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Two dimensional barcode-inspired automatic analysis for arrayed microfluidic immunoassays.

Abstract

The usability of many high-throughput lab-on-a-chip devices in point-of-care applications is currently limited by the manual data acquisition and analysis process, which are labor intensive and time consuming. Based on our original design in the biochemical reactions, we proposed here a universal approach to perform automatic, fast, and robust analysis for high-throughput array-based microfluidic immunoassays. Inspired by two-dimensional (2D) barcodes, we incorporated asymmetric function patterns into a microfluidic array. These function patterns provide quantitative information on the characteristic dimensions of the microfluidic array, as well as mark its orientation and origin of coordinates. We used a computer program to perform automatic analysis for a high-throughput antigen/antibody interaction experiment in 10 s, which was more than 500 times faster than conventional manual processing. Our method is broadly applicable to many other microchannel-based immunoassays.

Authors

Yi Zhang, Lingbo Qiao, Yunke Ren, Xuwei Wang, Ming Gao, Yunfang Tang, Jianzhong Jeff Xi, Tzung-May Fu, Xingyu Jiang

College of Engineering and School of Physics, Peking University, Beijing 100871, China ; National Center for Nanoscience and Technology, Beijing 100190, China.

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1 product referenced in this paper

(bs-0292R) Bovine Serum Albumin Polyclonal Antibody

an Antibody by Bioss

Journal Biomicrofluidics

Volume 7

Issue 3

Pages 34110

Publication Date 10 January 2014

View on PubMed®

Publication metadata is provided by PubMed®, courtesy of the U.S. National Library of Medicine. Information for this publication was last updated on 2026-02-12 03:07:32 UTC.

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