In this work, we present a fabrication process for microneedle sensors made of polylactic acid (PLA), which can be utilized for the electrochemical detection of various biomarkers in interstitial fluid. Microneedles were fabricated by the thermal compression molding of PLA into a laser machined polytetrafluoroethylene (PTFE) mold. Sensor fabrication was completed by forming working, counter, and reference electrodes on each sensor surface by Au sputtering through a stencil mask, followed by laser dicing to separate individual sensors from the substrate. The devised series of processes was designed to be suitable for mass production, where multiple microneedle sensors can be produced at once on a 4-inch wafer. The operational stability of th...
We report fabrication of a microneedle-based three-electrode integrated electrochemical sensor and i...
In this work, two procedures for fabrication of polymeric microneedles based on direct photolithogra...
The next generation of devices for personal healthcare monitoring will comprise molecular sensors to...
Microneedle enzyme sensors by virtue of their minimally invasive and hence pain-free penetration of ...
This paper presents a new fabrication method consisting of lithographically defining multiple layers...
Abstract A microneedle (MN) array is a novel biomedical device adopted in medical applications to pi...
Microfabrication of dissolvable, swellable, and biodegradable polymeric microneedle arrays (MNs) wer...
New approaches to enable more effective management of diabetes mellitus, such as continuous glucose ...
Microneedle arrays have been proposed for drug delivery and point-of-care diagnostics to improve the...
Microfabrication of dissolvable, swellable, and biodegradable polymeric microneedle arrays (MNs) wer...
Microfabrication of dissolvable, swellable, and biodegradable polymeric microneedle arrays (MNs) wer...
Electrochemical sensors for real-time detection of several bioanalytes have been prepared by additiv...
Laser-direct writing (LDW) and magneto-rheological drawing lithography (MRDL) have been proposed for...
In this study we present the fabrication of multilayer microneedles with circular obelisk and bevele...
Lab-Under-The-Skin based on a microneedle platform opens a new realm of possibilities that can shape...
We report fabrication of a microneedle-based three-electrode integrated electrochemical sensor and i...
In this work, two procedures for fabrication of polymeric microneedles based on direct photolithogra...
The next generation of devices for personal healthcare monitoring will comprise molecular sensors to...
Microneedle enzyme sensors by virtue of their minimally invasive and hence pain-free penetration of ...
This paper presents a new fabrication method consisting of lithographically defining multiple layers...
Abstract A microneedle (MN) array is a novel biomedical device adopted in medical applications to pi...
Microfabrication of dissolvable, swellable, and biodegradable polymeric microneedle arrays (MNs) wer...
New approaches to enable more effective management of diabetes mellitus, such as continuous glucose ...
Microneedle arrays have been proposed for drug delivery and point-of-care diagnostics to improve the...
Microfabrication of dissolvable, swellable, and biodegradable polymeric microneedle arrays (MNs) wer...
Microfabrication of dissolvable, swellable, and biodegradable polymeric microneedle arrays (MNs) wer...
Electrochemical sensors for real-time detection of several bioanalytes have been prepared by additiv...
Laser-direct writing (LDW) and magneto-rheological drawing lithography (MRDL) have been proposed for...
In this study we present the fabrication of multilayer microneedles with circular obelisk and bevele...
Lab-Under-The-Skin based on a microneedle platform opens a new realm of possibilities that can shape...
We report fabrication of a microneedle-based three-electrode integrated electrochemical sensor and i...
In this work, two procedures for fabrication of polymeric microneedles based on direct photolithogra...
The next generation of devices for personal healthcare monitoring will comprise molecular sensors to...