Flow cytometric evaluation of fas expression in relation to response and resistance to anthracyclines in leukemic cells.

Cytometry Pub Date : 2000-03-01
G Labroille, P Dumain, F Lacombe, F Belloc
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引用次数: 0

Abstract

Background: Cell chemosensitivity to cytotoxic drugs has been attributed to their ability to trigger apoptosis. The emergence of resistance in drug-exposed cells is often characterized by the appearance of drug efflux mechanisms including P-gp transport. Nevertheless, mdr1 expression may coexist with other resistance features, in particular those interfering with apoptotic signaling pathways.

Methods: Leukemic cell lines cultured in a progressively toxic environment were analyzed for Fas and P-gp expression by immunostaining and flow cytometry. Their mdr1 mRNA expression level was determined by reverse transcriptase-polymerase chain reaction (RT-PCR), and their apoptotic response was microscopically evaluated. Activation of the Fas pathway was obtained by cross-linking the Fas receptor with the 7C11 anti-Fas agonist.

Results: We demonstrate a dose-dependent Fas overexpression after short-term (18 h) incubation with daunorubicin. The subsequent sensitization to Fas activators led to a significant increase in the apoptotic response induced by 7C11. After long-term exposure to daunorubicin and acquisition of drug resistance, expression of P-gp was accompanied by a decrease in the number of Fas sites at the cell surface with a correlated desensitization to Fas-induced apoptosis. Additional alterations in the Fas signaling pathway can also be hypothesized in the most resistant Jurkat cell line.

Conclusions: The induction of Fas expression could be one of the mechanisms of action of chemotoxic drugs and thus might enhance the cell susceptibility to Fas-mediated apoptosis. On the contrary, the emergence of the multidrug resistance phenotype is associated with a down-regulation of Fas expression and possible defects in the Fas signaling pathway.

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流式细胞术评价fas表达与白血病细胞对蒽环类药物的反应和耐药性的关系。
背景:细胞对细胞毒性药物的化学敏感性归因于它们触发细胞凋亡的能力。在药物暴露的细胞中,耐药性的出现通常以药物外排机制的出现为特征,包括P-gp转运。然而,mdr1的表达可能与其他耐药特征共存,特别是那些干扰凋亡信号通路的耐药特征。方法:采用免疫染色法和流式细胞术分析渐进性毒性培养的白血病细胞株Fas和P-gp的表达。采用逆转录聚合酶链反应(RT-PCR)检测各组细胞mdr1 mRNA表达水平,并在显微镜下观察凋亡反应。Fas途径的激活是通过将Fas受体与7C11抗Fas激动剂交联获得的。结果:我们在柔红霉素短期(18小时)孵育后证明了Fas的剂量依赖性过表达。随后对Fas激活剂的致敏导致7C11诱导的凋亡反应显著增加。在长期暴露于柔红霉素并获得耐药性后,P-gp的表达伴随着细胞表面Fas位点数量的减少,并与Fas诱导的细胞凋亡脱敏相关。在最耐药的Jurkat细胞系中也可以假设Fas信号通路的其他改变。结论:诱导Fas表达可能是化学毒性药物的作用机制之一,从而增强细胞对Fas介导的凋亡的易感性。相反,多药耐药表型的出现与Fas表达下调以及Fas信号通路可能存在缺陷有关。
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