The present study reports the fabrication of dissolvable microneedle (MN) patches using pullulan (PL), a water-soluble polysaccharide with excellent film-forming ability, for the transdermal administration of insulin, envisioning the non-invasive treatment of diabetes. PL MNs patches were successfully prepared by micromoulding and revealed good thermal stability (Tdmax = 294 °C) and mechanical properties (>0.15 N needle-1), penetrating skin up to 381 μm depth, as revealed by in vitro skin tests. After application into human abdominal skin in vitro, the MNs dissolved within 2 h releasing up to 87% of insulin. When stored at 4, 20 and 40 °C for 4 weeks, insulin was able to retain its secondary structure, as shown by circular dichroism spectro...
Microneedles have been developed as a minimally invasive alternative to painful hypodermic needles t...
Antigen specific immunotherapy mediated via the sustained generation of regulatory T cells arguably ...
The advancement of drug delivery devices is critical for the individualization of patient treatment ...
In this study, polymeric microneedle patches were fabricated by stereolithography, a 3D printing tec...
Diabetes is a chronic metabolic disease that occurs when there is a deficiency in the production of ...
3D printed microneedle arrays were fabricated using a biocompatible resin through stereolithography ...
In this study, dissolving polymeric microneedle (MN) patches composed of gelatin and sodium carboxym...
Inkjet printing technology was used to apply insulin polymeric layers on metal microneedles for tran...
It’s of great significance to develop insulin-loaded dissolving microneedles (MNs) which are fabrica...
Microneedles have the clinical advantage of being able to deliver complex drugs across the skin in a...
International audiencePainless and controlled on-demand drug delivery is the ultimate goal for the m...
An innovative microneedle (MN)-based cell therapy is developed for glucose-responsive regulation of ...
The aim of this investigation is to study the effect of donor concentration and microneedle (MN) len...
Many experiments conducted in the literature have investigated the effect of microneedles (MNs) on i...
Microneedles have been developed as a minimally invasive alternative to painful hypodermic needles t...
Antigen specific immunotherapy mediated via the sustained generation of regulatory T cells arguably ...
The advancement of drug delivery devices is critical for the individualization of patient treatment ...
In this study, polymeric microneedle patches were fabricated by stereolithography, a 3D printing tec...
Diabetes is a chronic metabolic disease that occurs when there is a deficiency in the production of ...
3D printed microneedle arrays were fabricated using a biocompatible resin through stereolithography ...
In this study, dissolving polymeric microneedle (MN) patches composed of gelatin and sodium carboxym...
Inkjet printing technology was used to apply insulin polymeric layers on metal microneedles for tran...
It’s of great significance to develop insulin-loaded dissolving microneedles (MNs) which are fabrica...
Microneedles have the clinical advantage of being able to deliver complex drugs across the skin in a...
International audiencePainless and controlled on-demand drug delivery is the ultimate goal for the m...
An innovative microneedle (MN)-based cell therapy is developed for glucose-responsive regulation of ...
The aim of this investigation is to study the effect of donor concentration and microneedle (MN) len...
Many experiments conducted in the literature have investigated the effect of microneedles (MNs) on i...
Microneedles have been developed as a minimally invasive alternative to painful hypodermic needles t...
Antigen specific immunotherapy mediated via the sustained generation of regulatory T cells arguably ...
The advancement of drug delivery devices is critical for the individualization of patient treatment ...