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4-(Difluoromethyl)-5-(4-((3R,5S)-3,5-dimethylmorpholino)-6-((R)-3-methylmorpholino)-1,3,5-triazin-2-yl)pyridin-2-amine (PQR626), a potent, orally available, and brain-penetrant mTOR inhibitor for the treatment of neurological disorders

Borsari, Chiara and Keles, Erhan and Rageot, Denise and Treyer, Andrea and Bohnacker, Thomas and Bissegger, Lukas and De Pascale, Martina and Melone, Anna and Sriramaratnam, Rohitha and Beaufils, Florent and Hamburger, Matthias and Hebeisen, Paul and Löscher, Wolfgang and Fabbro, Doriano and Hillmann, Petra and Wymann, Matthias P.. (2020) 4-(Difluoromethyl)-5-(4-((3R,5S)-3,5-dimethylmorpholino)-6-((R)-3-methylmorpholino)-1,3,5-triazin-2-yl)pyridin-2-amine (PQR626), a potent, orally available, and brain-penetrant mTOR inhibitor for the treatment of neurological disorders. Journal of Medicinal Chemistry, 63 (22). pp. 13595-13617.

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Official URL: https://edoc.unibas.ch/79465/

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Abstract

The mechanistic target of rapamycin (mTOR) pathway is hyperactivated in cancer and neurological disorders. Rapalogs and mTOR kinase inhibitors (TORKi) have recently been applied to alleviate epileptic seizures in tuberous sclerosis complex (TSC). Herein, we describe a pharmacophore exploration to identify a highly potent, selective, brain penetrant TORKi. An extensive investigation of the morpholine ring engaging the mTOR solvent exposed region led to the discovery of PQR626 (8). 8 displayed excellent brain penetration and was well-tolerated in mice. In mice with a conditionally inactivated Tsc1 gene in glia, 8 significantly reduced the loss of Tsc1-induced mortality at 50 mg/kg p.o. twice a day. 8 overcomes the metabolic liabilities of PQR620 (52), the first-in-class brain penetrant TORKi showing efficacy in a TSC mouse model. The improved stability in human hepatocytes, excellent brain penetration, and efficacy in Tsc1GFAPCKO mice qualify 8 as a potential therapeutic candidate for the treatment of neurological disorders.
Faculties and Departments:05 Faculty of Science > Departement Pharmazeutische Wissenschaften > Ehemalige Einheiten Pharmazie > Pharmazeutische Biologie (Hamburger)
UniBasel Contributors:Hamburger, Matthias and Treyer, Andrea
Item Type:Article, refereed
Article Subtype:Research Article
Publisher:American Chemical Society
ISSN:0022-2623
e-ISSN:1520-4804
Note:Publication type according to Uni Basel Research Database: Journal article
Identification Number:
Last Modified:01 Nov 2021 15:36
Deposited On:01 Nov 2021 15:36

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