Publication | Closed Access
Single-cell resolution diagnosis of cancer cells by carbon nanotube electrical spectroscopy
64
Citations
33
References
2013
Year
EngineeringMicroscopyCancer Metastatic DiagnosisBiomedical EngineeringSingle-cell Resolution DiagnosisCancer Metastatic GradeSingle MoleculeNanosensorCarbon NanotubesBiophysicsNovel Imaging MethodNanobiotechnologyCancer CellsSingle-molecule DetectionBioelectronicsBiomedical ImagingNano Electro Mechanical SystemMedicineCell Detection
We report the use of vertically aligned carbon nanotubes (VACNTs) as electrical endoscopes (biosensors) for cancer metastatic diagnosis at single-cell resolution. The device is based on direct signal extraction by means of vertically aligned conductive carbon nanotubes from a live cell membrane, which has been disrupted during carcinogenesis at its primary and progressive stages. The value of this electrical disruption depends on the cancer metastatic grade. In addition, the electrical resonance behavior of the cell, halted during cancer progression, could be monitored as a new cancer diagnostic profile. By taking a second derivative of the cell impedance with respect to applied frequency, we have arrived at a new spectroscopy tool for distinguishing cancerous stages of colon and breast carcinoma cells.
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