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Quantitative evaluation of the dynamic activity of HeLa cells in different viability states using dynamic full-field optical coherence microscopy.

Soongho ParkThien NguyenEmilie BenoitDan L SackettMarcial Garmendia-CedillosRandall PursleyClaude BoccaraAmir Gandjbakhche
Published in: Biomedical optics express (2021)
Dynamic full-field optical coherence microscopy (DFFOCM) was used to characterize the intracellular dynamic activities and cytoskeleton of HeLa cells in different viability states. HeLa cell samples were continuously monitored for 24 hours and compared with histological examination to confirm the cell viability states. The averaged mean frequency and magnitude observed in healthy cells were 4.79±0.5 Hz and 2.44±1.06, respectively. In dead cells, the averaged mean frequency was shifted to 8.57±0.71 Hz, whereas the magnitude was significantly decreased to 0.53±0.25. This cell dynamic activity analysis using DFFOCM is expected to replace conventional time-consuming and biopsies-required histological or biochemical methods.
Keyphrases
  • cell cycle arrest
  • induced apoptosis
  • high resolution
  • cell death
  • high speed
  • pi k akt
  • single cell
  • stem cells
  • single molecule
  • endoplasmic reticulum stress
  • high throughput
  • cell proliferation