The authors report on the manufacturing and in vivo assessment of a bioresorbable nanostructured pH sensor. The sensor consists of a micrometer-thick porous silica membrane conformably coated layer-by-layer with a nanometer-thick multilayer stack of two polyelectrolytes labeled with a pH-insensitive fluorophore. The sensor fluorescence changes linearly with the pH value in the range 4 to 7.5 upon swelling/shrinking of the polymer multilayer and enables performing real-time measurements of the pH level with high stability, reproducibility, and accuracy, over 100 h of continuous operation. In vivo studies carried out implanting the sensor in the subcutis on the back of mice confirm real-time monitoring of the local pH level through skin. Full...
Intracellular pH sensing with fluorescent nanoparticles is an emerging topic as pH plays several rol...
We prepared water soluble, biocompatible fluorescent turn-on pH nanosensors and characterized their ...
Many human activities and cellular functions depend upon precise pH values, and pH monitoring is con...
Here, the authors report on the manufacturing and in vivo assessment of a bioresorbable nanostructur...
Continuous monitoring using nanoparticle-based sensors has been successfully employed in complex bio...
The pH is fundamental to biological function and its measurement therefore crucial across all biosci...
Nanosensors are introduced that enable a reliable and continuous monitoring of pH. The pH-nanosensor...
Biosensors have recently moved into the arena of implantable devices. This incredible capability,to ...
In this work, we demonstrated a new ratiometric method for the quantitative analysis of pH inside li...
International audienceA new type of pH biosensor was developed for biological applications. This bio...
Biofilms are ubiquitous in nature and in the man-made environment. Given their harmful effects on hu...
We describe the assembly of layer-by-layer films based on the poly(propylene imine) dendrimer (PPID)...
The development of fluorescent indicators represented a revolution for life sciences. Genetically en...
Continuous monitoring using nanoparticle-based sensors has been successfully employed in complex bio...
pH is a very important parameter in biological systems. Monitoring pH in situ may provide useful inf...
Intracellular pH sensing with fluorescent nanoparticles is an emerging topic as pH plays several rol...
We prepared water soluble, biocompatible fluorescent turn-on pH nanosensors and characterized their ...
Many human activities and cellular functions depend upon precise pH values, and pH monitoring is con...
Here, the authors report on the manufacturing and in vivo assessment of a bioresorbable nanostructur...
Continuous monitoring using nanoparticle-based sensors has been successfully employed in complex bio...
The pH is fundamental to biological function and its measurement therefore crucial across all biosci...
Nanosensors are introduced that enable a reliable and continuous monitoring of pH. The pH-nanosensor...
Biosensors have recently moved into the arena of implantable devices. This incredible capability,to ...
In this work, we demonstrated a new ratiometric method for the quantitative analysis of pH inside li...
International audienceA new type of pH biosensor was developed for biological applications. This bio...
Biofilms are ubiquitous in nature and in the man-made environment. Given their harmful effects on hu...
We describe the assembly of layer-by-layer films based on the poly(propylene imine) dendrimer (PPID)...
The development of fluorescent indicators represented a revolution for life sciences. Genetically en...
Continuous monitoring using nanoparticle-based sensors has been successfully employed in complex bio...
pH is a very important parameter in biological systems. Monitoring pH in situ may provide useful inf...
Intracellular pH sensing with fluorescent nanoparticles is an emerging topic as pH plays several rol...
We prepared water soluble, biocompatible fluorescent turn-on pH nanosensors and characterized their ...
Many human activities and cellular functions depend upon precise pH values, and pH monitoring is con...