| Literature DB >> 27524958 |
Jiao Wu1, Xiang Wei1, Jinrui Gan2, Lin Huang1, Ting Shen3, Jiatao Lou1, Baohong Liu2, John X J Zhang4, Kun Qian1.
Abstract
We for the first time demonstrate multi-functional magnetic particles based rare cell isolation combined with the downstream laser desorption/ionization mass spectrometry (LDI-MS) to measure the metabolism of enriched circulating tumor cells (CTCs). The characterization of CTCs metabolism plays a significant role in understanding the tumor microenvironment, through exploring the diverse cellular process. However, characterizing cell metabolism is still challenging due to the low detection sensitivity, high sample complexity, and tedious preparation procedures, particularly for rare cells analysis in clinical study. Here we conjugate ferric oxide magnetic particles with anti-EpCAM on the surface for specific, efficient enrichment of CTCs from PBS and whole blood with cells concentration of 6-100 cells per mL. Moreover, these hydrophilic particles as matrix enable sensitive and selective LDI-MS detection of small metabolites (MW<500 Da) in complex bio-mixtures and can be further coupled with isotopic quantification to monitor selected molecules metabolism of ~50 CTCs. Our unique approach couples the immunomagnetic separation of CTCs and LDI-MS based metabolic analysis, which represents a key step forward for downstream metabolites analysis of rare cells to investigate the biological features of CTCs and their cellular responses in both pathological and physiological phenomena.Entities:
Keywords: circulating tumor cells (CTCs); laser desorption/ionization mass spectrometry; magnetic particles; small metabolites; surface conjugation
Year: 2016 PMID: 27524958 PMCID: PMC4978350 DOI: 10.1002/adfm.201504184
Source DB: PubMed Journal: Adv Funct Mater ISSN: 1616-301X Impact factor: 18.808