Electroanalytical Lab, Department of Chemistry, Koneru Lakshmaiah Education Foundation, Vaddeswaram, Guntur 522302, Andhra Pradesh, India; Chemsens Technologies PVT. LTD., Vijayawada 520013, Andhra Pradesh, India.
Electroanalytical Lab, Department of Chemistry, Koneru Lakshmaiah Education Foundation, Vaddeswaram, Guntur 522302, Andhra Pradesh, India.
Int J Biol Macromol. 2023 Jun 1;239:124269. doi: 10.1016/j.ijbiomac.2023.124269. Epub 2023 Mar 31.
In this paper, a new kind of ultrasensitive and low-cost electrochemical immunosensing probe was designed to monitor vitamin D deficiency using 25(OH)D as a clinical biomarker. Ferrocene carbaldehyde conjugated on Ab-25(OH)D antibodies was used as an electrochemical probe for generating signals. The graphene nanoribbon-modified electrode (GNRs) was used to immobilize the (Ab-25(OH)D-Fc) conjugate. The high electron transferability, greater surface area, and effective biocompatibility of GNRs enabled the capture of the greater number of primary antibodies (Ab-25(OH)D). The developed probe was structurally and morphologically characterized. The step-wise modification was investigated by electrochemical techniques. The direct electrochemistry of ferrocene enabled 25(OH)D biomarker detection with excellent sensitivity. The reduction in peak current was proportional to the concentrations of 25(OH)D in the range of 1-100 ng mL with a 0.1 ng mL limit of detection. The probe was tested in terms of reproducibility, repeatability, and stability. Finally, the developed immunosensing probe was applied in serum samples for 25(OH)D quantification, and no significant difference was noticed in the assay results when compared with the standard chemiluminescent immunoassay (CLIA) method. The developed detection strategy has a wider scope for future potential clinical diagnostics applications.
本文设计了一种新型的超灵敏、低成本电化学免疫传感探针,以维生素 D 缺乏症作为临床生物标志物进行监测。将结合在 Ab-25(OH)D 抗体上的二茂铁甲醛用作电化学探针来产生信号。还原氧化石墨烯纳米带修饰电极(GNRs)用于固定(Ab-25(OH)D-Fc)缀合物。GNRs 的高电子转移能力、更大的表面积和有效的生物相容性使更多的一级抗体(Ab-25(OH)D)得以捕获。对所开发的探针进行了结构和形态学表征。通过电化学技术研究了逐步修饰过程。二茂铁的直接电化学能够实现 25(OH)D 生物标志物的高灵敏度检测。随着 25(OH)D 浓度在 1-100ng/mL 范围内的增加,峰值电流呈比例下降,检测限为 0.1ng/mL。对探针的重现性、重复性和稳定性进行了测试。最后,将开发的免疫传感探针应用于血清样本中 25(OH)D 的定量分析,与标准化学发光免疫分析(CLIA)方法相比,检测结果无明显差异。该开发的检测策略具有更广泛的未来临床诊断应用潜力。