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使用新型蒽环类衍生物 DRAQ7®进行实时细胞活力分析。

Real-time cell viability assays using a new anthracycline derivative DRAQ7®.

机构信息

The BioMEMS Research Group, School of Chemical Sciences, University of Auckland, Auckland, New Zealand.

出版信息

Cytometry A. 2013 Feb;83(2):227-34. doi: 10.1002/cyto.a.22228. Epub 2012 Nov 16.

Abstract

The exclusion of charged fluorescent dyes by intact cells has become a well-established assay for determining viability of cells. In search for a noninvasive fluorescent probe capable of long-term monitoring of cell death in real-time, we evaluated a new anthracycline derivative DRAQ7. The novel probe does not penetrate the plasma membrane of living cells but when the membrane integrity is compromised, it enters and binds readily to nuclear DNA to report cell death. It proved to be nontoxic to a panel of cancer cell lines grown continuously for up to 72 h and did not induce any detectable DNA damage signaling when analyzed using laser scanning microscopy and flow cytometry. The DRAQ7 provided a sensitive, real-time readout of cell death induced by a variety of stressors such as hypoxia, starvation, and drug-induced cytotoxicity. The overall responses to anticancer agents and resulting pharmacological dose-response profiles were not affected by the growth of tumor cells in the presence DRAQ7. Moreover, we for the first time introduced a near real-time microflow cytometric assay based on combination of DRAQ7 and mitochondrial inner membrane potential (ΔΨ(m) ) sensitive probe TMRM. We provide evidence that this low-dosage, real-time labeling procedure provides multiparameter and kinetic fingerprint of anticancer drug action.

摘要

完整细胞对带电荷荧光染料的排斥已成为确定细胞活力的一种成熟检测方法。为了寻找一种能够实时长期监测细胞死亡的非侵入性荧光探针,我们评估了一种新的蒽环类衍生物 DRAQ7。该新型探针不能穿透活细胞的质膜,但当质膜完整性受到破坏时,它会进入并轻易地与核 DNA 结合,从而报告细胞死亡。研究表明,该探针对一系列癌细胞系连续培养长达 72 小时是无毒的,并且在用激光扫描显微镜和流式细胞术分析时,不会诱导任何可检测的 DNA 损伤信号。DRAQ7 可灵敏、实时地检测各种应激诱导的细胞死亡,如缺氧、饥饿和药物诱导的细胞毒性。在 DRAQ7 存在的情况下,肿瘤细胞的生长并不影响抗癌药物的总体反应及其产生的药理剂量反应曲线。此外,我们首次引入了一种基于 DRAQ7 和线粒体膜电位(ΔΨ(m))敏感探针 TMRM 的近实时微流式细胞术测定法。我们提供的证据表明,这种低剂量、实时标记程序提供了抗癌药物作用的多参数和动力学特征。

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