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Novel In Vivo Model for the Study of Human Immunodeficiency Virus Type 1 Transcription Inhibitors: Evaluation of New 6-Desfluoroquinolone Derivatives▿

机译:用于研究人类免疫缺陷病毒1型转录抑制剂的新型体内模型:新型6-去氟喹诺酮衍生物的评价

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摘要

Two novel 6-desfluoroquinolone derivatives, HM-12 and HM-13, were evaluated for anti-human immunodeficiency virus (anti-HIV) activity in acutely, chronically, and latently HIV type 1 (HIV-1)-infected cell cultures and were found to behave as potent HIV-1 transcription inhibitors. In order to extend this result in vivo, we developed an artificial hu-SCID mouse model for HIV-1 latency based on SCID mice engrafted with latently HIV-1-infected promyelocytic OM-10.1 cells in which HIV-1 can be reactivated in vivo by the administration of human tumor necrosis factor alpha (hTNF-α). Treating these SCID mice with HM-12 or HM-13 prior to hTNF-α stimulation resulted in a pronounced suppressive effect on viral reactivation. Since both quinolone derivatives were able to inhibit the reactivation of HIV-1 from this artificial viral reservoir in vivo, we provide encouraging evidence for the use of quinolones in the control of HIV-1 infections.
机译:评估了两种新型的6-去氟喹诺酮衍生物HM-12和HM-13在急性,慢性和潜在感染HIV 1型(HIV-1)的细胞培养物中的抗人免疫缺陷病毒(anti-HIV)活性,被发现具有有效的HIV-1转录抑制剂的作用。为了在体内扩展该结果,我们基于移植了潜伏着HIV-1感染的早幼粒细胞OM-10.1细胞的SCID小鼠,开发了HIV-1潜伏期的人工hu-SCID小鼠模型,其中HIV-1可以在体内重新激活通过给予人类肿瘤坏死因子α(hTNF-α)。在hTNF-α刺激之前,用HM-12或HM-13处理这些SCID小鼠对病毒的再激活具有明显的抑制作用。由于两种喹诺酮衍生物均能够在体内从该人工病毒库中抑制HIV-1的再激活,因此我们为在控制HIV-1感染中使用喹诺酮提供了令人鼓舞的证据。

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