Zhongda Hospital, Medical School, Southeast University, Nanjing, China.
Biosens Bioelectron. 2011 Mar 15;26(7):3361-6. doi: 10.1016/j.bios.2011.01.020. Epub 2011 Jan 22.
The multidrug resistance (MDR) in cancer is a major chemotherapy obstacle, rendering many currently available chemotherapeutic drugs ineffective. The aim of this study was to explore the new strategy to early diagnose the MDR by electrochemical sensor based on carbon nanotubes-drug supramolecular interaction. The carbon nanotubes modified glassy carbon electrodes (CNTs/GCE) were directly immersed into the cells suspension of the sensitive leukemia cells K562 and/or its MDR cells K562/A02 to detect the response of the electrochemical probe of daunorubicin (DNR) residues after incubated with cells for 1h. The fresh evidence from the electrochemical studies based on CNTs/GCE demonstrated that the homogeneous, label-free strategy could directly measure the function of cell membrane transporters in MDR cancer cells, identify the cell phenotype (sensitive or MDR). When the different ratios of the sensitive leukemia cells K562 and its MDR ones K562/A02 were applied as a model of MDR levels to simulate the MDR occurrence in cancer, the cathodic peak current showed good linear response to the fraction of MDR with a correlation coefficient of 0.995. Therefore, the MDR fraction can be easily predicted based on the calibration curve of the cathodic peak current versus the fraction of MDR. These results indicated that the sensing strategy could provide a powerful tool for assessment of MDR in cancer. The new electrochemical sensor based on carbon nanotubes-drug supramolecular nanocomposites could represent promising approach in the rapid diagnosis of MDR in cancer.
癌症的多药耐药性(MDR)是化疗的主要障碍,使许多现有的化疗药物无效。本研究旨在探索基于碳纳米管-药物超分子相互作用的电化学传感器早期诊断 MDR 的新策略。将修饰的玻碳电极(CNTs/GCE)直接浸入敏感白血病细胞 K562 和/或其 MDR 细胞 K562/A02 的细胞悬浮液中,以检测电化学探针柔红霉素(DNR)残留与细胞孵育 1 小时后的响应。基于 CNTs/GCE 的电化学研究的新证据表明,同质、无标记策略可以直接测量 MDR 癌细胞中细胞膜转运蛋白的功能,识别细胞表型(敏感或 MDR)。当将不同比例的敏感白血病细胞 K562 和其 MDR 细胞 K562/A02 用作 MDR 水平的模型以模拟癌症中 MDR 的发生时,阴极峰电流对 MDR 的分数表现出良好的线性响应,相关系数为 0.995。因此,根据阴极峰电流与 MDR 分数的校准曲线,可以轻松预测 MDR 分数。这些结果表明,该传感策略可为癌症 MDR 的评估提供有力工具。基于碳纳米管-药物超分子纳米复合材料的新型电化学传感器可能代表癌症 MDR 快速诊断的有前途的方法。