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Development of an organ-on-chip model for the detection of volatile organic compounds as potential biomarkers of tumour progression.

Clara BayonaMagdalena WronaTeodora RandelovicCristina NerínJesús SalafrancaIgnacio Ochoa
Published in: Biofabrication (2024)
Early detection of tumours remains a significant challenge due to their invasive nature and the limitations of current monitoring techniques. Liquid biopsies have emerged as a minimally invasive diagnostic approach, wherein volatile organic compounds (VOCs) show potential as compelling candidates. However, distinguishing tumour-specific VOCs is difficult due to the presence of gases from non-tumour tissues and environmental factors. Therefore, it is essential to develop preclinical models that accurately mimic the intricate tumour microenvironment to induce cellular metabolic changes and secretion of tumour-associated VOCs. In this study, a microfluidic device was used to recreate the ischaemic environment within solid tumours for the detection of tumour-derived VOCs. The system represents a significant advance in understanding the role of VOCs as biomarkers for early tumour detection and holds the potential to improve patient prognosis; particularly for inaccessible and rapidly progressing tumours such as glioblastoma.&#xD.
Keyphrases
  • minimally invasive
  • stem cells
  • loop mediated isothermal amplification
  • high throughput
  • gene expression
  • climate change
  • mesenchymal stem cells
  • ionic liquid