Correlative Raman-Electron-Light (CREL) Microscopy Analysis of Lipid Droplets in Melanoma Cancer Stem Cells.
Francesca PagliariElisa SogneDavide PanellaGerardo PerozzielloCarlo LiberaleGobind DasAlice TurdoSimone Di FrancoJoao SecoAndrea FalquiSanto GratteriArturo PujiaEnzo Di FabrizioPatrizio CandeloroLuca TirinatoPublished in: Biosensors (2022)
Among all neoplasms, melanoma is characterized by a very high percentage of cancer stem cells (CSCs). Several markers have been proposed for their identification, and lipid droplets (LDs) are among them. Different techniques are used for their characterization such as mass spectrometry, imaging techniques, and vibrational spectroscopies. Some emerging experimental approaches for the study of LDs are represented by correlative light-electron microscopy and by correlative Raman imaging-scanning electron microscopy (SEM). Based on these scientific approaches, we developed a novel methodology (CREL) by combining Raman micro-spectroscopy, confocal fluorescence microscopy, and SEM coupled with an energy-dispersive X-ray spectroscopy module. This procedure correlated cellular morphology, chemical properties, and spatial distribution from the same region of interest, and in this work, we presented the application of CREL for the analysis of LDs within patient-derived melanoma CSCs (MCSCs).
Keyphrases
- electron microscopy
- cancer stem cells
- high resolution
- single molecule
- mass spectrometry
- raman spectroscopy
- label free
- high speed
- skin cancer
- gas chromatography
- optical coherence tomography
- tandem mass spectrometry
- fatty acid
- liquid chromatography
- basal cell carcinoma
- energy transfer
- ionic liquid
- density functional theory
- molecular dynamics simulations
- gas chromatography mass spectrometry
- solid phase extraction