In this study, we have employed Digital Light Processing (DLP) printing technology for the fabrication of solid microneedle (MN) arrays. Several arrays with various geometries, such as cones, three-sided pyramids and four-sided pyramids, with different height to aspect ratios of 1:1, 2:1 and 3:1, were printed. Post-processing curing optimizations showed that optimal mechanical properties of the photocurable resin were obtained at 40 °C and 60 min. Ex vivo skin studies showed that piercing forces, penetration depth and penetration width were affected by the MN geometry and height to aspect ratio. Cone-shaped MNs required lower applied forces to penetrate skin and showed higher penetration depth with increasing height to aspect ratio, followe...
Microneedle-based microdevices promise to expand the scope for delivery of vaccines and therapeutic ...
Microneedles, arrays of micron-sized needles that painlessly puncture the skin, enable transdermal d...
Conventional needle technologies can be advanced with emerging nano- and micro-fabrication methods t...
In the present study, two different microneedle devices were produced using digital light processing...
Microneedle arrays have been proposed for drug delivery and point-of-care diagnostics to improve the...
Microneedle (MN), a miniaturized needle with a length-scale of hundreds of micrometers, has received...
Microneedles (MNs) have powerful drug delivery abilities and have been considered a promising approa...
Abstract A microneedle (MN) array is a novel biomedical device adopted in medical applications to pi...
Three dimensional (3D) printing technology has pushed state-of-the-art manufacturing towards more ad...
Microneedles (MN) are miniature devices of a maximum length of 1000 μm, capable of perforating painl...
Microneedles (MNs) are an array of micron-sized needles that have been used as an excellent alternat...
Microneedles (MNs) represent the concept of attractive, minimally invasive puncture devices of micro...
Abstract Purpose Microneedle patches are arrays of tiny needles that painlessly pierce the skin to d...
We present a simple and customizable microneedle mold fabrication technique using a low-cost desktop...
The present review aims at identifying the key progress points that have been made on the use of 3D ...
Microneedle-based microdevices promise to expand the scope for delivery of vaccines and therapeutic ...
Microneedles, arrays of micron-sized needles that painlessly puncture the skin, enable transdermal d...
Conventional needle technologies can be advanced with emerging nano- and micro-fabrication methods t...
In the present study, two different microneedle devices were produced using digital light processing...
Microneedle arrays have been proposed for drug delivery and point-of-care diagnostics to improve the...
Microneedle (MN), a miniaturized needle with a length-scale of hundreds of micrometers, has received...
Microneedles (MNs) have powerful drug delivery abilities and have been considered a promising approa...
Abstract A microneedle (MN) array is a novel biomedical device adopted in medical applications to pi...
Three dimensional (3D) printing technology has pushed state-of-the-art manufacturing towards more ad...
Microneedles (MN) are miniature devices of a maximum length of 1000 μm, capable of perforating painl...
Microneedles (MNs) are an array of micron-sized needles that have been used as an excellent alternat...
Microneedles (MNs) represent the concept of attractive, minimally invasive puncture devices of micro...
Abstract Purpose Microneedle patches are arrays of tiny needles that painlessly pierce the skin to d...
We present a simple and customizable microneedle mold fabrication technique using a low-cost desktop...
The present review aims at identifying the key progress points that have been made on the use of 3D ...
Microneedle-based microdevices promise to expand the scope for delivery of vaccines and therapeutic ...
Microneedles, arrays of micron-sized needles that painlessly puncture the skin, enable transdermal d...
Conventional needle technologies can be advanced with emerging nano- and micro-fabrication methods t...