The advancement of drug delivery devices is critical for the individualization of patient treatment and the improvement of healthcare. Here, we introduce the 3DMNMEMS, a novel device that combines 3D printing, microneedles (MNs) and Microelectromechanical Systems (MEMS), allowing versatile and controllable by the user transdermal drug delivery. Hollow MNs were designed and 3D printed using Stereolithography, followed by integrating into a MEMS. By employing advanced imaging techniques, we monitored the distribution of liquid delivered by the device within skin tissue in real-time. In vivo testing revealed that the delivery of insulin using the 3DMNMEMS achieved improved glycemic control to diabetic animals compared to subcutaneous injection...
Patch-based transdermal drug delivery offers a convenient way to administer drugs without the drawba...
In the present study, two different microneedle devices were produced using digital light processing...
This study reports the fabrication of microneedles using computer numerical control (CNC) machining ...
The advancement of drug delivery devices is critical for the individualization of patient treatment ...
The advancement of drug delivery devices is critical for the individualization of patient treatment ...
Microneedles (MN) are miniature devices of a maximum length of 1000 μm, capable of perforating painl...
Embedding microfluidic architectures with microneedles enables fluid management capabilities that pr...
In the current study hollow microneedles (HMNs) were fabricated by means of vat polymerization metho...
Microneedles (MNs) represent the concept of attractive, minimally invasive puncture devices of micro...
3D printed microneedle arrays were fabricated using a biocompatible resin through stereolithography ...
\u3cp\u3eDrug delivery through microneedles is a new form of a pharmaceutical dosage system. While s...
In this study, polymeric microneedle patches were fabricated by stereolithography, a 3D printing tec...
3D printing is a revolutionary manufacturing and prototyping technology that has altered the outlook...
Diabetes mellitus is an endocrine disorder that affects glucose metabolism, making the body unable t...
Patch-based transdermal drug delivery offers a convenient way to administer drugs without the drawba...
In the present study, two different microneedle devices were produced using digital light processing...
This study reports the fabrication of microneedles using computer numerical control (CNC) machining ...
The advancement of drug delivery devices is critical for the individualization of patient treatment ...
The advancement of drug delivery devices is critical for the individualization of patient treatment ...
Microneedles (MN) are miniature devices of a maximum length of 1000 μm, capable of perforating painl...
Embedding microfluidic architectures with microneedles enables fluid management capabilities that pr...
In the current study hollow microneedles (HMNs) were fabricated by means of vat polymerization metho...
Microneedles (MNs) represent the concept of attractive, minimally invasive puncture devices of micro...
3D printed microneedle arrays were fabricated using a biocompatible resin through stereolithography ...
\u3cp\u3eDrug delivery through microneedles is a new form of a pharmaceutical dosage system. While s...
In this study, polymeric microneedle patches were fabricated by stereolithography, a 3D printing tec...
3D printing is a revolutionary manufacturing and prototyping technology that has altered the outlook...
Diabetes mellitus is an endocrine disorder that affects glucose metabolism, making the body unable t...
Patch-based transdermal drug delivery offers a convenient way to administer drugs without the drawba...
In the present study, two different microneedle devices were produced using digital light processing...
This study reports the fabrication of microneedles using computer numerical control (CNC) machining ...