Department of Applied Chemistry, Delhi Technological University, Delhi 110042, India.
J Colloid Interface Sci. 2023 Dec 15;652(Pt A):549-556. doi: 10.1016/j.jcis.2023.08.099. Epub 2023 Aug 16.
This study proposes the fabrication of a highly sensitive electrochemical immunosensor for label-free detection of EpCAM antigen. MXenes, novel 2D materials have become popular owing to their unique electrochemical properties. Unlike conventional immunosensors, which are unable to detect the carcinoma at primary stage and also time consuming, the use of highly conducting MXene provides a label-free and highly sensitive immunosensor. Herein, we develop a unique immunosensor, which is based on the in-situ growth of 2D-TiO onto the novel 2D-TiCT sheets by hydrothermal treatment. The 2D/2D TiO/TiCT hybrid provides a platform having a large effective surface area, and more number of electrochemically active sites to enhance the electron transfer rate through the redox probe. The designed sensing platform, BSA/anti-EpCAM/TiO/TiCT@ITO shows a broad linear range (1 ag/mL to 10 ng/mL) with high sensitivity (6.661 µA ag mL cm), and low detection limit (0.7 ag/mL) for EpCAM antigen detection under optimized conditions. The proposed immunosensor possesses good reproducibility, long-term stability, and outstanding selectivity and specificity. Moreover, the clinical applicability of the novel immunosensor is tested in spiked human serum showing good recovery.
本研究提出了一种基于 MXenes 的高灵敏度无标记电化学免疫传感器,用于检测 EpCAM 抗原。二维材料 MXenes 由于其独特的电化学性质而受到广泛关注。与传统的免疫传感器不同,传统的免疫传感器无法检测早期的癌,而且耗时,高导电性的 MXenes 的使用提供了一种无标记和高灵敏度的免疫传感器。在此,我们通过水热处理开发了一种独特的基于原位生长二维 TiO2 的新型 2D-TiCT 片的免疫传感器。2D/2D TiO2/TiCT 杂化提供了一个具有大有效表面积和更多电化学活性位点的平台,通过氧化还原探针增强电子转移率。在优化条件下,设计的传感平台 BSA/抗-EpCAM/TiO2/TiCT@ITO 对 EpCAM 抗原表现出宽线性范围(1 ag/mL 至 10 ng/mL)、高灵敏度(6.661 µA ag mL cm)和低检测限(0.7 ag/mL)。该免疫传感器具有良好的重现性、长期稳定性以及出色的选择性和特异性。此外,新型免疫传感器在添加人血清中的临床适用性测试中显示出良好的回收率。