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Updated: May 12, 2026

Luminescence Lifetime Imaging of O2 with a Frequency-Domain-Based Camera System
Published on: December 16, 2019
A Reaction-Diffusion Frame for Accessing Metabolic O2 Fluxes in Single Microalgal Cells with Low-Cost Wide-Field
Hélène Merceron1,2, Eliora Israelievitch3, Valentine Rollot1
1CPCV, Département de chimie, École normale supérieure, PSL University, Sorbonne Université, CNRS, 24, rue Lhomond, Paris, 75005, France.
Abstract:
In cells, many small molecules are membrane-permeant. This feature opens a road to analyze their flux of production or consumption by quantitatively interpreting the map of their extracellular concentration within a reaction-diffusion frame. Here, this approach is implemented with a new wide-field lifetime imaging protocol applied to single microalgae cells sparsely deposited on an agarose pad loaded with a luminescent dioxygen (O2) nanosensor. The resulting maps are processed to access the spatial distribution of the O2 concentration in the plane of the cells. After fitting the data, the cellular O2 flux is extracted, evidencing a span of magnitudes and angular dependencies in the balance between photosynthesis and respiration. Beyond pointing to the disparity of individual behavior within the same colony, this work validates a simple approach for characterizing metabolic fluxes of membrane-permeant molecules down to the single-cell level.

