AbstractWe present the development and characterization of fluorescent oxygen-sensing microparticles designed for measuring oxygen concentration in microenvironments existing within standard cell culture and transparent three-dimensional (3D) cell scaffolds. The microparticle synthesis employs poly(dimethylsiloxane) to encapsulate silica gel particles bound with an oxygen-sensitive luminophore as well as a reference or normalization fluorophore that is insensitive to oxygen. We developed a rapid, automated and non-invasive sensor analysis method based on fluorescence microscopy to measure oxygen concentration in a hydrogel scaffold. We demonstrate that the microparticles are non-cytotoxic and that their response is comparable to that of a t...
Traditional cell culture is experiencing a revolution moving toward physiomimetic approaches aiming ...
This work primarily aims to integrate dissolved oxygen sensing capability with a microfluidic platfo...
OOC models are microfluidic systems, designed to mimic the physiological processes of specific human...
AbstractWe present the development and characterization of fluorescent oxygen-sensing microparticles...
Oxygen concentration is a key parameter in tissue culture and tissue engineering. As such, oxygen di...
A phase fluorimetric sensor targeted for the monitoring of dissolved oxygen concentration in microfl...
Oxygen is a critical component for many physiological and pathological processes in living cells.[1,...
A phase fluorimetric sensor targeted for the monitoring of dissolved oxygen concentration in microfl...
Microfluidic devices have been established as versatile platforms to mimic various culture condition...
<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...
Measuring oxygen concentration in three-dimensional cultures, without interfering with cellular acti...
The presence and concentration of oxygen in biological systems has a large impact on the behavior an...
<p>Knowledge on the availability of dissolved oxygen inside microfluidic cell culture systems is vit...
Traditional cell culture is experiencing a revolution moving toward physiomimetic approaches aiming ...
This work primarily aims to integrate dissolved oxygen sensing capability with a microfluidic platfo...
OOC models are microfluidic systems, designed to mimic the physiological processes of specific human...
AbstractWe present the development and characterization of fluorescent oxygen-sensing microparticles...
Oxygen concentration is a key parameter in tissue culture and tissue engineering. As such, oxygen di...
A phase fluorimetric sensor targeted for the monitoring of dissolved oxygen concentration in microfl...
Oxygen is a critical component for many physiological and pathological processes in living cells.[1,...
A phase fluorimetric sensor targeted for the monitoring of dissolved oxygen concentration in microfl...
Microfluidic devices have been established as versatile platforms to mimic various culture condition...
<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...
Measuring oxygen concentration in three-dimensional cultures, without interfering with cellular acti...
The presence and concentration of oxygen in biological systems has a large impact on the behavior an...
<p>Knowledge on the availability of dissolved oxygen inside microfluidic cell culture systems is vit...
Traditional cell culture is experiencing a revolution moving toward physiomimetic approaches aiming ...
This work primarily aims to integrate dissolved oxygen sensing capability with a microfluidic platfo...
OOC models are microfluidic systems, designed to mimic the physiological processes of specific human...