Circulating Tumor Cells in Cancer Diagnostics and Prognostics by Single-Molecule and Single-Cell Characterization.
Tafsir ChowdhuryBenjamin CressiotCleo ParisiGeorges SmolyakovBénédicte ThiébotLéa TrichetFrancisco M FernandesJuan PeltaPhilippe ManivetPublished in: ACS sensors (2023)
Circulating tumor cells (CTCs) represent an interesting source of biomarkers for diagnosis, prognosis, and the prediction of cancer recurrence, yet while they are extensively studied in oncobiology research, their diagnostic utility has not yet been demonstrated and validated. Their scarcity in human biological fluids impedes the identification of dangerous CTC subpopulations that may promote metastatic dissemination. In this Perspective, we discuss promising techniques that could be used for the identification of these metastatic cells. We first describe methods for isolating patient-derived CTCs and then the use of 3D biomimetic matrixes in their amplification and analysis, followed by methods for further CTC analyses at the single-cell and single-molecule levels. Finally, we discuss how the elucidation of mechanical and morphological properties using techniques such as atomic force microscopy and molecular biomarker identification using nanopore-based detection could be combined in the future to provide patients and their healthcare providers with a more accurate diagnosis.
Keyphrases
- circulating tumor cells
- single molecule
- atomic force microscopy
- single cell
- papillary thyroid
- healthcare
- living cells
- circulating tumor
- squamous cell carcinoma
- small cell lung cancer
- rna seq
- bioinformatics analysis
- end stage renal disease
- induced apoptosis
- squamous cell
- endothelial cells
- newly diagnosed
- ejection fraction
- high throughput
- lymph node metastasis
- multidrug resistant
- prognostic factors
- oxidative stress
- endoplasmic reticulum stress
- current status
- cell death
- signaling pathway
- nucleic acid
- patient reported
- health information
- cell free
- mass spectrometry
- tissue engineering