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首页> 外文期刊>The Journal of Veterinary Medical Science >Effect of PCB-126 on Intracellular Accumulation and Transepithelial Transport of Vinblastine in LLC-PK1 and Its Transformant Cells Expressing Human P-Glycoprotein
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Effect of PCB-126 on Intracellular Accumulation and Transepithelial Transport of Vinblastine in LLC-PK1 and Its Transformant Cells Expressing Human P-Glycoprotein

机译:PCB-126对长春碱在LLC-PK1及其表达人P-糖蛋白的转化细胞中的细胞内积累和跨上皮运输的影响

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References(31) Cited-By(2) The effects of 3, 3', 4, 4', 5-pentachlorobiphenyl (PCB-126), which is the most toxic congener of coplanar polychlorinated biphenyls (Co-PCBs), on intracellular accumulation and transepithelial transport of vinblastine were examined in porcine kidney cells, LLC-PK1, and its transformant cells expressing human P-glycoprotein (LLC-MDR1). The accumulation decreased less than one-tenth in LLC-MDR1 compared to LLC-PK1. In both cells, the accumulation increased with the addition of PCB-126 and cyclosporine A (CYA), which are P-glycoprotein modulators, though the magnitudes were different in these two cell groups as well as for these two chemicals. Thus, PCB-126 might inhibit extrusion of vinblastine through the drug extrusion system as does CYA. In both the cells, there might be an endogenous drug extrusion system other than P-glycoprotein that was inhibited by CYA or PCB-126. The net basal-to-apical transepithelial transport of vinblastine increased 1.7-fold more in LLC-MDR1 than in LLC-PK1. By adding PCB-126 on the apical side, the transport was greatly decreased by -76% in the monolayer of both cells. By adding PCB-126 and CYA on the basal side in LLC-MDR1 monolayer, the transports increased -1.7-fold, so that PCB-126 might inhibit the extrusion of vinblastine on both the apical and basal sides. One of the causes to be considered for the adverse effects of Co-PCBs, in addition to the binding with an aryl hydrocarbon receptor, might be the modification of drug transport by its interaction with the drug transport system.
机译:参考文献(31)(2)3、3',4、4',5-五氯联苯(PCB-126)(共平面多氯联苯(Co-PCBs)的毒性最高)对细胞内的影响在猪肾细胞LLC-PK1及其表达人P-糖蛋白(LLC-MDR1)的转化细胞中检查了长春碱的积累和上皮运输。与LLC-PK1相比,LLC-MDR1中的累积减少少于十分之一。在这两个细胞中,尽管增加了PCB-126和环孢菌素A(CYA)(它们是P-糖蛋白调节剂)的蓄积量,但在这两个细胞组以及这两种化学物质的量级上均不同。因此,PCB-126可能像CYA一样抑制长春碱通过药物挤出系统挤出。在这两个细胞中,可能存在一个内源性药物挤出系统,但P-糖蛋白除外,该系统被CYA或PCB-126抑制。长春碱的净基底到顶端经上皮的净转运在LLC-MDR1中比在LLC-PK1中增加了1.7倍。通过在顶端添加PCB-126,两个细胞的单层转运大大降低了-76%。通过在LLC-MDR1单层的基底侧添加PCB-126和CYA,转运增加-1.7倍,因此PCB-126可能会抑制长春碱在顶侧和基底侧的挤出。除与芳基烃受体结合外,Co-PCBs的不良影响要考虑的原因之一可能是通过与药物转运系统的相互作用来改变药物转运。

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