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手性吲哚芳基砜非核苷类逆转录酶抑制剂作为新型强效广谱抗HIV-1药物

Chiral Indolylarylsulfone Non-Nucleoside Reverse Transcriptase Inhibitors as New Potent and Broad Spectrum Anti-HIV-1 Agents.

作者信息

Famiglini Valeria, La Regina Giuseppe, Coluccia Antonio, Masci Domiziana, Brancale Andrea, Badia Roger, Riveira-Muñoz Eva, Esté José A, Crespan Emmanuele, Brambilla Alessandro, Maga Giovanni, Catalano Myriam, Limatola Cristina, Formica Francesca Romana, Cirilli Roberto, Novellino Ettore, Silvestri Romano

机构信息

Istituto Pasteur Italia-Fondazione Cenci Bolognetti, Dipartimento di Chimica e Tecnologie del Farmaco, Sapienza Università di Roma , Piazzale Aldo Moro 5, I-00185 Roma, Italy.

Welsh School of Pharmacy, Cardiff University , King Edward VII Avenue, Cardiff CF10 3NB, U.K.

出版信息

J Med Chem. 2017 Aug 10;60(15):6528-6547. doi: 10.1021/acs.jmedchem.6b01906. Epub 2017 Jul 5.

Abstract

We designed and synthesized a series of chiral indolyarylsulfones (IASs) as new HIV-1 NNRTIs. The new IASs 8-37 showed potent inhibition of the HIV-1 WT NL4-3 strain and of the mutant K103N, Y181C, Y188L, and K103N-Y181C HIV-1 strains. Six racemic mixtures, 8, 23-25, 31, and 33, were separated at semipreparative level into their pure enantiomers. The (R)-8 enantiomer bearing the chiral (α-methylbenzyl) was superior to the (S)-counterpart. IAS derivatives bearing the (S) alanine unit, (S)-23, (S,R)-25, (S)-31, and (S)-33, were remarkably more potent than the corresponding (R)-enantiomers. Compound 23 protected hippocampal neuronal cells from the excitotoxic insult, while efavirenz (EFV) did not contrast the neurotoxic effect of glutamate. The present results highlight the chiral IASs as new NNRTIs with improved resistance profile against the mutant HIV-1 strains and reduced neurotoxic effects.

摘要

我们设计并合成了一系列手性吲哚芳基砜(IASs)作为新型HIV-1非核苷类逆转录酶抑制剂。新型IASs 8-37对HIV-1野生型NL4-3毒株以及突变型K103N、Y181C、Y188L和K103N-Y181C HIV-1毒株均表现出强效抑制作用。六种外消旋混合物,即8、23-25、31和33,在半制备水平上被分离为其纯对映体。带有手性(α-甲基苄基)的(R)-8对映体优于其(S)-对映体。带有(S)丙氨酸单元的IAS衍生物,即(S)-23、(S,R)-25、(S)-31和(S)-33,比相应的(R)-对映体活性显著更高。化合物23可保护海马神经元细胞免受兴奋毒性损伤,而依非韦伦(EFV)则不能对抗谷氨酸的神经毒性作用。目前的研究结果突出了手性IASs作为新型非核苷类逆转录酶抑制剂,对突变型HIV-1毒株具有更好的耐药性,且神经毒性作用降低。

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