LUCS (Light-Up Cell System), a universal high throughput assay for homeostasis evaluation in live cells.

Sci Rep

Anti Oxidant Power AOP/MH2F-LAAS/CNRS, 7 avenue du Colonel Roche, BP 54200, Toulouse Cedex, 31031, France.

Published: December 2017

AI Article Synopsis

  • Observations of fluorescent cyanine dye behavior under 500 nm light led to the creation of LUCS (Light-Up Cell System), a new live cell assay for measuring homeostasis in cells.
  • Optimization of LUCS resulted in an effective, high-throughput assay useful for toxicity testing.
  • The study found that singlet oxygen and hydroxyl radicals contribute to oxidative stress that enhances dye access to intracellular targets, involving specific membrane transporters, with implications for antioxidant research and therapeutic strategies.

Article Abstract

Observations of fluorescent cyanine dye behavior under illumination at 500 nm lead to a novel concept in cell biology allowing the development of a new live cell assay called LUCS, for Light-Up Cell System, measuring homeostasis in live cells. Optimization of the LUCS process resulted in a standardized, straightforward and high throughput assay with applications in toxicity assessment. The mechanisms of the LUCS process were investigated. Electron Paramagnetic Resonance experiments showed that the singlet oxygen and hydroxyl radical are involved downstream of the light effect, presumably leading to deleterious oxidative stress that massively opens access of the dye to its intracellular target. Reversible modulation of LUCS by both verapamil and proton availability indicated that plasma membrane proton/cation antiporters, possibly of the MATE drug efflux transport family, are involved. A mechanistic model is presented. Our data show that intracellular oxidation can be controlled by tuning light energy, opening applications in regulatory purposes, anti-oxidant research, chemotherapy efficacy and dynamic phototherapy strategies.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC5741755PMC
http://dx.doi.org/10.1038/s41598-017-18211-2DOI Listing

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