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J Med Chem ; 52(11): 3523-38, 2009 Jun 11.
Article de Anglais | MEDLINE | ID: mdl-19422229

RÉSUMÉ

The matrix metalloproteinase enzyme MMP-13 plays a key role in the degradation of type II collagen in cartilage and bone in osteoarthritis (OA). An effective MMP-13 inhibitor would therefore be a novel disease modifying therapy for the treatment of arthritis. Our efforts have resulted in the discovery of a series of carboxylic acid inhibitors of MMP-13 that do not significantly inhibit the related MMP-1 (collagenase-1) or tumor necrosis factor-alpha (TNF-alpha) converting enzyme (TACE). It has previously been suggested (but not proven) that inhibition of the latter two enzymes could lead to side effects. A promising carboxylic acid lead 9 was identified and a convergent synthesis developed. This paper describes the optimization of 9 and the identification of a compound 24f for further development. Compound 24f is a subnanomolar inhibitor of MMP-13 (IC(50) value 0.5 nM and K(i) of 0.19 nM) having no activity against MMP-1 or TACE (IC(50) of >10000 nM). Furthermore, in a rat model of MMP-13-induced cartilage degradation, 24f significantly reduced proteoglycan release following oral dosing at 30 mg/kg (75% inhibition, p < 0.05) and at 10 mg/kg (40% inhibition, p < 0.05).


Sujet(s)
Cartilage/effets des médicaments et des substances chimiques , Inhibiteurs de métalloprotéinases matricielles , Pipéridines/pharmacologie , Inhibiteurs de protéases/synthèse chimique , Sulfonamides/pharmacologie , Animaux , Cartilage/métabolisme , Bovins , Collagène de type II/métabolisme , Cristallographie aux rayons X , Concentration inhibitrice 50 , Pipéridines/administration et posologie , Pipéridines/synthèse chimique , Pipéridines/pharmacocinétique , Inhibiteurs de protéases/administration et posologie , Inhibiteurs de protéases/pharmacocinétique , Inhibiteurs de protéases/pharmacologie , Protéoglycanes/métabolisme , Rats , Relation structure-activité , Sulfonamides/administration et posologie , Sulfonamides/synthèse chimique , Sulfonamides/pharmacocinétique
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