蒸发
分析物
免疫分析
微流控
流体学
检出限
数字微流体
纳米技术
色谱法
化学
材料科学
分析化学(期刊)
纳米颗粒
数字聚合酶链反应
异源的
肌钙蛋白
磁性纳米粒子
生物系统
动态范围
作者
Bo Hoon Han,Minjun Park,Seok Chung,Ji Yoon Kang
标识
DOI:10.1016/j.bios.2025.118076
摘要
Early detection of ultra-low-abundance protein biomarkers is critical for improving clinical outcomes. However, many conventional immunoassays and proteomic platforms exhibit high limits of detection (LOD) and long incubation times, complicating low-to sub-femtomolar measurements. In addition, state-of-the-art digital ELISAs often rely on magnetic beads, oil emulsions, and pump-valve benchtop analyzers-bulky and costly systems that hinder broad deployment. Here, we present a digital ELISA (dELISA) that lowers LOD and shortens time-to-result by harnessing rapid, repeated femtoliter-scale droplet evaporation on a bead-free, oil-free micro-droplet array. Cyclic ≈30-fL droplet generation/evaporation at the air-water interface enriches analytes at antibody-functionalized surfaces, while evaporation-induced convection and a shortened diffusion path increase antigen-antibody encounter frequency. For cardiac troponin I, the platform achieved an LOD of 64.23 fM with 300 evaporation cycles, a >280-fold improvement over 96-well ELISA. The same capture obtained after 120 min of static soaking occurred in 1.76 min with cyclic evaporation. Counts matched a Poisson capture model, with binding increasing linearly with cycle number. In diluted human plasma, the assay maintained >86 % recovery with minimal non-specific adsorption. Simple fabrication, the absence of beads, oils, and complex fluidic hardware, and high-throughput compatibility indicate strong potential for point-of-care use and integration into diverse digital immunoassay applications.
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