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1.
Bioorg Med Chem ; 18(20): 7221-38, 2010 Oct 15.
Artigo em Inglês | MEDLINE | ID: mdl-20846865

RESUMO

Complementary two-dimensional (2D) and three-dimensional (3D) Quantitative Structure-Activity Relationship (QSAR) techniques were used to derive a preliminary model for the dopamine transporter (DAT) binding affinity of 80 racemic threo-methylphenidate (MP) analogs. A novel approach based on using the atom-level E-state indices of the 14 common scaffold atoms in a sphere exclusion protocol was used to identify a test set for 2D- and 3D-QSAR model validation. Comparative Molecular Field Analysis (CoMFA) contour maps based on the structure-activity data of the training set indicate that the 2' position of the phenyl ring cannot tolerate much steric bulk and that addition of electron-withdrawing groups to the 3' or 4' positions of the phenyl ring leads to improved DAT binding affinity. In particular, the optimal substituents were found to be those whose bulk is mainly in the plane of the phenyl ring. Substituents with significant bulk above or below the plane of the ring led to decreased binding affinity. Suggested alterations to be explored in the design of new compounds are the placement at the 3' and 4' position of the phenyl ring of electron-withdrawing groups that lie chiefly in the plane of the ring, for example, halogen substituents on the 3',4'-benzo analog, 79. A complementary 2D-QSAR approach-partial least squares analysis using a reduced set of Molconn-Z descriptors-supports the CoMFA structure-activity interpretation that phenyl ring substitution is a major determinant of DAT binding affinity. The potential usefulness of the CoMFA models was demonstrated by the prediction of the binding affinity of methyl 2-(naphthalen-1-yl)-2-(piperidin-2-yl)acetate, an analog not in the original data set, to be in good agreement with the experimental value.


Assuntos
Metilfenidato/química , Proteínas da Membrana Plasmática de Transporte de Dopamina/química , Proteínas da Membrana Plasmática de Transporte de Dopamina/metabolismo , Isomerismo , Metilfenidato/síntese química , Metilfenidato/farmacologia , Modelos Moleculares , Ligação Proteica , Relação Quantitativa Estrutura-Atividade
2.
J Med Chem ; 51(18): 5506-21, 2008 Sep 25.
Artigo em Inglês | MEDLINE | ID: mdl-18800760

RESUMO

Enantiomeric propanolamines have been identified as a new class of NR2B-selective NMDA receptor antagonists. The most effective agents are biaryl structures, synthesized in six steps with overall yields ranging from 11-64%. The compounds are potent and selective inhibitors of NR2B-containing recombinant NMDA receptors with IC 50 values between 30-100 nM. Potency is strongly controlled by substitution on both rings and the centrally located amine nitrogen. SAR analysis suggests that well-balanced polarity and chain-length factors provide the greatest inhibitory potency. Structural comparisons based on 3D shape analysis and electrostatic complementarity support this conclusion. The antagonists are neuroprotective in both in vitro and in vivo models of ischemic cell death. In addition, some compounds exhibit anticonvulsant properties. Unlike earlier generation NMDA receptor antagonists and some NR2B-selective antagonists, the present series of propanolamines does not cause increased locomotion in rodents. Thus, the NR2B-selective antagonists exhibit a range of therapeutically interesting properties.


Assuntos
Antagonistas de Aminoácidos Excitatórios/farmacologia , Propanolaminas/farmacologia , Receptores de N-Metil-D-Aspartato/antagonistas & inibidores , Animais , Anticonvulsivantes/farmacologia , Barreira Hematoencefálica , Encéfalo/metabolismo , Antagonistas de Aminoácidos Excitatórios/sangue , Antagonistas de Aminoácidos Excitatórios/química , Antagonistas de Aminoácidos Excitatórios/farmacocinética , Espectroscopia de Ressonância Magnética , Espectrometria de Massas , Atividade Motora/efeitos dos fármacos , Propanolaminas/sangue , Propanolaminas/química , Propanolaminas/farmacocinética , Ratos , Estereoisomerismo , Relação Estrutura-Atividade , Xenopus
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