy, School of Health Sciences, National and Kapodistrian University of Athens, Athens, Greece.
Department of Pathogen Molecular Biology, London School of Hygiene and Tropical Medicine, London, UK.
Chem Biol Drug Des. 2018 Feb;91(2):408-421. doi: 10.1111/cbdd.13088. Epub 2017 Sep 18.
We have previously described a number of lipophilic conformationally constrained spiro carbocyclic 2,6-diketopiperazine (2,6-DKP)-1-acetohydroxamic acids as potent antitrypanosomal agents. In this report, we extend the SAR analysis in this class of compounds with respect to in vitro growth inhibition of Trypanosoma and Leishmania parasites. Introduction of bulky hydrophobic substituents at the vicinal position of the basic nitrogen atom in the spiro carbocyclic 2,6-DKP ring system can provide analogues which are potently active against bloodstream form Trypanosoma brucei and exhibit significant activities toward Trypanosoma cruzi epimastogotes and Leishmania infantum promastigotes and intracellular amastigotes. In particular, compounds possessing a benzyl or 4-chlorobenzyl substituent were found to be the most active growth inhibitors, with activities in the low nanomolar and low micromolar ranges for T. brucei and L. infantum, respectively. The benzyl-substituted (S)-enantiomer was the most potent derivative against T. brucei (IC = 6.8 nm), T. cruzi (IC = 0.21 μm), and L. infantum promastigotes (IC = 2.67 μm) and intracellular amastigotes (IC = 2.60 μm). Moreover, the (R)-chiral benzyl-substituted derivative and its racemic counterpart displayed significant activities against L. donovani. Importantly, the active compounds show high selectivity in comparison with two mammalian cell lines.
我们之前描述了一些亲脂性构象受限的螺环碳环 2,6-二酮哌嗪(2,6-DKP)-1-乙酰羟肟酸,它们是有效的抗锥虫药物。在本报告中,我们扩展了此类化合物的 SAR 分析,以研究它们对 Trypanosoma 和 Leishmania 寄生虫的体外生长抑制作用。在螺环碳环 2,6-DKP 环系统中碱性氮原子的相邻位置引入大体积疏水性取代基,可以提供对血流形式的 Trypanosoma brucei 具有强大活性的类似物,并且对 Trypanosoma cruzi 动基体和 Leishmania infantum 前鞭毛体和细胞内无鞭毛体具有显著的活性。特别是,具有苄基或 4-氯苄基取代基的化合物被发现是最有效的生长抑制剂,对 T. brucei 和 L. infantum 的活性分别在纳摩尔和微摩尔范围内。苄基取代的(S)-对映异构体是针对 T. brucei(IC = 6.8 nm)、T. cruzi(IC = 0.21 μm)和 L. infantum 前鞭毛体(IC = 2.67 μm)和细胞内无鞭毛体(IC = 2.60 μm)的最有效衍生物。此外,(R)-手性苄基取代衍生物及其外消旋体对 L. donovani 也表现出显著的活性。重要的是,与两种哺乳动物细胞系相比,活性化合物具有高选择性。