| Literature DB >> 23316884 |
Takashi Kawasuji1, Brian A Johns, Hiroshi Yoshida, Jason G Weatherhead, Toshiyuki Akiyama, Teruhiko Taishi, Yoshiyuki Taoda, Minako Mikamiyama-Iwata, Hitoshi Murai, Ryuichi Kiyama, Masahiro Fuji, Norihiko Tanimoto, Tomokazu Yoshinaga, Takahiro Seki, Masanori Kobayashi, Akihiko Sato, Edward P Garvey, Tamio Fujiwara.
Abstract
This work is a continuation of our initial discovery of a potent monocyclic carbamoyl pyridone human immunodeficiency virus type-1 (HIV-1) integrase inhibitor that displayed favorable antiviral and pharmacokinetic properties. We report herein a series of bicyclic carbamoyl pyridone analogues to address conformational issues from our initial SAR studies. This modification of the core unit succeeded to deliver low nanomolar potency in standard antiviral assays. An additional hydroxyl substituent on the bicyclic scaffold provides remarkable improvement of antiviral efficacies against clinically relevant resistant viruses. These findings led to additional cyclic tethering of the naked hydroxyl group resulting in tricyclic carbamoyl pyridone inhibitors to address remaining issues and deliver potential clinical candidates. The tricyclic carbamoyl pyridone derivatives described herein served as the immediate leads in molecules to the next generation integrase inhibitor dolutegravir which is currently in late stage clinical evaluation.Entities:
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Year: 2013 PMID: 23316884 DOI: 10.1021/jm301550c
Source DB: PubMed Journal: J Med Chem ISSN: 0022-2623 Impact factor: 7.446