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Multiplex Detection of Bacteria in Complex Clinical and Environmental Samples using Oligonucleotide-coupled Fluorescent Microspheres
Published on: October 23, 2011
Target-Triggered Microspheres Magnetization for Multiplexed Nucleic Acids Detection Using Vertically Encoded
Jiacheng Li1, Ruoxi Zhai1, Hang Xiao1
1State Key Laboratory of Chemo and Biosensing, College of Chemistry and Chemical Engineering, Key Laboratory for Bio-Nanotechnology and Molecular Engineering of Hunan Province, Hunan University, Changsha410082, P. R. China.
None:
In conventional multiplex detection using fluorescently encoded microspheres, the reporting signal also originates from fluorescence, which often leads to mutual interference between encoding and detection signals. Furthermore, the reporting signal occupies an independent spectral band, thereby limiting the multiplexing capacity of the fluorescently encoded microspheres. To overcome this limitation, we propose a strategy termed target-triggered microsphere magnetization, which decouples encoding from signaling by employing vertically encoded microspheres for target identification and magnetic nanoparticles as magnetic tags. In the presence of target analytes, sandwich complexes are formed, purified by magnetic separation, and subsequently analyzed by flow cytometry. Target types are identified based on the positions of encoded microspheres in two-dimensional scatter plots, and target concentrations are determined by the event counts at the corresponding positions. Validated using nine gene fragment samples, this method achieves high-specificity multiplex detection with favorable sensitivity. By unlocking the encoding potential of fluorescent microspheres, this strategy offers a novel approach for large-scale, multi-index analysis of complex samples.

