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1.
ACS Med Chem Lett ; 2(12): 913-8, 2011 Dec 08.
Article in English | MEDLINE | ID: mdl-24900280

ABSTRACT

We report the discovery of a new (S)-3-aminopyrrolidine series of CCR2 antagonists. Structure-activity relationship studies on this new series led to the identification of 17 (INCB8761/PF-4136309) that exhibited potent CCR2 antagonistic activity, high selectivity, weak hERG activity, and an excellent in vitro and in vivo ADMET profile. INCB8761/PF-4136309 has entered human clinical trials.

2.
ACS Med Chem Lett ; 2(6): 450-4, 2011 Jun 09.
Article in English | MEDLINE | ID: mdl-24900329

ABSTRACT

We report the identification of 13 (INCB3284) as a potent human CCR2 (hCCR2) antagonist. INCB3284 exhibited an IC50 of 3.7 nM in antagonism of monocyte chemoattractant protein-1 binding to hCCR2, an IC50 of 4.7 nM in antagonism of chemotaxis activity, an IC50 of 84 µM in inhibition of the hERG potassium current, a free fraction of 58% in protein binding, high selectivity over other chemokine receptors and G-protein-coupled receptors, and acceptable oral bioavailability in rodents and primates. In human clinical trials, INCB3284 exhibited a pharmacokinetic profile suitable for once-a-day dosing (T 1/2 = 15 h).

3.
Bioorg Med Chem Lett ; 20(24): 7473-8, 2010 Dec 15.
Article in English | MEDLINE | ID: mdl-21036044

ABSTRACT

Rational design based on a pharmacophore of CCR2 antagonists reported in the literature identified lead compound 9a with potent inhibitory activity against human CCR2 (hCCR2) but moderate activity against murine CCR2 (mCCR2). Modification on 9a led to the discovery of a potent CCR2 antagonist 21 (INCB3344) with IC(50) values of 5.1 nM (hCCR2) and 9.5 nM (mCCR2) in binding antagonism and 3.8 nM (hCCR2) and 7.8 nM (mCCR2) in antagonism of chemotaxis activity. INCB3344 exhibited >100-fold selectivity over other homologous chemokine receptors, a free fraction of 24% in human serum and 15% in mouse serum, and an oral bioavailability of 47% in mice, suitable as a tool compound for target validation in rodent models.


Subject(s)
Pyrrolidines/chemistry , Receptors, CCR2/antagonists & inhibitors , Administration, Oral , Animals , Drug Evaluation, Preclinical , Humans , Mice , Protein Binding , Pyrrolidines/chemical synthesis , Pyrrolidines/pharmacokinetics , Rats , Receptors, CCR2/metabolism , Structure-Activity Relationship
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