微流控
吞吐量
多路复用
注意事项
检测点注意事项
纳米技术
材料科学
点(几何)
计算机科学
电信
医学
无线
几何学
护理部
数学
免疫学
作者
Shunji Li,Ying Zhang,Jingxuan Liu,Xing Wang,Chungen Qian,Jingjing Wang,Liqiang Wu,Chenxi Dai,Huijuan Yuan,Chao Wan,Jiashuo Li,Wei Du,Xiaojun Feng,Yiwei Li,Peng Chen,Bi‐Feng Liu
出处
期刊:Small
[Wiley]
日期:2024-06-28
卷期号:20 (43)
被引量:12
标识
DOI:10.1002/smll.202401848
摘要
Abstract For every epidemic outbreak, the prevention and treatments in resource‐limited areas are always out of reach. Critical to this is that high accuracy, stability, and more comprehensive analytical techniques always rely on expensive and bulky instruments and large laboratories. Here, a fully integrated and high‐throughput microfluidic system is proposed for ultra‐multiple point‐of‐care immunoassay, termed Dac system. Specifically, the Dac system only requires a handheld portable device to automatically recycle repetitive multi‐step reactions including on‐demand liquid releasing, dispensing, metering, collecting, oscillatory mixing, and discharging. The Dac system performs high‐precision enzyme‐linked immunosorbent assays for up to 17 samples or targets simultaneously on a single chip. Furthermore, reagent consumption is only 2% compared to conventional ELISA, and microbubble‐accelerated reactions shorten the assay time by more than half. As a proof of concept, the multiplexed detections are achieved by detecting at least four infection targets for two samples simultaneously on a singular chip. Furthermore, the barcode‐based multi‐target results can rapidly distinguish between five similar cases, allowing for accurate therapeutic interventions. Compared to bulky clinical instruments, the accuracy of clinical inflammation classification is 92.38% ( n = 105), with a quantitative correlation coefficient of R 2 = 0.9838, while the clinical specificity is 100% and the sensitivity is 98.93%.
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