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Integrated microfluidic device for the separation and electrochemical detection of catechol estrogen-derived DNA adducts

机译:集成微流控装置,用于分离和电化学检测邻苯二酚雌激素衍生的DNA加合物

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摘要

Catechol estrogen-derived DNA adducts are formed as a result of the reaction of catechol estrogen metabolites (e.g., catechol estrogen quinones) with DNA to form depurinating adducts. Developing a new methodology for the detection of various DNA adducts is essential for medical diagnostics, and to this end, we demonstrate the applicability of on-chip capillary electrophoresis with an integrated electrochemical system for the separation and amperometric detection of various catechol estrogen-derived DNA adducts. A hybrid PDMS/glass microchip with in-channel amperometric detection interfaced with in situ palladium decoupler is utilized and presented. The influence of buffer additives along with the effect of the separation voltage on the resolving power of the microchip is discussed. Calibration plots were constructed in the range 0.4–10 μM with r 2 ≥ 0.999, and detection limits in the attomole range are reported. These results suggest that on-chip analysis is applicable for analyzing various DNA adducts as potential biomarkers for future medical diagnostics.
机译:儿茶酚雌激素代谢产物(例如,儿茶酚雌激素醌)与DNA反应形成脱嘌呤加合物而形成儿茶酚雌激素衍生的DNA加合物。开发用于检测各种DNA加合物的新方法对于医学诊断至关重要,为此,我们证明了片上毛细管电泳与集成电化学系统的分离性和安培检测各种儿茶酚雌激素衍生DNA的适用性加合物。并提出了一种混合的PDMS /玻璃微芯片,该芯片具有与原位钯解耦器接口的通道内安培检测。讨论了缓冲添加剂的影响以及分离电压对微芯片分辨能力的影响。校正图在0.4–10μM范围内构建,r 2 ≥0.999,并报告了在阿托姆范围内的检出限。这些结果表明,芯片上分析可用于分析各种DNA加合物,作为未来医学诊断的潜在生物标记。

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