| Literature DB >> 29057061 |
Young Shin Cho1, Julian R Levell1, Gang Liu1, Thomas Caferro1, James Sutton1, Cynthia M Shafer1, Abran Costales1, James R Manning1, Qian Zhao1, Martin Sendzik1, Michael Shultz1, Gregg Chenail1, Julia Dooley1, Brian Villalba1, Ali Farsidjani1, Jinyun Chen1, Raviraj Kulathila1, Xiaoling Xie1, Stephanie Dodd1, Ty Gould1, Guiqing Liang1, Tycho Heimbach1, Kelly Slocum1, Brant Firestone1, Minying Pu1, Raymond Pagliarini1, Joseph D Growney1.
Abstract
Inhibition of mutant IDH1 is being evaluated clinically as a promising treatment option for various cancers with hotspot mutation at Arg132. Having identified an allosteric, induced pocket of IDH1R132H, we have explored 3-pyrimidin-4-yl-oxazolidin-2-ones as mutant IDH1 inhibitors for in vivo modulation of 2-HG production and potential brain penetration. We report here optimization efforts toward the identification of clinical candidate IDH305 (13), a potent and selective mutant IDH1 inhibitor that has demonstrated brain exposure in rodents. Preclinical characterization of this compound exhibited in vivo correlation of 2-HG reduction and efficacy in a patient-derived IDH1 mutant xenograft tumor model. IDH305 (13) has progressed into human clinical trials for the treatment of cancers with IDH1 mutation.Entities:
Keywords: Mutant IDH1; brain penetration; clinical candidate; in vivo anticancer activity; inhibition of 2-HG production
Year: 2017 PMID: 29057061 PMCID: PMC5641959 DOI: 10.1021/acsmedchemlett.7b00342
Source DB: PubMed Journal: ACS Med Chem Lett ISSN: 1948-5875 Impact factor: 4.345