Circulating Tumor Cell Phenotype Detection and Epithelial-Mesenchymal Transition Tracking Based on Dual Biomarker Co-Recognition in an Integrated PDMS Chip.
Hao XuYingchun ZuoShuai GaoYuping LiuTingting LiuShiyu HeMengjiao WangLili HuChenglin LiYanyan YuPublished in: Small (Weinheim an der Bergstrasse, Germany) (2024)
Circulating tumor cells (CTCs) are widely considered as a reliable and promising class of markers in the field of liquid biopsy. As CTCs undergo epithelial-mesenchymal transition (EMT), phenotype detection of heterogeneous CTCs based on EMT markers is of great significance. In this report, an integrated analytical strategy that can simultaneously capture and differentially detect epithelial- and mesenchymal-expressed CTCs in bloods of non-small cell lung cancer (NSCLS) patients is proposed. First, a commercial biomimetic polycarbonate (PCTE) microfiltration membrane is employed as the capture interface for heterogenous CTCs. Meanwhile, differential detection of the captured CTCs is realized by preparing two distinct CdTe quantum dots (QDs) with red and green emissions, attached with EpCAM and Vimentin aptamers, respectively. For combined analysis, a polydimethylsiloxane (PDMS) chip with simple structure is designed, which integrates the membrane capture and QDs-based phenotype detection of CTCs. This chip not only implements the analysis of the number of CTCs down to 2 cells mL -1 , but enables EMT process tracking according to the specific signals of the two QDs. Finally, this method is successfully applied to inspect the correlations of numbers or proportions of heterogenous CTCs in 94 NSCLS patients with disease stage and whether there is distant metastasis.
Keyphrases
- circulating tumor cells
- epithelial mesenchymal transition
- circulating tumor
- quantum dots
- transforming growth factor
- loop mediated isothermal amplification
- signaling pathway
- label free
- real time pcr
- end stage renal disease
- stem cells
- ejection fraction
- prognostic factors
- single cell
- chronic kidney disease
- induced apoptosis
- newly diagnosed
- mass spectrometry
- ultrasound guided
- cell death
- high throughput
- peritoneal dialysis
- cell therapy
- heavy metals
- pi k akt