Literature DB >> 26135714

Discovery of GSK2795039, a Novel Small Molecule NADPH Oxidase 2 Inhibitor.

Kazufumi Hirano1, Woei Shin Chen1, Adeline L W Chueng1, Angela A Dunne1, Tamara Seredenina2, Aleksandra Filippova2, Sumitra Ramachandran1, Angela Bridges3, Laiq Chaudry3, Gary Pettman3, Craig Allan3, Sarah Duncan1, Kiew Ching Lee1, Jean Lim1, May Thu Ma1, Agnes B Ong1, Nicole Y Ye1, Shabina Nasir1, Sri Mulyanidewi1, Chiu Cheong Aw1, Pamela P Oon1, Shihua Liao4, Dizheng Li4, Douglas G Johns5, Neil D Miller1, Ceri H Davies1, Edward R Browne1, Yasuji Matsuoka1, Deborah W Chen1, Vincent Jaquet2, A Richard Rutter1.   

Abstract

AIMS: The NADPH oxidase (NOX) family of enzymes catalyzes the formation of reactive oxygen species (ROS). NOX enzymes not only have a key role in a variety of physiological processes but also contribute to oxidative stress in certain disease states. To date, while numerous small molecule inhibitors have been reported (in particular for NOX2), none have demonstrated inhibitory activity in vivo. As such, there is a need for the identification of improved NOX inhibitors to enable further evaluation of the biological functions of NOX enzymes in vivo as well as the therapeutic potential of NOX inhibition. In this study, both the in vitro and in vivo pharmacological profiles of GSK2795039, a novel NOX2 inhibitor, were characterized in comparison with other published NOX inhibitors.
RESULTS: GSK2795039 inhibited both the formation of ROS and the utilization of the enzyme substrates, NADPH and oxygen, in a variety of semirecombinant cell-free and cell-based NOX2 assays. It inhibited NOX2 in an NADPH competitive manner and was selective over other NOX isoforms, xanthine oxidase, and endothelial nitric oxide synthase enzymes. Following systemic administration in mice, GSK2795039 abolished the production of ROS by activated NOX2 enzyme in a paw inflammation model. Furthermore, GSK2795039 showed activity in a murine model of acute pancreatitis, reducing the levels of serum amylase triggered by systemic injection of cerulein. INNOVATION AND
CONCLUSIONS: GSK2795039 is a novel NOX2 inhibitor that is the first small molecule to demonstrate inhibition of the NOX2 enzyme in vivo.

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Year:  2015        PMID: 26135714      PMCID: PMC4545375          DOI: 10.1089/ars.2014.6202

Source DB:  PubMed          Journal:  Antioxid Redox Signal        ISSN: 1523-0864            Impact factor:   8.401


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