Microfluidic paper analytical devices (µPADs) represent one of the most appealing trends in the development of simple and inexpensive analytical systems for diagnostic applications at the point of care (POC). Herein, we describe a smartphone-based origami µPAD for the quantitative determination of glucose in blood samples based on the glucose oxidase-catalyzed oxidation of glucose leading to hydrogen peroxide, which is then detected by means of the luminol/hexacyanoferrate(III) chemiluminescent (CL) system. By exploiting the foldable µPAD format, a two-step analytical procedure has been implemented. First, the diluted blood sample was added, and hydrogen peroxide was accumulated, then the biosensor was folded, and a transport buffer was add...
Chemiluminescence detection was developed as an alternative to amperometric detection for glucose an...
The development of smartphone\u2013based biosensors for point-of-care testing (POCT) applications al...
none6noIncreasingly, smartphones are used as portable personal computers, revolutionizing communicat...
Microfluidic paper analytical devices (µPADs) represent one of the most appealing trends in the deve...
Microfluidic paper analytical devices (µPADs) represent one of the most appealing trends in the deve...
Three-dimensional (3D) printed electrochemical devices are increasingly used in point-of-need and po...
Three-dimensional (3D) printed electrochemical devices are increasingly used in point-of-need and po...
In this paper, we report, for the first time, the use of a smartphone to image and quantify biochemi...
In this paper, we report, for the first time, the use of a smartphone to image and quantify biochemi...
In this paper, we report, for the first time, the use of a smartphone to image and quantify biochemi...
Chemiluminescence detection was developed as an alternative to amperometric detection for glucose an...
A combined thread-paper microfluidic device (μTPAD) is presented for the 15 determination of glucose...
Chemiluminescence detection was developed as an alternative to amperometric detection for glucose an...
Chemiluminescence detection was developed as an alternative to amperometric detection for glucose an...
In this study, we have developed a thread-paper microfluidic analytical device (µTPAD) for the deter...
Chemiluminescence detection was developed as an alternative to amperometric detection for glucose an...
The development of smartphone\u2013based biosensors for point-of-care testing (POCT) applications al...
none6noIncreasingly, smartphones are used as portable personal computers, revolutionizing communicat...
Microfluidic paper analytical devices (µPADs) represent one of the most appealing trends in the deve...
Microfluidic paper analytical devices (µPADs) represent one of the most appealing trends in the deve...
Three-dimensional (3D) printed electrochemical devices are increasingly used in point-of-need and po...
Three-dimensional (3D) printed electrochemical devices are increasingly used in point-of-need and po...
In this paper, we report, for the first time, the use of a smartphone to image and quantify biochemi...
In this paper, we report, for the first time, the use of a smartphone to image and quantify biochemi...
In this paper, we report, for the first time, the use of a smartphone to image and quantify biochemi...
Chemiluminescence detection was developed as an alternative to amperometric detection for glucose an...
A combined thread-paper microfluidic device (μTPAD) is presented for the 15 determination of glucose...
Chemiluminescence detection was developed as an alternative to amperometric detection for glucose an...
Chemiluminescence detection was developed as an alternative to amperometric detection for glucose an...
In this study, we have developed a thread-paper microfluidic analytical device (µTPAD) for the deter...
Chemiluminescence detection was developed as an alternative to amperometric detection for glucose an...
The development of smartphone\u2013based biosensors for point-of-care testing (POCT) applications al...
none6noIncreasingly, smartphones are used as portable personal computers, revolutionizing communicat...