Institute of Animal Reproduction and Food Research Polish Academy of Sciences, Tuwima 10, 10-748 Olsztyn, Poland.
Department of Chemistry, University of Warmia and Mazury, Plac Łódzki 4, 10-721 Olsztyn, Poland.
Biosensors (Basel). 2024 Feb 16;14(2):101. doi: 10.3390/bios14020101.
Here, we present the results of our the electrochemical aptasensing strategy for retinol binding protein-4 (RBP-4) detection based on a thiolated aptamer against RBP-4 and 6-mercaptohexanol (MCH) directly immobilized on a gold electrode surface. The most important parameters affecting the magnitude of the analytical signal generated were optimized: (i) the presence of magnesium ions in the immobilization and measurement buffer, (ii) the concentration of aptamer in the immobilization solution and (iii) its folding procedure. In this work, a systematic assessment of the electrochemical parameters related to the optimization of the sensing layer of the aptasensor was carried out (electron transfer coefficients electron transfer rate constants () and surface coverage of the thiolated aptamer probe ()). Then, under the optimized conditions, the analytical response towards RBP-4 protein, in the presence of an Fe(CN) redox couple in the supporting solution was assessed. The proposed electrochemical strategy allowed for RBP-4 detection in the concentration range between 100 and 1000 ng/mL with a limit of detection equal to 44 ng/mL based on electrochemical impedance spectroscopy (EIS). The specificity studies against other diabetes biomarkers, including vaspin and adiponectin, proved the selectivity of the proposed platform. These preliminary results will be used in the next step to miniaturize and test the sensor in real samples.
在这里,我们展示了基于针对 RBP-4 的硫醇化适配体和直接固定在金电极表面的 6-巯基己醇 (MCH) 的电化学适体传感策略检测视黄醇结合蛋白-4 (RBP-4) 的结果。优化了影响分析信号幅度的最重要参数:(i) 固定和测量缓冲液中镁离子的存在,(ii) 固定溶液中适配体的浓度和 (iii) 其折叠程序。在这项工作中,对与适体传感器传感层优化相关的电化学参数进行了系统评估(电子转移系数 (α)、电子转移速率常数 (ks) 和硫醇化适配体探针的表面覆盖率 (Γ))。然后,在优化条件下,在支持溶液中存在 Fe(CN) 氧化还原对的情况下,评估了该电化学策略对 RBP-4 蛋白的分析响应。所提出的电化学策略允许在 100 至 1000 ng/mL 的浓度范围内检测 RBP-4,基于电化学阻抗谱 (EIS) 的检测限等于 44 ng/mL。针对其他糖尿病生物标志物(包括 vaspin 和脂联素)的特异性研究证明了所提出平台的选择性。这些初步结果将在下一阶段用于小型化并在实际样品中测试传感器。