A novel optical biosensing platform utilizing the unique solubility and chemochromic properties of polyaniline is presented. A facile, ion-induced reprecipitation method leads to the entrapment of a chosen oxidoreductase enzyme, which, in the presence of its associated substrate, catalyzes a reversible redox change in the host polymer. This change is monitored via the UV–vis absorption and subsequently analyzed to fit a Michaelis–Menten model. Here, in vitro prototype devices demonstrate selective sensing of glucose, choline, and uric acid, and the potential to be adapted for use as part of real-time in vivo monitoring systems is discussed
Diabetes mellitus, commonly known as diabetes, is an urgent global health crisis. These motivated th...
Electrophoretically deposited nano-structured polyaniline (NS-PANI) film has been utilized for fabri...
The electronic conductivity of polymers such as polyaniline exhibits a strong dependence on the redo...
A novel optical biosensing platform utilizing the unique solubility and chemochromic properties of p...
A great deal of effort remains focused on the goal of developing a continuous \textit{in vivo} gluco...
ABSTRACT: We introduce a novel method for fabricating nano- and microscale polyaniline particles con...
We introduce a novel method for fabricating nano- and microscale polyaniline particles containing an...
A technique for coating the wells of microtiterplates with polyaniline layers and with polyaniline/e...
Due to the significant health and economic costs caused by complications associated with poorly cont...
The entrapment of oxidoreductase enzymes within polyaniline polymer films by inducing hydrophobic co...
The construction and performance of a novel enzyme based optical sensor for in situ continuous monit...
The facile entrapment of oxidoreductase enzymes within polyaniline polymer films by inducing hydroph...
An optical biosensor is presented for continuous determination of uric acid. The scheme is based on ...
Sensitive coatings are described for a novel enzyme-based optical sensor for in-situ continuous moni...
A sugar-binding polymer film capable of continuous sensingarises from the copolymerization of anilin...
Diabetes mellitus, commonly known as diabetes, is an urgent global health crisis. These motivated th...
Electrophoretically deposited nano-structured polyaniline (NS-PANI) film has been utilized for fabri...
The electronic conductivity of polymers such as polyaniline exhibits a strong dependence on the redo...
A novel optical biosensing platform utilizing the unique solubility and chemochromic properties of p...
A great deal of effort remains focused on the goal of developing a continuous \textit{in vivo} gluco...
ABSTRACT: We introduce a novel method for fabricating nano- and microscale polyaniline particles con...
We introduce a novel method for fabricating nano- and microscale polyaniline particles containing an...
A technique for coating the wells of microtiterplates with polyaniline layers and with polyaniline/e...
Due to the significant health and economic costs caused by complications associated with poorly cont...
The entrapment of oxidoreductase enzymes within polyaniline polymer films by inducing hydrophobic co...
The construction and performance of a novel enzyme based optical sensor for in situ continuous monit...
The facile entrapment of oxidoreductase enzymes within polyaniline polymer films by inducing hydroph...
An optical biosensor is presented for continuous determination of uric acid. The scheme is based on ...
Sensitive coatings are described for a novel enzyme-based optical sensor for in-situ continuous moni...
A sugar-binding polymer film capable of continuous sensingarises from the copolymerization of anilin...
Diabetes mellitus, commonly known as diabetes, is an urgent global health crisis. These motivated th...
Electrophoretically deposited nano-structured polyaniline (NS-PANI) film has been utilized for fabri...
The electronic conductivity of polymers such as polyaniline exhibits a strong dependence on the redo...