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Updated: Dec 27, 2025

In Situ Measurement and Correlation of Cell Density and Light Emission of Bioluminescent Bacteria
Published on: June 28, 2018
Development of a quantitative optical biochip based on a double integrating sphere system that determines absolute
Ramiz Daniel1, Ronen Almog, Yelena Sverdlov
1Department of Physical Electronic, Electrical Engineering faculty, Tel Aviv University, Ramat Aviv 69978, Israel. ramizda@eng.tau.ac.il
Abstract:
We report a new design of an optical biochip based on a double integrating sphere system to quantify the absolute number of the emitted photons or the total photon flux by a whole cell bioluminescent biosensor, for water toxicity detection, based on genetically engineered Escherichia coli bacteria carrying a recA::luxCDABE promoter-reporter fusion. The new design of the double integrating sphere system does not require any external standard light source for calibration of the tested bioluminescent solution and allows a direct determination of the total photon flux of the bioluminescent solution. In our design, we required that the two spheres are symmetric (have the same radius and reflectance) with a surface area larger than the cut cap area between the spheres.

