Bai Linru, Chen Benqi, Xu Yan, Liu Mingjia, Yang Yunhui, Yang Jianmei, Hu Rong
Yunnan Key Laboratory of Modern Separation Analysis and Substance Transformation, College of Chemistry and Chemical Engineering, Yunnan Normal University, Kunming, Yunnan, 650092, PR China.
Mikrochim Acta. 2025 Sep 12;192(10):661. doi: 10.1007/s00604-025-07322-7.
Au NPs@FGO@Fe MOG were sythesized for its inaugural application in biosensor development and engineered as a novel, highly efficient electrochemical aptasensor for the precise detection of interleukin-6 (IL-6). The aptasensor architecture integrates Au NPs@FGO@Fe MOG as the electrode interface and an anemone-like PtNi nanoclusters@MIL-anchored three-dimensional DNA (PD) network as the signal transduction matrix. The as-prepared Au NPs@FGO@Fe MOG exhibited an exceptionally high specific surface area, excellent electrical conductivity, and robust structural stability, collectively contributing to a pronounced enhancement in the performance of an electrochemical biosensor. The hierarchically PD network provided abundant binding sites for the redox-active probe thionine (Thi), thereby amplifying the electrochemical signal with remarkable efficiency. Under optimized conditions, the aptasensor achieved an impressive detection limit of 0.89 pg/mL. Moreover, the platform demonstrated reliable performance in detecting IL-6 in unspiked human serum samples, with results exhibiting high concordance with those obtained from commercial enzyme-linked immunosorbent assay (ELISA) kits. These findings demonstrate the considerable potential of this platform for rapid, sensitive, and accurate cytokine quantification, offering valuable prospects for clinical diagnostic applications.
合成了金纳米粒子@铁掺杂氧化石墨烯@铁基金属有机凝胶(Au NPs@FGO@Fe MOG),并将其首次应用于生物传感器开发,设计成为一种用于精确检测白细胞介素-6(IL-6)的新型高效电化学适体传感器。该适体传感器结构将Au NPs@FGO@Fe MOG作为电极界面,将海葵状铂镍纳米簇@金属有机框架锚定的三维DNA(PD)网络作为信号转导基质。所制备的Au NPs@FGO@Fe MOG表现出极高的比表面积、优异的导电性和强大的结构稳定性,共同显著提高了电化学生物传感器的性能。分层的PD网络为氧化还原活性探针硫堇(Thi)提供了丰富的结合位点,从而高效地放大了电化学信号。在优化条件下,该适体传感器实现了0.89 pg/mL的令人印象深刻的检测限。此外,该平台在检测未添加IL-6的人血清样品中的IL-6时表现出可靠的性能,结果与商业酶联免疫吸附测定(ELISA)试剂盒获得的结果高度一致。这些发现证明了该平台在快速、灵敏和准确的细胞因子定量方面具有巨大潜力,为临床诊断应用提供了有价值的前景。