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1.
Clin Pharmacol Ther ; 111(2): 416-424, 2022 02.
Artigo em Inglês | MEDLINE | ID: mdl-34623640

RESUMO

Tirabrutinib is an irreversible, small-molecule Bruton's tyrosine kinase (BTK) inhibitor, which was approved in Japan (VELEXBRU) to treat B-cell malignancies and is in clinical development for inflammatory diseases. As an application of model-informed drug development, a semimechanistic pharmacokinetic/pharmacodynamic (PK/PD) model for irreversible BTK inhibition of tirabrutinib was developed to support dose selection in clinical development, based on clinical PK and BTK occupancy data from two phase I studies with a wide range of PK exposures in healthy volunteers and in subjects with rheumatoid arthritis. The developed model adequately described and predicted the PK and PD data. Overall, the model-based simulation supported a total daily dose of at least 40 mg, either q.d. or b.i.d., with adequate BTK occupancy (> 90%) for further development in inflammatory diseases. Following the PK/PD modeling and simulation, the relationship between model-predicted BTK occupancy and preliminary clinical efficacy data was also explored and a positive trend was identified between the increasing time above adequate BTK occupancy and better efficacy in treatment for RA by linear regression.


Assuntos
Tirosina Quinase da Agamaglobulinemia/antagonistas & inibidores , Anti-Inflamatórios/administração & dosagem , Artrite Reumatoide/tratamento farmacológico , Imidazóis/administração & dosagem , Modelos Biológicos , Inibidores de Proteínas Quinases/administração & dosagem , Pirimidinas/administração & dosagem , Adolescente , Adulto , Tirosina Quinase da Agamaglobulinemia/metabolismo , Anti-Inflamatórios/farmacocinética , Artrite Reumatoide/enzimologia , Ensaios Clínicos Fase I como Assunto , Simulação por Computador , Cálculos da Dosagem de Medicamento , Feminino , Humanos , Imidazóis/farmacocinética , Masculino , Pessoa de Meia-Idade , Inibidores de Proteínas Quinases/farmacocinética , Pirimidinas/farmacocinética , Adulto Jovem
2.
Curr Top Med Chem ; 13(12): 1402-28, 2013.
Artigo em Inglês | MEDLINE | ID: mdl-23688132

RESUMO

Retinoic acid (RA), the active metabolite of vitamin A, is an important endogenous signaling molecule regulating cell cycle and maintenance of epithelia. RA isomers are also used as drugs to treat various cancers and dermatological diseases. However, the therapeutic uses of RA isomers are limited due to side effects such as teratogenicity and resistance to treatment emerging mainly from autoinduction of RA metabolism. To improve the therapeutic usefulness of retinoids, RA metabolism blocking agents (RAMBAs) have been developed. These inhibitors generally target the cytochrome P450 (CYP) enzymes because RA clearance is predominantly mediated by P450s. Since the initial identification of inhibitors of RA metabolism, CYP26 enzymes have been characterized as the main enzymes responsible for RA clearance. This makes CYP26 enzymes an attractive target for the development of novel therapeutics for cancer and dermatological conditions. The basic principle of development of CYP26 inhibitors is that endogenous RA concentrations will be increased in the presence of a CYP26 inhibitor, thus, potentiating the activity of endogenous RA in a cell-type specific manner. This will reduce side effects compared to administration of RA and allow for more targeted therapy. In clinical trials, inhibitors of RA metabolism have been effective in treatment of psoriasis and other dermatological conditions as well as in some cancers. However, no CYP26 inhibitor has yet been approved for clinical use. This review summarizes the history of development of RAMBAs, the clinical and preclinical studies with the various structural series and the available knowledge of structure activity relationships of CYP26 inhibitors.


Assuntos
Inibidores das Enzimas do Citocromo P-450 , Inibidores Enzimáticos/farmacologia , Xenobióticos/farmacologia , Animais , Sistema Enzimático do Citocromo P-450/metabolismo , Inibidores Enzimáticos/química , Inibidores Enzimáticos/uso terapêutico , Humanos , Estrutura Molecular , Ácido Retinoico 4 Hidroxilase , Relação Estrutura-Atividade , Xenobióticos/química , Xenobióticos/uso terapêutico
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