Kumar Nitin, Khan Shabana I, Rajalakshmi G, Kumaradhas P, Rawat Diwan S
Department of Chemistry, University of Delhi, Delhi 110 007, India.
Bioorg Med Chem. 2009 Aug 1;17(15):5632-8. doi: 10.1016/j.bmc.2009.06.020. Epub 2009 Jun 16.
Substituted tetraoxanes with different substitution pattern on the aromatic ring were synthesized in order to explore the influence of different substituents in the antimalarial activity. Antimalarial activity of these compounds improves by the introduction of ethyl, iso-propyl or n-propyl groups in the aromatic ring but substitution with n-butyl or t-butyl leads decrease in antimalarial activity. Some of these compounds exhibit promising antimalarial activity. None of the compounds shows any toxicity against vero cells and three compounds (2a-2c) were tested against panel of six cell lines and none of these compounds showed any toxicity. X-ray crystal structure of compound 2w showed that tetraoxane ring is in the chair conformation with both the phenyl rings in the equatorial position. In addition, FeCl(3) mediated O-O bond scission of tetraoxanes (2a-2c) was also examined.
为了探究不同取代基对抗疟活性的影响,合成了在芳环上具有不同取代模式的取代四氧杂环烷。这些化合物的抗疟活性通过在芳环中引入乙基、异丙基或正丙基而提高,但用正丁基或叔丁基取代会导致抗疟活性降低。其中一些化合物表现出有前景的抗疟活性。这些化合物均未对 vero 细胞显示出任何毒性,并且对三种化合物(2a - 2c)针对六种细胞系进行了测试,这些化合物均未显示出任何毒性。化合物 2w 的 X 射线晶体结构表明,四氧杂环烷环呈椅式构象,两个苯环均处于赤道位置。此外,还研究了 FeCl(3)介导的四氧杂环烷(2a - 2c)的 O - O 键断裂。