Controlling the microstructure of materials by means of phase separation is a versatile tool for optimizing material properties. Phase separation has been exploited to fabricate intricate microstructures in many fields including cell biology, tissue engineering, optics, and electronics. The aim of this study was to use phase separation to tailor the spatial location of drugs and thereby generate release profiles of drug payload over periods ranging from 1 week to months by exploiting different mechanisms: polymer degradation, polymer diluent dissolution, and control of microstructure. To achieve this, we used drop-on-demand inkjet three-dimensional (3D) printing. We predicted the microstructure resulting from phase separation using high-thr...
The advancement of new biotherapeutics demands appropriate strategies that allow effective delivery ...
Abstract Continuous progress of personalized medicine is insistently calling the pharmaceutical sect...
Three-dimensional (3D) printing technology, specifically stereolithography (SLA) technology, has rec...
Controlling the microstructure of materials by means of phase separation is a versatile tool for opt...
We propose a strategy for creating tuneable 3D printed drug delivery devices. 3D printing offers the...
Conventional oral drug delivery systems, such as tablets, capsules and solutions, are widely used to...
Inkjet printing, a technique that precisely deposits liquid droplets in picoliter-volume ranges on a...
Inkjet printing, a technique that precisely deposits liquid droplets in picoliter-volume ranges on a...
New technologies for the fabrication of on-demand oral dosage forms are needed in order to provide p...
A robust discovery methodology is presented to identify novel biomaterials suitable for 3D printing....
Three Dimensional (3D) printing within the pharmaceutical industry is rapidly developing and current...
One of the most striking characteristics of 3D printing is its capability to produce multi-material ...
Abstract The temporal delivery of chemical compounds to target organs and tissues is a key-topic for...
Ink-jet printing is a precise and versatile technique that accurately deposits small volumes of solu...
This study reports the first case of an innovative drop-on-powder (DoP) three-dimensional (3D) print...
The advancement of new biotherapeutics demands appropriate strategies that allow effective delivery ...
Abstract Continuous progress of personalized medicine is insistently calling the pharmaceutical sect...
Three-dimensional (3D) printing technology, specifically stereolithography (SLA) technology, has rec...
Controlling the microstructure of materials by means of phase separation is a versatile tool for opt...
We propose a strategy for creating tuneable 3D printed drug delivery devices. 3D printing offers the...
Conventional oral drug delivery systems, such as tablets, capsules and solutions, are widely used to...
Inkjet printing, a technique that precisely deposits liquid droplets in picoliter-volume ranges on a...
Inkjet printing, a technique that precisely deposits liquid droplets in picoliter-volume ranges on a...
New technologies for the fabrication of on-demand oral dosage forms are needed in order to provide p...
A robust discovery methodology is presented to identify novel biomaterials suitable for 3D printing....
Three Dimensional (3D) printing within the pharmaceutical industry is rapidly developing and current...
One of the most striking characteristics of 3D printing is its capability to produce multi-material ...
Abstract The temporal delivery of chemical compounds to target organs and tissues is a key-topic for...
Ink-jet printing is a precise and versatile technique that accurately deposits small volumes of solu...
This study reports the first case of an innovative drop-on-powder (DoP) three-dimensional (3D) print...
The advancement of new biotherapeutics demands appropriate strategies that allow effective delivery ...
Abstract Continuous progress of personalized medicine is insistently calling the pharmaceutical sect...
Three-dimensional (3D) printing technology, specifically stereolithography (SLA) technology, has rec...