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Updated: Jun 22, 2026

A Versatile Automated Platform for Micro-scale Cell Stimulation Experiments
Published on: August 6, 2013
Automated Platform for Mass-Spectrometry-Based Multiomics Analysis from Small Volumes of Biofluids
Mingyang Li1, Yifan Zhou1, Zhiqi Liu1
1Institute of Microphysiological Systems, Nantong First People's Hospital, State Key Laboratory ofDigital Medical Engineering, School of Biological Science and Medical Engineering, SoutheastUniversity, Nanjing 210096, China.
Abstract:
Proteins and metabolites directly reflect biological states, yet traditional mass-spectrometry-based sample preparation remains labor-intensive, manual, and necessitates separate workflows for different molecules, hindering large-scale studies and risking microsample depletion. We developed an integrated multiomics workflow─designed for the sequential enrichment of extracellular vesicle proteins (EVPs), secreted proteins (SPs, enriched via protein corona formation), and metabolites from a single biofluid sample─by leveraging an automated liquid-handling and sample-preparation system. Applied to 1 mL of urine, it identified 2,287 EVPs, 1,759 SPs, and 1,122 metabolites, with >82% protein overlap in at least two replicates, a coefficient of variation <6%, and Pearson correlations >0.86. In 100 μL of respiratory syncytial virus-stimulated immune organoid culture media, we observed multiomics patterns that were consistent with three typical immune response stages. The automated system-based multiomics workflow provides a scalable and reliable solution for high-throughput sample preparation, offering broad utility in clinical research, biomarker discovery, and translational studies.
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