Irimes Maria-Bianca, Pusta Alexandra, Tertis Mihaela, Tabirta Andreea, Achim Eduard, Suciu Maria, Leostean Cristian, Pana Ovidiu, Oprean Radu Nicolaie, Cristea Cecilia
Analytical Chemistry Department, Faculty of Pharmacy, Iuliu Haţieganu University of Medicine and Pharmacy, 4 Louis Pasteur St., 400349 Cluj-Napoca, Romania.
Medical Devices Department, Faculty of Pharmacy, Iuliu Haţieganu University of Medicine and Pharmacy, 4 Louis Pasteur St., 400349 Cluj-Napoca, Romania.
ACS Sens. 2025 Jul 25;10(7):4841-4849. doi: 10.1021/acssensors.4c03105. Epub 2025 Jul 1.
Cortisol is a key endogenous hormone involved in physiological and pathological processes, its levels fluctuating in biological fluids due to numerous factors, including inflammatory disorders. Therefore, the accurate and selective detection of cortisol is essential for both diagnosing these conditions and evaluating treatment efficiency. Electrochemical methods offer significant advantages for biomarker analysis in biological samples due to their low cost, high sensitivity and specificity, potential for miniaturization, and capability for in situ analysis. The goal of this study was to design a customized platform for the specific electrochemical detection of cortisol in biological samples, with potential applications in portable biomedical devices. Flexible, customized carbon electrodes were fabricated, and the surface of the working electrodes was modified using Au and Pt, to enhance sensitivity, and an aptamer to increase specificity for cortisol detection. All the modification steps were validated using cyclic voltammetry, electrochemical impedance spectroscopy, and X-ray photoelectron spectroscopy. Cortisol detection was performed via cyclic voltammetry, and the platforms were assessed for their analytical performance, including the limit of detection, limit of quantification, and sensitivity. The aptasensor was able to determine the analyte on a linear domain between 0.5 and 100 nM, with a limit of detection of 0.1 nM. Additionally, the aptasensors were applied for the analysis of saliva and sweat samples collected from patients and healthy subjects as control. This aptasensor enables the specific detection of cortisol and has the potential to be further developed for point-of-care medical applications.
皮质醇是一种参与生理和病理过程的关键内源性激素,由于包括炎症性疾病在内的多种因素,其在生物体液中的水平会发生波动。因此,准确、选择性地检测皮质醇对于诊断这些疾病和评估治疗效果至关重要。电化学方法因其成本低、灵敏度和特异性高、具有小型化潜力以及能够进行原位分析等优点,在生物样品的生物标志物分析中具有显著优势。本研究的目的是设计一个定制平台,用于生物样品中皮质醇的特异性电化学检测,并在便携式生物医学设备中具有潜在应用。制备了柔性定制碳电极,并使用金和铂对工作电极表面进行修饰以提高灵敏度,还使用适配体来提高皮质醇检测的特异性。所有修饰步骤均通过循环伏安法、电化学阻抗谱和X射线光电子能谱进行了验证。通过循环伏安法进行皮质醇检测,并评估了平台的分析性能,包括检测限、定量限和灵敏度。该适配体传感器能够在0.5至100 nM的线性范围内测定分析物,检测限为0.1 nM。此外,将适配体传感器应用于分析从患者和健康受试者收集的唾液和汗液样本作为对照。这种适配体传感器能够特异性检测皮质醇,具有进一步开发用于即时医疗应用的潜力。