State Key Laboratory of Biogeology and Environmental Geology, Engineering Research Center of Nano-Geomaterials of Ministry of Education, Faculty of Materials Science and Chemistry, China University of Geosciences, Wuhan 430074, China.
ACS Appl Bio Mater. 2023 Apr 17;6(4):1586-1593. doi: 10.1021/acsabm.3c00001. Epub 2023 Mar 17.
Electrochemical aptamer-based (E-AB) sensors suffer from sensor-to-sensor signal variations due to the variation in the total number of probes immobilized on the sensor surface, the effective working area, and the heterogeneity properties of the electrode surface, thus requiring a calibration step prior to each measurement. This is impractical, if not possible, for some cases, e.g., in a complex matrix including blood samples. In response, we propose a calibration-free approach to achieve the measurement of biorelevant small-molecule and protein analytes. Specifically, we employed one reporter labeled onto an aptamer (e.g., methylene blue) for redox signaling, and the other reporter (e.g., ferrocene) was modified onto a self-assembly monolayer as a reference signal. By taking the ratio of the two signals, we achieved a much improved baseline stability and sensor-to-sensor reproducibility, which allows the calibration-free measurement of the analysis of the respective targets, including doxorubicin, vancomycin, and thrombin in both simple buffer and even directly complex samples including serum and whole blood.
电化学适体传感器(E-AB 传感器)由于固定在传感器表面的探针总数、有效工作面积以及电极表面的异质性等因素的变化,会导致传感器之间的信号发生变化,因此需要在每次测量前进行校准。对于某些情况,例如在包括血液样本在内的复杂基质中,这是不切实际的,甚至是不可能的。针对这一问题,我们提出了一种无需校准的方法来实现生物相关小分子和蛋白质分析物的测量。具体来说,我们使用一个标记在适体上的报告分子(例如亚甲基蓝)进行氧化还原信号的检测,而另一个报告分子(例如二茂铁)则被修饰在自组装单分子层上作为参考信号。通过取两个信号的比值,我们实现了更好的基线稳定性和传感器间的重现性,从而可以实现无需校准的分析物测量,包括在简单缓冲液以及甚至包括血清和全血在内的复杂样品中对阿霉素、万古霉素和凝血酶的分析。