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Sensitive DNA-Based Electrochemical Strategy for Trace Bleomycin Detection

机译:基于敏感DNA的电化学检测微量博来霉素的策略

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Bleomycins (BLMs) are widely used in combination with chemotherapy for the treatment of a variety of cancers. The clinical application of BLMs is featured by the occurrence of sometimes fatal side effects, such as renal and lung toxicity, and the potential dose-limiting side effect of pulmonary fibrosis. Therefore, it is highly desirable to develop a sensitive method to quantitatively determine the BLM content in both pharmaceutical analysis and clinical samples, to make full use of therapeutic efficacy and to weaken its toxicity. Here, we proposed a simple, rapid, and convenient electrochemical assay for trace BLM detection. A reported DNA motif, as substrate for BLMs, is prepared to self-assemble onto the gold electrode to fabricate an electrochemical DNA (E-DNA) sensor, with a terminus tethered on the electrode surface and the other terminus labeled with ferrocenyl moiety as a signal reporter to form a stem-loop structure, giving an arise of remarkable faradaic current. In the presence of Fe(II)(centre dot)BLM, the E-DNA sensor undergoes the irreversible cleavage event, which can be transduced into a significant decrease in current peak. This proposed sensor reveals an impressive sensitivity as low as 100 pM BLMs and exhibits a good performance as well as in serum sample. Considering the high sensitivity and specificity of this proposed sensor, as well as the cost-effective and simple-to-implement features of the electrochemical technique, we believe that this method shows distinct advantages over conventional methods and it is a promising alternative for the determination of trace amounts of BLMs in clinical samples.
机译:博来霉素(BLM)广泛与化学疗法结合用于治疗多种癌症。 BLM的临床应用的特点是有时会出现致命的副作用,例如肾脏和肺部毒性,以及肺纤维化的潜在剂量限制性副作用。因此,非常需要开发一种灵敏的方法来定量测定药物分析和临床样品中的BLM含量,以充分利用治疗功效并减弱其毒性。在这里,我们提出了一种用于痕量BLM检测的简单,快速,方便的电化学检测方法。据报道,作为BLM底物的DNA基序准备自组装到金电极上,以制造电化学DNA(E-DNA)传感器,其中一个末端拴在电极表面,另一个末端标记为二茂铁基信号报告器形成茎环结构,产生显着的法拉第电流。在存在Fe(II)(中心点)BLM的情况下,E-DN​​A传感器会发生不可逆的裂解事件,这可以转导为电流峰的显着下降。拟议中的传感器显示出低至100 pM BLM的出色灵敏度,并在血清样品中表现出良好的性能。考虑到该传感器的高灵敏度和特异性,以及电化学技术的经济高效和易于实现的特点,我们认为该方法相对于传统方法显示出明显的优势,并且是一种有前途的测定方法临床样品中痕量的BLM。

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