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1.
Ann Rheum Dis ; 68(7): 1201-7, 2009 Jul.
Artigo em Inglês | MEDLINE | ID: mdl-18397960

RESUMO

BACKGROUND: Earlier publications have suggested a possible role for the efflux transporter breast cancer resistance protein (BCRP) in acquired resistance to disease-modifying antirheumatic drugs (DMARDs) such as leflunomide and its metabolite A771726 (teriflunomide). However, there is no direct evidence that BCRP interacts with these drugs. OBJECTIVES: To characterise the interaction between BCRP transporter and leflunomide and its active metabolite A771726, with emphasis on the nature of the interaction (substrate or inhibitor) and the kinetic characterisation of the interactions. METHODS: Different in vitro membrane-based methods (ATPase and vesicular transport assay) using BCRP-HAM-Sf9 membrane preparations and cellular assays (Hoechst assay and cytotoxicity assay) were performed on PLB985-BCRP and HEK293-BCRP cell lines overexpressing BCRP. RESULTS: In all assays used, an interaction between the investigated drugs and BCRP was detected. In the vesicular transport assay, both leflunomide and its metabolite inhibited BCRP-mediated methotrexate transport. Both compounds are likely substrates of BCRP as shown by the vanadate-sensitive ATPase assay. In line with the membrane assays, leflunomide and A771726 inhibited BCRP-mediated Hoechst efflux from PLB985-BCRP cells. In the cytotoxicity assay, overexpression of BCRP conferred 20.6-fold and 7.5-fold resistance to HEK293 cells against leflunomide and A771726, respectively. The resistance could be reversed by Ko134, a specific inhibitor of BCRP. CONCLUSION: Based on these results, BCRP could play an important role in the resistance to leflunomide and A771726 via interactions with these drugs. BCRP may also mediate drug-drug interactions when leflunomide is administered with other BCRP substrate drugs such as methotrexate.


Assuntos
Transportadores de Cassetes de Ligação de ATP/efeitos dos fármacos , Compostos de Anilina/farmacologia , Antirreumáticos/farmacologia , Hidroxibutiratos/farmacologia , Isoxazóis/farmacologia , Proteínas de Neoplasias/efeitos dos fármacos , Membro 2 da Subfamília G de Transportadores de Cassetes de Ligação de ATP , Adenosina Trifosfatases/efeitos dos fármacos , Linhagem Celular , Sobrevivência Celular/efeitos dos fármacos , Crotonatos , Resistência a Medicamentos , Humanos , Leflunomida , Nitrilas , Toluidinas
2.
Drug Metab Dispos ; 37(4): 794-801, 2009 Apr.
Artigo em Inglês | MEDLINE | ID: mdl-19118132

RESUMO

Multidrug resistance protein 2 (MRP2) is a multispecific organic anion transporter expressed at important pharmacological barriers, including the canalicular membrane of hepatocytes. At this location it is involved in the elimination of both endogenous and exogenous waste products, mostly as conjugates, to the bile. Estradiol-17beta-d-glucuronide (E(2)17betaG), a widely studied endogenous substrate of MRP2, was shown earlier to recognize two binding sites of the transporter in vesicular transport assays. MRP2 modulators (substrates and nonsubstrates) potentiate the transport of E(2)17betaG by MRP2. We correlated data obtained from studies of different complexities and investigated the species-specific differences between rat and human MRP2-mediated transport. We used vesicular transport assays, sandwich-cultured primary hepatocytes, and in vivo biliary efflux in rats. Our results demonstrate that the rat Mrp2 transporter, unlike the human MRP2, transports E(2)17betaG according to Michaelis-Menten type kinetics. Nevertheless, in the presence of modulator drugs E(2)17betaG transport mediated by the rat transporter also shows cooperative kinetics as potentiation of E(2)17betaG transport was observed in the vesicular transport assay. We also demonstrated that the potentiation exists both in rat and in human hepatocytes and in vivo in rats.


Assuntos
Estradiol/análogos & derivados , Proteínas Associadas à Resistência a Múltiplos Medicamentos/fisiologia , Animais , Transporte Biológico , Células Cultivadas , Estradiol/metabolismo , Estradiol/farmacocinética , Hepatócitos/metabolismo , Humanos , Masculino , Proteína 2 Associada à Farmacorresistência Múltipla , Ratos , Ratos Wistar , Especificidade da Espécie
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