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评估乙醇对叶酸类似物(荧光素甲氨蝶呤)在人近端肾小管细胞摄取作用的方法。

Methods to evaluate the effect of ethanol on the folate analogue: fluorescein methotrexate uptake in human proximal tubular cells.

作者信息

Gowder Sivakumar Jt, McMartin Kenneth E

机构信息

Department of Pharmacology, LSU Health Sciences Center, Shreveport, LA 71118, USA.

出版信息

Adv Pharmacol Sci. 2009;2009:291349. doi: 10.1155/2009/291349. Epub 2009 Sep 29.

Abstract

Ethanol-induced folate deficiency is due to effects of ethanol on folate metabolism and absorption. We have already shown by using different methods that ethanol interferes with reabsorption of folate from the proximal tubule. In this study, we have used the folate analogue, the fluorescein methotrexate (FL-MTX), in order to evaluate effects of ethanol on FL-MTX uptake by the human proximal tubular (HPT) cells by using a confocal microscope and fluoroskan microplate reader. Since endothelins (ETs) play a major role in a number of diseases and also in the damage induced by a variety of chemicals, we have used endothelin-B (ET-B) and protein kinase-C (PKC) inhibitors to evaluate the role of endothelin in ethanol-mediated FL-MTX uptake by using fluoroskan microplate reader. Confocal microscope and fluoroskan studies reveal that cellular absorption of FL-MTX is concentration-dependent. Moreover, ethanol concentration has an impact on FL-MTX uptake. Fluoroskan studies reveal that the ethanol-induced decrease in FL-MTX uptake is reversed by adding the ET-B receptor antagonist (RES-701-1) or PKC-selective inhibitor (BIM). Thus, we can conclude that ethanol may act via ET and ET in turn may act via ET-B receptor and the PKC signaling pathway to impair FL-MTX transport.

摘要

乙醇诱导的叶酸缺乏是由于乙醇对叶酸代谢和吸收的影响。我们已经通过不同方法表明,乙醇会干扰近端小管对叶酸的重吸收。在本研究中,我们使用了叶酸类似物荧光素甲氨蝶呤(FL-MTX),通过共聚焦显微镜和荧光扫描微孔板读数器来评估乙醇对人近端肾小管(HPT)细胞摄取FL-MTX的影响。由于内皮素(ETs)在多种疾病以及由多种化学物质诱导的损伤中起主要作用,我们使用内皮素B(ET-B)和蛋白激酶C(PKC)抑制剂,通过荧光扫描微孔板读数器来评估内皮素在乙醇介导的FL-MTX摄取中的作用。共聚焦显微镜和荧光扫描研究表明,FL-MTX的细胞吸收是浓度依赖性的。此外,乙醇浓度对FL-MTX摄取有影响。荧光扫描研究表明,添加ET-B受体拮抗剂(RES-701-1)或PKC选择性抑制剂(BIM)可逆转乙醇诱导的FL-MTX摄取减少。因此,我们可以得出结论,乙醇可能通过ET起作用,而ET反过来可能通过ET-B受体和PKC信号通路起作用,从而损害FL-MTX的转运。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c55b/2990105/ffd003ecb5cf/APS2009-291349.001.jpg

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