Bioluminescence imaging assays have become a widely integrated technique to quantify effectiveness of cell-based therapies by monitoring fate and survival of transplanted cells. To date these assays are still largely qualitative and often erroneous due to the complexity and dynamics of local micro-environments (niches) in which the cells reside. Here, we report, using a combined experimental and computational approach, on oxygen that besides being a critical niche component responsible for cellular energy metabolism and cell-fate commitment, also serves a primary role in regulating bioluminescent light kinetics. We demonstrate the potential of an oxygen dependent Michaelis-Menten relation in quantifying intrinsic bioluminescence intensities...
Accurately modeling oxygen transport and consumption is crucial to predict metabolic dynamics in cel...
<p>(<b>A</b>) Total photon flux at normoxic (21% O<sub>2</sub>) and hypoxic (0% O<sub>2</sub>, via a...
Bioluminescence is widely used for real-time imaging in living organisms. This technology features a...
Bioluminescence imaging assays have become a widely integrated technique to quantify effectiveness o...
Bioluminescence imaging assays have become a widely integrated technique to quantify effectiveness o...
By providing a three-dimensional (3D) support to cells, hydrogels offer a more relevant in vivo tiss...
<p>These mechanisms are implemented in the mathematical bioluminescence-oxygen model to decouple int...
<p>(<b>A</b>) Average photon flux measured for luciferase reporter 293T cells embedded in agarose ge...
Optical imaging strategies have revolutionized our understanding of living systems. Among the most p...
Survival and growth of cellular grafts in tissue engineering (TE) are limited by the rate of oxygen ...
Cellular interactions underlie diverse physiological processes. Efforts to image andmanipulate these...
<p>(<b>A</b>, <b>B</b>) Dynamic time point analysis of luciferase activity with varying luciferin co...
Cell research is transitioning from planar 2D cell cultures towards 3D culture models. 3D cell cultu...
Molecular transport phenomena underlie many of the processes that regulate cell behaviour during ske...
Imaging tools have revolutionized our understanding of living systems by allowing researchers to vis...
Accurately modeling oxygen transport and consumption is crucial to predict metabolic dynamics in cel...
<p>(<b>A</b>) Total photon flux at normoxic (21% O<sub>2</sub>) and hypoxic (0% O<sub>2</sub>, via a...
Bioluminescence is widely used for real-time imaging in living organisms. This technology features a...
Bioluminescence imaging assays have become a widely integrated technique to quantify effectiveness o...
Bioluminescence imaging assays have become a widely integrated technique to quantify effectiveness o...
By providing a three-dimensional (3D) support to cells, hydrogels offer a more relevant in vivo tiss...
<p>These mechanisms are implemented in the mathematical bioluminescence-oxygen model to decouple int...
<p>(<b>A</b>) Average photon flux measured for luciferase reporter 293T cells embedded in agarose ge...
Optical imaging strategies have revolutionized our understanding of living systems. Among the most p...
Survival and growth of cellular grafts in tissue engineering (TE) are limited by the rate of oxygen ...
Cellular interactions underlie diverse physiological processes. Efforts to image andmanipulate these...
<p>(<b>A</b>, <b>B</b>) Dynamic time point analysis of luciferase activity with varying luciferin co...
Cell research is transitioning from planar 2D cell cultures towards 3D culture models. 3D cell cultu...
Molecular transport phenomena underlie many of the processes that regulate cell behaviour during ske...
Imaging tools have revolutionized our understanding of living systems by allowing researchers to vis...
Accurately modeling oxygen transport and consumption is crucial to predict metabolic dynamics in cel...
<p>(<b>A</b>) Total photon flux at normoxic (21% O<sub>2</sub>) and hypoxic (0% O<sub>2</sub>, via a...
Bioluminescence is widely used for real-time imaging in living organisms. This technology features a...