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Structure modifications of 6-aminoquinolones with potent anti-HIV activity

机译:具有有效抗HIV活性的6-氨基喹诺酮类化合物的结构修饰

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We have recently discovered that 6-aminoquinolone derivatives could be valid leads for the development of new anti-HIV agents because of their new and diversified mode of action. In fact, studies carried out on the lead WM5 showed that this derivative is able to inhibit the Tat-mediated long terminal repeat driven transcription, an essential step in the HIV-1 replication cycle. Thus, starting from lead WM5, we performed the design and synthesis of an enlarged series of 6-aminoquinolones, which permitted some very potent anti-HIV 6-amino derivatives to be obtained and the structure-activity relationship to be delineated. Some derivatives, 26c, 26e, 26i, and 26j, proved to be highly effective in inhibiting HIV replication at 50% inhibitory concentration in the range of 0.0087-0.7 mug/mL in MT-4, PBMCs and CEM cell lines coupled with positive selectivity indexes that reach values higher than 1000 on CEM cell lines for compounds 26e and 26i. Time-of-addition experiments clearly confirm that the new, potent 6-aminoquinolones interact at a postintegration step in the replication cycle of HIV.
机译:我们最近发现,6-氨基喹诺酮衍生物由于其新的和多样化的作用方式,可能是开发新型抗HIV药物的有效线索。实际上,对前导WM5进行的研究表明,该衍生物能够抑制Tat介导的长末端重复驱动的转录,这是HIV-1复制周期中必不可少的步骤。因此,从WM5铅开始,我们进行了一系列6-氨基喹诺酮类化合物的设计和合成,从而获得了一些非常有效的抗HIV 6-氨基衍生物,并勾勒出了结构-活性关系。事实证明,某些衍生物26c,26e,26i和26j在MT-4,PBMC和CEM细胞系中具有0.0087-0.7 mug / mL的50%抑制浓度时,能有效抑制HIV复制,并具有正选择性在CEM细胞系中对于化合物26e和26i达到高于1000的指数。添加时间实验清楚地证实,新的有效的6-氨基喹诺酮类药物在HIV复制周期的整合后步骤中相互作用。

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