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杂环化合物对小鼠淋巴瘤细胞多药耐药性的逆转作用

Multidrug resistance reversal in mouse lymphoma cells by heterocyclic compounds.

作者信息

Molnár J, Szabo D, Mándi Y, Mucsi I, Fischer J, Varga A, König S, Motohashi N

机构信息

Department of Microbiology, Albert Szent-Györgyi Medical University, Szeged, Hungary.

出版信息

Anticancer Res. 1998 Jul-Aug;18(4C):3033-8.

PMID:9713505
Abstract

Due to the close homology between bacterial and tumor cell transporter proteins, some antiplasmid and anticancer compounds were tested for their ability to reserve the multidrug resistance (mdr) of lymphoma cells. Some known anticancer medicines such as platidiam, novantron, fluorouracil, bleomycin and methotrexate were ineffective/while vinca alkaloids exerted a strong reversal effect on the mdr of lymphoma cells. The structurally related reserpine and yohimbine do not affect the activity of efflux pump. Some selected antitumor phenothiazines and benzo[a]phenothiazines, including trifluoperazine inhibit the P-glycoprotein (pgp) function. This fact is independent from the antiproliferative- or differentiation inducing effects. Since the polylactosamine specific tomato lectin prevents the action of the chemosensitizers tested, it is supposed that the site of action of phenothiazines can be at the 1st loop in the transmembrane glycoprotein. The efflux pump activity of the pgp in brain capillary endothel which is responsible for blood brain barrier (BBB) was also inhibited by some phenothiazines. However, the tomato lectin sensitivity of pgp was different in mouse lymphoma and human brain capillary endothelial cells. The mdr-gene expression of the mouse lymphoma cells (which were transfected with the human mdr-1 gene) could be reduced by phenothiazines such as promethazine and trifluoperazine, when the cells were cultured in the presence of 0.5 microgram/mL phenothiazines. Further synergism was found between two resistance modifiers i.e. verapamil and trifluoperazine on the inhibition of mdr-glycoprotein.

摘要

由于细菌和肿瘤细胞转运蛋白之间存在密切的同源性,一些抗质粒和抗癌化合物被测试其逆转淋巴瘤细胞多药耐药性(mdr)的能力。一些已知的抗癌药物如顺铂、诺维本、氟尿嘧啶、博来霉素和甲氨蝶呤无效,而长春花生物碱对淋巴瘤细胞的mdr具有强烈的逆转作用。结构相关的利血平和育亨宾不影响外排泵的活性。一些选定的抗肿瘤吩噻嗪类和苯并[a]吩噻嗪类,包括三氟拉嗪,可抑制P-糖蛋白(pgp)的功能。这一事实与抗增殖或诱导分化的作用无关。由于聚乳糖胺特异性番茄凝集素可阻止所测试的化学增敏剂的作用,因此推测吩噻嗪类的作用位点可能在跨膜糖蛋白的第一个环处。一些吩噻嗪类也可抑制负责血脑屏障(BBB)的脑毛细血管内皮细胞中pgp的外排泵活性。然而,pgp对番茄凝集素的敏感性在小鼠淋巴瘤细胞和人脑毛细血管内皮细胞中有所不同。当在0.5微克/毫升吩噻嗪类存在的情况下培养细胞时,吩噻嗪类如异丙嗪和三氟拉嗪可降低小鼠淋巴瘤细胞(转染了人mdr-1基因)的mdr基因表达。在两种耐药调节剂即维拉帕米和三氟拉嗪之间发现了对mdr糖蛋白抑制的进一步协同作用。

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