| Literature DB >> 27579727 |
Jose María Cid1, Gary Tresadern1, Juan Antonio Vega1, Ana Isabel de Lucas1, Alcira Del Cerro1, Encarnación Matesanz1, María Lourdes Linares1, Aránzazu García1, Laura Iturrino1, Laura Pérez-Benito2, Gregor J Macdonald3, Daniel Oehlrich3, Hilde Lavreysen3, Luc Peeters3, Marc Ceusters3, Abdellah Ahnaou3, Wilhelmus Drinkenburg3, Claire Mackie3, Marijke Somers3, Andrés A Trabanco1.
Abstract
Positive allosteric modulators of the metabotropic glutamate 2 receptor have generated great interest in the past decade. There is mounting evidence of their potential as therapeutic agents in the treatment of multiple central nervous system disorders. We have previously reported substantial efforts leading to potent and selective mGlu2 PAMs. However, finding compounds with the optimal combination of in vitro potency and good druglike properties has remained elusive, in part because of the hydrophobic nature of the allosteric binding site. Herein, we report on the lead optimization process to overcome the poor solubility inherent to the advanced lead 6. Initial prototypes already showed significant improvements in solubility while retaining good functional activity but displayed new liabilities associated with metabolism and hERG inhibition. Subsequent subtle modifications efficiently addressed those issues leading to the identification of compound 27 (JNJ-46356479). This new lead represents a more balanced profile that offers a significant improvement on the druglike attributes compared to previously reported leads.Entities:
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Year: 2016 PMID: 27579727 DOI: 10.1021/acs.jmedchem.6b00913
Source DB: PubMed Journal: J Med Chem ISSN: 0022-2623 Impact factor: 7.446