Brazilian Nanotechnology National Laboratory, Brazilian Center for Research in Energy and Materials, Campinas, São Paulo, 13083-970, Brazil.
Center for Natural and Human Sciences, Federal University of ABC, Santo André, São Paulo, 09210-580, Brazil.
Adv Healthc Mater. 2024 Apr;13(11):e2303509. doi: 10.1002/adhm.202303509. Epub 2024 Feb 22.
Multiplexing is a valuable strategy to boost throughput and improve clinical accuracy. Exploiting the vertical, meshed design of reproducible and low-cost ultra-dense electrochemical chips, the unprecedented single-response multiplexing of typical label-free biosensors is reported. Using a cheap, handheld one-channel workstation and a single redox probe, that is, ferro/ferricyanide, the recognition events taking place on two spatially resolved locations of the same working electrode can be tracked along a single voltammetry scan by collecting the electrochemical signatures of the probe in relation to different quasi-reference electrodes, Au (0 V) and Ag/AgCl ink (+0.2 V). This spatial isolation prevents crosstalk between the redox tags and interferences over functionalization and binding steps, representing an advantage over the existing non-spatially resolved single-response multiplex strategies. As proof of concept, peptide-tethered immunosensors are demonstrated to provide the duplex detection of COVID-19 antibodies, thereby doubling the throughput while achieving 100% accuracy in serum samples. The approach is envisioned to enable broad applications in high-throughput and multi-analyte platforms, as it can be tailored to other biosensing devices and formats.
多重检测是一种提高通量和改善临床准确性的有效策略。本研究利用可重复、低成本的超密集电化学芯片的垂直网格设计,实现了典型无标记生物传感器前所未有的单反应多重检测。使用廉价的手持式单通道工作站和单个氧化还原探针(即铁氰化亚铁),通过在单伏安扫描过程中收集探针相对于不同准参比电极(Au(0 V)和 Ag/AgCl 墨水(+0.2 V)的电化学信号,可以跟踪同一工作电极的两个空间分辨位置上发生的识别事件。这种空间隔离防止了氧化还原标签之间的串扰以及功能化和结合步骤中的干扰,与现有的非空间分辨单反应多重检测策略相比具有优势。作为概念验证,肽连接的免疫传感器被证明可以双检测 COVID-19 抗体,从而将通量提高一倍,同时在血清样本中实现 100%的准确性。该方法有望在高通量和多分析物平台中得到广泛应用,因为它可以针对其他生物传感设备和格式进行定制。