On-chip acoustic chaotic micromixer for point-of-care applications

混合器 微尺度化学 声学 混乱的 谐振器 粒子(生态学) 微流控 信号(编程语言) 声表面波 阻力 分析物 发射机 材料科学 微尺度热泳 声波 电子工程 光电子学 声流 计算机科学 声表面波传感器 物理 干扰(通信) 信号处理 介电泳 实验室晶片 粒径 混合(物理) 工程类 质点速度 纳米技术
作者
Xian Chen,Chuanchao Zhang,Yaping Wang,Xuexin Duan,Yunhua Gao
出处
期刊:Lab on a Chip [Royal Society of Chemistry]
卷期号:26 (6): 2090-2099
标识
DOI:10.1039/d5lc01183c
摘要

Micro-mixing plays an important role in biochemical analyses using miniaturized total analysis systems (μTASs) or lab-on-chips. However, existing micromixers primarily rely on a specific medium and lack the capability of being activated on-demand, and it is rather challenging to ensure adequate analyte capture and fluid washing on the surface of each probe particle during the assay steps. Herein, we demonstrated a novel acoustic chaotic micromixer actuated by a Lamb wave resonator (LWR) array, which integrated all steps from the initial sample pretreatment, chaotic probe particle mixing, analyte trapping, and fluid washing to the ultimate signal acquisition, thereby fulfilling "sample-in-answer-out" medical needs. The high-speed microscale acoustic streaming vortices triggered by the four LWRs in the confined micro-channel can be utilized to accelerate the particles' velocity and enhance the collision between the probe particle and target analyte. In addition, the chaotic particle mixing effect was realized by on-demand controlling the direction and magnitude of the four-in-one drag force based on the programmable acoustic stimuli of each independent LWR. Besides, a compact cartridge was specifically designed to accommodate the acoustic chaotic micromixer and peripheral accessories (including an RF signal source, a CMOS optical sensor and a mini pump), thus presenting a handheld device for point-of-care applications. Finally, the trace amount of prostate specific antigen (PSA) derived from fingertip blood samples was effectively detected. Owing to the compact size, on-chip chaotic particle mixing, and fast and sensitive detection performance, the proposed acoustofluidic system is very suitable for on-site diagnostic applications.
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