School of Chemistry and Chemical Engineering, University of Jinan, Jinan 250022, P.R. China.
College of Chemistry and Material Science, Shandong Agricultural University, Taian 271018, P.R. China.
Anal Chem. 2020 Mar 3;92(5):3874-3881. doi: 10.1021/acs.analchem.9b05343. Epub 2020 Feb 12.
Currently, portable, low-cost, and easy to operate on-chip analytical units are urgently demanded to meet the requirement for point-of-care testing in resource-limited regions. Herein, a dual-mode lab-on-paper platform is presented, which integrates distance-based visualized readout with ratiometric electrochemiluminescence (ECL) assay in one device. The distance-based measurement is based on a brown visualized strip generated from the oxidation reaction of 3,3'-diaminobenzidine in the presence of HO initiated by horseradish peroxidase (HRP). Notably, visualized semiquantitative results are displayed as the length of a brown bar chart directly on the device-without the need for any data processing or plotting steps, thus avoiding the error caused by the naked eye for distinguishing the color depth. On the contrary, a ratiometric ECL technique was employed for accurate analysis based on the specific biorecognition between Pb-dependent DNAzymes and targets. Concretely, upon addition of Pb into the fabricated device, cleaved oligonucleotide fragments connected with HRP functionalized Au nanocubes could permeate through the cellulose on account of their size that is smaller than paper pores, quench the ECL signal of the CdS quantum dots because of resonance energy transfer, and synchronously boost the ECL intensity generated from luminol by catalyzing HO. As a consequence, satisfied prediction and accurate monitoring performance was obtained in the range 0.1-2000 nM and 0.01-2000 nM by measuring the length of colored product and the ratio of ECL intensity, respectively. The beneficial advantages of low cost, high efficiency, and the capacity to perform dual-mode assay qualify this innovative device for use with diverse applications.
目前,迫切需要便携式、低成本且易于操作的片上分析单元,以满足资源有限地区即时检测的需求。在此,提出了一种双模式纸基芯片平台,它将基于距离的可视化读出与比率型电化学发光(ECL)分析集成在一个装置中。基于距离的测量是基于辣根过氧化物酶(HRP)引发的 HO 存在下 3,3'-二氨基联苯胺氧化反应产生的棕色可视化条带。值得注意的是,可视化半定量结果显示为直接在设备上的棕色条形图的长度-无需任何数据处理或绘图步骤,从而避免了肉眼区分颜色深度引起的误差。相反,采用比率型 ECL 技术基于 Pb 依赖性 DNA 酶和靶标之间的特定生物识别进行准确分析。具体而言,在向所制备的设备中添加 Pb 后,与 HRP 功能化 Au 纳米立方体连接的切割寡核苷酸片段可以由于其尺寸小于纸孔而渗透通过纤维素,由于共振能量转移而猝灭 CdS 量子点的 ECL 信号,并通过催化 HO 同时增强来自鲁米诺的 ECL 强度。因此,通过测量有色产物的长度和 ECL 强度的比值,分别在 0.1-2000 nM 和 0.01-2000 nM 的范围内获得了令人满意的预测和准确的监测性能。这种创新设备具有低成本、高效率和进行双模式分析的能力,具有多种应用的潜力。