首页> 外文OA文献 >Functionally Overlapping Roles of Abcg2 (Bcrp1) and Abcc2 (Mrp2) in the Elimination of Methotrexate and Its Main Toxic Metabolite 7-Hydroxymethotrexate In vivo
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Functionally Overlapping Roles of Abcg2 (Bcrp1) and Abcc2 (Mrp2) in the Elimination of Methotrexate and Its Main Toxic Metabolite 7-Hydroxymethotrexate In vivo

机译:功能上重叠的Abcg2(Bcrp1)和Abcc2(Mrp2)在体内消除甲氨蝶呤及其主要有毒代谢物7-羟甲氨蝶呤的作用

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摘要

Purpose: ABCC2 (MRP2) and ABCG2 (BCRP) transport various endogenous and exogenous compounds, including many anticancer drugs, into bile, feces, and urine. We investigated the possibly overlapping roles of Abcg2 and Abcc2 in the elimination of the anticancer drug methotrexate (MTX) and its toxic metabolite 7-hydroxymethotrexate (7OH-MTX). Experimental Design: We generated and characterized Abcc2;Abcg2(-/-) mice, and used these to determine the overlapping roles of Abcc2 and Abcg2 in the elimination of MTX and 7OH-MTX after i.v. administration of 50 mg/kg MTX. Results: Compared with wild-type, the plasma areas under the curve (AUC) for MTX were 1.6-fold and 2.0-fold higher in Abcg2(-/-) and Abcc2(-/-) mice, respectively, and 3.3-fold increased in Abcc2;Abcg2(-/-) mice. The biliary excretion of MTX was 23-fold reduced in Abcc2;Abcg2(-/-) mice, and the MTX levels in the small intestine were dramatically decreased. Plasma levels of 7OH-MTX were not significantly altered in Abcg2(-/)- mice, but the areas under the curve were 6.2-fold and even 12.4-fold increased in Abcc2(-/-) and Abcc2;Abcg2(-/-) mice, respectively. This indicates that Abcc2 compensates for Abcg2 deficiency but that Abcg2 can only partly compensate for Abcc2 absence. Furthermore, 21-fold decreased biliary 7OH-MTX excretion in Abcc2;Abcg2(-/-) mice and substantial 7OH-MTX accumulation in the liver and kidney were seen. We additionally found that in the absence of Abcc2, Abcg2 mediated substantial urinary excretion of MTX and 7OH-MTX. Conclusions: Abcc2 and Abcg2 together are major determinants of MTX and 7OH-MTX pharmacokinetics. Variations in ABCC2 and/or ABCG2 activity due to polymorphisms or coadministered inhibitors may therefore substantially affect the therapeutic efficacy and toxicity in patients treated with MTX
机译:目的:ABCC2(MRP2)和ABCG2(BCRP)将各种内源性和外源性化合物(包括许多抗癌药)输送到胆汁,粪便和尿液中。我们研究了Abcg2和Abcc2在消除抗癌药甲氨蝶呤(MTX)及其有毒代谢产物7-羟基甲氧蝶呤(7OH-MTX)中可能重叠的作用。实验设计:我们生成并表征了Abcc2; Abcg2(-/-)小鼠,并用它们来确定Abcc2和Abcg2在静脉内消除MTX和7OH-MTX时的重叠作用。服用50 mg / kg MTX。结果:与野生型相比,Abcg2(-/-)和Abcc2(-/-)小鼠的MTX曲线下血浆面积(AUC)分别高1.6倍和2.0倍,而3.3倍在Abcc2; Abcg2(-/-)小鼠中增加。在Abcc2; Abcg2(-/-)小鼠中,MTX的胆汁排泄减少了23倍,并且小肠中的MTX水平显着降低。在Abcg2(-/-)-小鼠中血浆7OH-MTX水平没有显着改变,但曲线下面积在Abcc2(-/-)和Abcc2; Abcg2(-/-)中增加了6.2倍,甚至增加了12.4倍。 )的老鼠。这表明Abcc2可以弥补Abcg2的不足,但是Abcg2只能部分弥补Abcc2的缺失。此外,观察到Abcc2; Abcg2(-/-)小鼠胆汁7OH-MTX排泄减少21倍,并且肝脏和肾脏中大量7OH-MTX积累。我们还发现,在不存在Abcc2的情况下,Abcg2介导了MTX和7OH-MTX的大量尿排泄。结论:Abcc2和Abcg2一起是MTX和7OH-MTX药代动力学的主要决定因素。因此,由于多态性或共同施用的抑制剂,ABCC2和/或ABCG2活性的变化可能会大大影响MTX治疗患者的治疗效果和毒性

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