Chemical Analysis and Biosensors Research Group, Laboratory of Process Engineering & Environment, Faculty of Sciences and Techniques, Hassan II University of Casablanca, P.A. 146, Mohammedia 28806, Morocco.
Biosensors (Basel). 2023 Jan 1;13(1):74. doi: 10.3390/bios13010074.
Irregular expression of MicroRNA-21 (miRNA-21) is considered as a promising biomarker for early cancer diagnosis. In this paper, a new genosensor based on paper and nanozyme activity of cysteamine-capped gold nanoparticles (Cys/AuNPs) was developed to detect picomolar concentrations of miRNA-21. Such nanozyme catalyzes the colorimetric reaction of hydrogen peroxide (HO) and 3,3',5,5' tetramethylbenzidine (TMB), to produce a blue color measurable by a smartphone. Due to their positive charge, Cys/AuNPs were attached to the negative phosphate groups of the DNA strand backbone via electrostatic interactions, leading to the quantitative determination of miRNA-21 concentration by the peroxidase-like activity of Cys/AuNPs. Furthermore, a paper-based assay was carried out on nylon disk devices to allow fast immobilization of DNA. After performing the paper-based assay, a good linear range was observed between 1 pM and 1 nM (Y = 0.080 [MiRNA-21]/pM + 13.846, R = 0.993) with a detection limit of 0.5 pM. The developed method was effective, selective, and sensitive for the miRNA-21 detection. The application of the proposed method for miRNA-21 detection was examined in a human serum sample, and a recovery rate of 90.0-97.6% was obtained showing the acceptable accuracy of the developed approach.
微 RNA-21(miRNA-21)的异常表达被认为是癌症早期诊断有前途的生物标志物。在本文中,开发了一种基于纸张和半胱氨酸封端金纳米粒子(Cys/AuNPs)的纳米酶活性的新型基因传感器,用于检测皮摩尔浓度的 miRNA-21。这种纳米酶催化过氧化物酶和 3,3',5,5'-四甲基联苯胺(TMB)的比色反应,产生可通过智能手机测量的蓝色。由于它们带正电荷,Cys/AuNPs 通过静电相互作用附着在 DNA 链骨架的负磷酸基团上,从而通过 Cys/AuNPs 的过氧化物酶样活性定量测定 miRNA-21 的浓度。此外,在尼龙盘设备上进行了基于纸张的测定,以允许 DNA 的快速固定化。进行基于纸张的测定后,观察到 1 pM 至 1 nM 之间存在良好的线性范围(Y = 0.080 [miRNA-21]/pM + 13.846,R = 0.993),检测限为 0.5 pM。所开发的方法对于 miRNA-21 的检测是有效、选择性和灵敏的。该方法在人血清样本中的 miRNA-21 检测中的应用得到了检验,回收率为 90.0-97.6%,表明所开发方法的准确性可以接受。