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首页> 外文期刊>Biochemical Pharmacology >Characterisation of multidrug-resistant Ehrlich ascites tumour cells selected in vivo for resistance to etoposide.
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Characterisation of multidrug-resistant Ehrlich ascites tumour cells selected in vivo for resistance to etoposide.

机译:体内选择的对依托泊苷具有耐药性的多药耐药性Ehrlich腹水肿瘤细胞的表征。

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摘要

An Ehrlich ascites tumour cell line (EHR2) was selected for resistance to etoposide (VP16) by in vivo exposure to this agent. The resulting cell line (EHR2/VP16) was 114.3-, 5.7-, and 4.0-fold resistant to VP16, daunorubicin, and vincristine, respectively. The amount of salt-extractable immunoreactive topoisomerase IIalpha and beta in EHR2/VP16 was reduced by 30-40% relative to that in EHR2. The multidrug resistance-associated protein (MRP) mRNA was increased 20-fold in EHR2/VP16 as compared with EHR2, whereas the expression of P-glycoprotein was unchanged. In EHR2/VP16, the steady-state accumulation of [(3)H]VP16 and daunorubicin was reduced by 64% and 17%, respectively, as compared with EHR2. Deprivation of energy by addition of sodium azide increased the accumulation of both drugs to the level of sensitive cells. When glycolysis was restored by the addition of glucose to EHR2/VP16 cells loaded with drug in the presence of sodium azide, extrusion of [(3)H]VP16 and daunorubicin was induced. Addition of verapamil (25 microM) decreased the efflux of daunorubicin to the level of sensitive cells, but had only a moderate effect on the efflux of [(3)H]VP16. The resistant cells showed moderate sensitisation to VP16 on treatment with verapamil, whereas cyclosporin A had no effect. Compared with that of sensitive cells, the ATPase activity of plasma membrane vesicles prepared from EHR2/VP16 cells was very low. Vanadate inhibited the ATPase activity of EHR2/VP16 microsomes with a K(i) value of 30 &mgr;M. ATPase activity was slightly stimulated by daunorubicin, whereas vinblastine, verapamil, and cyclosporin A had no effect. In conclusion, development of resistance to VP16 in EHR2 is accompanied by a significant reduction in topoisomerase II (alpha and beta) and by increased expression of MRP mRNA (20-fold). MRP displays several points of resemblance to P-glycoprotein in its mode of action: 1) like P-glycoprotein, MRP causes resistance to a range of hydrophobic drugs; 2) MRP decreases drug accumulation in the cells and this decrease is abolished by omission of energy; and 3) MRP increases efflux of drug from cells. However, compared with that of P-glycoprotein-positive cells, the ATPase activity of MRP-positive cells is found to be low and not able to be stimulated by verapamil.
机译:通过在体内暴露于该试剂来选择对依托泊苷(VP16)的耐药性的Ehrlich腹水肿瘤细胞系(EHR2)。所得细胞系(EHR2 / VP16)分别对VP16,柔红霉素和长春新碱具有114.3-,5.7-和4.0-倍的抗性。与EHR2中的盐相比,EHR2 / VP16中的盐可提取的免疫反应性拓扑异构酶IIalpha和beta的量减少了30-40%。与EHR2相比,EHR2 / VP16中的多药耐药相关蛋白(MRP)mRNA增加了20倍,而P-糖蛋白的表达未发生变化。在EHR2 / VP16中,与(EHR2)相比,[(3)H] VP16和柔红霉素的稳态积累分别减少了64%和17%。通过添加叠氮化钠来减少能量将两种药物的积累增加到敏感细胞的水平。当在叠氮化钠存在的情况下,通过向载有药物的EHR2 / VP16细胞中添加葡萄糖来恢复糖酵解时,会诱导[(3)H] VP16和柔红霉素的挤出。维拉帕米(25 microM)的添加将柔红霉素的流出量降低到敏感细胞的水平,但对[(3)H] VP16的流出仅具有中等作用。耐药细胞在维拉帕米治疗后对VP16表现出中度敏化作用,而环孢菌素A无作用。与敏感细胞相比,由EHR2 / VP16细胞制备的质膜囊泡的ATPase活性非常低。钒酸盐抑制EHR2 / VP16微粒体的ATPase活性,其K(i)值为30μM。柔红霉素可稍微刺激ATPase活性,而长春碱,维拉帕米和环孢菌素A则无作用。总之,在EHR2中对VP16的耐药性的发展伴随着拓扑异构酶II(α和β)的显着降低以及MRP mRNA表达的增加(20倍)。 MRP在其作用方式上显示出与P-糖蛋白相似的几个点:1)MRP与P-糖蛋白类似,对多种疏水性药物产生耐药性; 2)MRP减少了药物在细胞中的蓄积,这种减少由于能量的缺乏而被消除; 3)MRP可增加药物从细胞中流出。但是,与P-糖蛋白阳性细胞相比,MRP阳性细胞的ATP酶活性低,不能被维拉帕米刺激。

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