Department of Electronic & Computer Engineering, The Hong Kong University of Science and Technology, Hong Kong SAR 000000, China.
Department of Chemistry, The Hong Kong University of Science and Technology, Hong Kong SAR 000000, China.
ACS Sens. 2024 Oct 25;9(10):5293-5301. doi: 10.1021/acssensors.4c01482. Epub 2024 Oct 2.
The early diagnosis of cancer in a point-of-need manner is of great significance, yet it remains challenging to achieve the necessary sensitivity and speed. Traditional lateral flow immunoassay (LFIA) methods are limited in accuracy and quantification, restricting their suitability for home-based applications. Thus, we explored a new and user-friendly electrochemical LFIA (e-LFIA) test strip to detect α-fetoprotein (AFP), a diagnostic marker for liver cancer. The specific electrochemical immunoprobe utilized in this e-LFIA test strip is characterized by significant signal boosting, resulted from the loading Ag shell into a gold nanoparticle (AuNP)-coated dendritic mesoporous silica nanoscaffold (DMSN). Leveraging the distinct electrochemical characteristics of Ag anodic stripping and the high volume-to-surface area ratio of DMSNs, the developed DMSNs/AuNPs@Ag-based e-LFIA test strip is capable of detecting AFP at a low concentration of 0.85 ng/mL within a rapid 20 min timespan, both of these values are smaller than those in current clinical testing. Furthermore, we utilized homemade screen-printed electrodes in this sensing prototype and demonstrated the high versatility and reliability of this e-LFIA device. We envision that this DMSNs/AuNPs@Ag-based e-LFIA holds substantial potential for the early diagnosis of liver cancer and household health monitoring.
在需要的情况下进行癌症的早期诊断具有重要意义,但要达到必要的灵敏度和速度仍然具有挑战性。传统的侧向流动免疫分析(LFIA)方法在准确性和定量方面存在局限性,限制了它们在家用应用中的适用性。因此,我们探索了一种新的、用户友好的电化学 LFIA(e-LFIA)测试条,用于检测α-胎蛋白(AFP),这是肝癌的诊断标志物。该 e-LFIA 测试条中使用的特定电化学免疫探针具有显著的信号增强特性,这是由于将 Ag 壳加载到金纳米粒子(AuNP)涂覆的树枝状介孔硅纳米支架(DMSN)上所致。利用 Ag 阳极剥离的独特电化学特性和 DMSNs 的高体积-表面积比,开发的 DMSNs/AuNPs@Ag 基 e-LFIA 测试条能够在 20 分钟的快速时间内检测到低浓度为 0.85 ng/mL 的 AFP,这两个值都小于当前临床检测中的值。此外,我们在该传感原型中使用了自制的丝网印刷电极,证明了这种 e-LFIA 设备具有很高的多功能性和可靠性。我们设想,这种基于 DMSNs/AuNPs@Ag 的 e-LFIA 在肝癌的早期诊断和家庭健康监测方面具有很大的潜力。