Microfluidic devices have been established as versatile platforms to mimic various culture conditions or microenvironments in 2D and 3D tissue models. Oxygen availability in the cellular microenvironment strongly affects the cellular phenotype and metabolism. Therefore, monitoring oxygen tension inside microfluidic devices is essential, as it brings the in vitro conditions closer to real physoxia in cell culture and provides the basis for more reproducible and standardized results with maximal physiological relevance. Many commonly used measurement techniques for oxygen monitoring are not applicable in such small volumes, consume oxygen during the measurement process, or directly affect the cells. The use of optical oxygen sensors, based on...
Microfluidic cultivation devices that facilitate O2 control enable unique studies of the complex int...
In this paper we will demonstrate spatially-resolved visualization of oxygen dissolved in a liquid m...
AbstractWe present the development and characterization of fluorescent oxygen-sensing microparticles...
The presence and concentration of oxygen in biological systems has a large impact on the behavior an...
Oxygen is essential in the energy metabolism of cells, as well as being an important regulatory para...
<p>Knowledge on the availability of dissolved oxygen inside microfluidic cell culture systems is vit...
<p>Knowledge on the availability of dissolved oxygen inside microfluidic cell culture systems is vit...
<p>Knowledge on the availability of dissolved oxygen inside microfluidic cell culture systems is vit...
Dissolved oxygen (DO) is an important parameter in biomedical and cell-culture applications. Several...
AbstractLuminescent sensors with improved performance for monitoring dissolved oxygen in microfluidi...
Control of oxygen over cell cultures in vitro is a topic of considerable interest, as chronic and cy...
A phase fluorimetric sensor targeted for the monitoring of dissolved oxygen concentration in microfl...
A phase fluorimetric sensor targeted for the monitoring of dissolved oxygen concentration in microfl...
To improve cell vitality, sufficient oxygen supply is an important factor. A deficiency in oxygen is...
OOC models are microfluidic systems, designed to mimic the physiological processes of specific human...
Microfluidic cultivation devices that facilitate O2 control enable unique studies of the complex int...
In this paper we will demonstrate spatially-resolved visualization of oxygen dissolved in a liquid m...
AbstractWe present the development and characterization of fluorescent oxygen-sensing microparticles...
The presence and concentration of oxygen in biological systems has a large impact on the behavior an...
Oxygen is essential in the energy metabolism of cells, as well as being an important regulatory para...
<p>Knowledge on the availability of dissolved oxygen inside microfluidic cell culture systems is vit...
<p>Knowledge on the availability of dissolved oxygen inside microfluidic cell culture systems is vit...
<p>Knowledge on the availability of dissolved oxygen inside microfluidic cell culture systems is vit...
Dissolved oxygen (DO) is an important parameter in biomedical and cell-culture applications. Several...
AbstractLuminescent sensors with improved performance for monitoring dissolved oxygen in microfluidi...
Control of oxygen over cell cultures in vitro is a topic of considerable interest, as chronic and cy...
A phase fluorimetric sensor targeted for the monitoring of dissolved oxygen concentration in microfl...
A phase fluorimetric sensor targeted for the monitoring of dissolved oxygen concentration in microfl...
To improve cell vitality, sufficient oxygen supply is an important factor. A deficiency in oxygen is...
OOC models are microfluidic systems, designed to mimic the physiological processes of specific human...
Microfluidic cultivation devices that facilitate O2 control enable unique studies of the complex int...
In this paper we will demonstrate spatially-resolved visualization of oxygen dissolved in a liquid m...
AbstractWe present the development and characterization of fluorescent oxygen-sensing microparticles...