The present review aims at identifying the key progress points that have been made on the use of 3D printing to manufacture microneedles in the past 3 years. The advances in the field of photopolymerization and extrusion-based 3D printing are outlined. The study revealed that the printing resolution and the material properties are the two critical parameters that have the most influential effect on the outcome of every microneedle printing endeavour. Finally, the authors attempt to estimate the impact of 3D printing on the transdermal drug delivery market
Microneedle arrays have been proposed for drug delivery and point-of-care diagnostics to improve the...
Embedding microfluidic architectures with microneedles enables fluid management capabilities that pr...
The 3D printing (3DP) process was patented in 1986; however, only in the last decade has it begun to...
Microneedles (MNs) represent the concept of attractive, minimally invasive puncture devices of micro...
The suitability of different printing processes for the direct or indirect printing of microneedle a...
3D printing is a revolutionary manufacturing and prototyping technology that has altered the outlook...
Since the appearance of the 3D printing in the 1980s it has revolutionized many research fields incl...
Three dimensional (3D) printing has emerged as one of the most promising additive manufacturing tech...
In this study, we have employed Digital Light Processing (DLP) printing technology for the fabricati...
The 3D PRINTING technology has caught the attention of medical devices industry and pharmaceutical i...
3D printing has emerged as a powerful manufacturing technology and has attracted significant attenti...
Abstract Purpose Microneedle patches are arrays of tiny needles that painlessly pierce the skin to d...
Microneedle-based microdevices promise to expand the scope for delivery of vaccines and therapeutic ...
Transdermal drug delivery enables efficient local and systematic drug delivery while offering advant...
Layer-by-layer fabrication of three dimensional (3D) objects from digital models is called 3D printi...
Microneedle arrays have been proposed for drug delivery and point-of-care diagnostics to improve the...
Embedding microfluidic architectures with microneedles enables fluid management capabilities that pr...
The 3D printing (3DP) process was patented in 1986; however, only in the last decade has it begun to...
Microneedles (MNs) represent the concept of attractive, minimally invasive puncture devices of micro...
The suitability of different printing processes for the direct or indirect printing of microneedle a...
3D printing is a revolutionary manufacturing and prototyping technology that has altered the outlook...
Since the appearance of the 3D printing in the 1980s it has revolutionized many research fields incl...
Three dimensional (3D) printing has emerged as one of the most promising additive manufacturing tech...
In this study, we have employed Digital Light Processing (DLP) printing technology for the fabricati...
The 3D PRINTING technology has caught the attention of medical devices industry and pharmaceutical i...
3D printing has emerged as a powerful manufacturing technology and has attracted significant attenti...
Abstract Purpose Microneedle patches are arrays of tiny needles that painlessly pierce the skin to d...
Microneedle-based microdevices promise to expand the scope for delivery of vaccines and therapeutic ...
Transdermal drug delivery enables efficient local and systematic drug delivery while offering advant...
Layer-by-layer fabrication of three dimensional (3D) objects from digital models is called 3D printi...
Microneedle arrays have been proposed for drug delivery and point-of-care diagnostics to improve the...
Embedding microfluidic architectures with microneedles enables fluid management capabilities that pr...
The 3D printing (3DP) process was patented in 1986; however, only in the last decade has it begun to...