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In Vitro Assessment of the Effect of Antiepileptic Drugs on Expression and Function of ABC Transporters and Their Interactions with ABCC2

机译:体外评估抗癫痫药物对ABC转运蛋白表达和功能及其与ABCC2相互作用的影响

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摘要

ABC transporters have a significant role in drug disposition and response and various studies have implicated their involvement in epilepsy pharmacoresistance. Since genetic studies till now are inconclusive, we thought of investigating the role of xenobiotics as transcriptional modulators of ABC transporters. Here, we investigated the effect of six antiepileptic drugs (AEDs) viz. phenytoin, carbamazepine, valproate, lamotrigine, topiramate and levetiracetam, on the expression and function of ABCB1, ABCC1, ABCC2 and ABCG2 in Caco2 and HepG2 cell lines through real time PCR, western blot and functional activity assays. Further, the interaction of AEDs with maximally induced ABCC2 was studied. Carbamazepine caused a significant induction in expression of ABCB1 and ABCC2 in HepG2 and Caco2 cells, both at the transcript and protein level, together with increased functional activity. Valproate caused a significant increase in the expression and functional activity of ABCB1 in HepG2 only. No significant effect of phenytoin, lamotrigine, topiramate and levetiracetam on the transporters under study was observed in either of the cell lines. We demonstrated the interaction of carbamazepine and valproate with ABCC2 with ATPase and 5,6-carboxyfluorescein inhibition assays. Thus, altered functionality of ABCB1 and ABCC2 can affect the disposition and bioavailability of administered drugs, interfering with AED therapy.
机译:ABC转运蛋白在药物的处置和反应中起着重要作用,各种研究表明它们参与了癫痫药的抗药性。由于迄今为止的遗传学研究尚无定论,因此我们考虑研究异种生物作为ABC转运蛋白转录调节剂的作用。在这里,我们调查了六种抗癫痫药(AED)的作用。苯妥英钠,卡马西平,丙戊酸盐,拉莫三嗪,托吡酯和左乙拉西坦,通过实时PCR,Western印迹和功能活性测定,研究ABCB1,ABCC1,ABCC2和ABCG2在Caco2和HepG2细胞系中的表达和功能。此外,研究了AED与最大诱导的ABCC2的相互作用。卡马西平在HepG2和Caco2细胞中导致转录和蛋白质水平上ABCB1和ABCC2表达的显着诱导,同时功能活性增加。丙戊酸盐仅在HepG2中引起ABCB1的表达和功能活性显着增加。在两种细胞系中,未观察到苯妥英钠,拉莫三嗪,托吡酯和左乙拉西坦对被研究的转运蛋白有显着影响。我们证明了卡马西平和丙戊酸盐与ABCC2的相互作用以及ATPase和5,6-羧基荧光素的抑制作用。因此,ABCB1和ABCC2功能的改变会影响所用药物的处置和生物利用度,从而干扰AED治疗。

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