In this study, dissolving polymeric microneedle (MN) patches composed of gelatin and sodium carboxymethyl cellulose (CMC) were used to localize insulin. Their in vitro skin insertion capabilities were determined using tissue-marking dye to stain the skin after patches removal. Scanning electron microscopy (SEM) was used to determine changes in the MNs over time, and optical coherence tomography (OCT) was used to monitor their real-time penetration depth. Confocal microscopy images revealed that rhodamine 6G gradually diffuses from the puncture sites to deeper dermal tissue. Using an in vivo imaging system (IVIS), skin areas that received FITC-insulin-loaded MNs were found to present strong fluorescent signals that greatly decreased 1 h afte...
Inkjet printing technology was used to apply insulin polymeric layers on metal microneedles for tran...
Recently, swellable microneedles (SMNs) have gained significant interest due to their potential appl...
Inkjet printing technology was used to apply insulin polymeric layers on metal microneedles for tran...
In this study, dissolving polymeric microneedle (MN) patches composed of gelatin and sodium carboxym...
International audiencePainless and controlled on-demand drug delivery is the ultimate goal for the m...
International audiencePainless and controlled on-demand drug delivery is the ultimate goal for the m...
International audiencePainless and controlled on-demand drug delivery is the ultimate goal for the m...
It’s of great significance to develop insulin-loaded dissolving microneedles (MNs) which are fabrica...
Soluble microneedles (MNs) have recently become an efficient and minimally invasive tool in transder...
In the current study hollow microneedles (HMNs) were fabricated by means of vat polymerization metho...
Inkjet printing technology was used to apply insulin polymeric layers on metal microneedles for tran...
Inkjet printing technology was used to apply insulin polymeric layers on metal microneedles for tran...
Inkjet printing technology was used to apply insulin polymeric layers on metal microneedles for tran...
Inkjet printing technology was used to apply insulin polymeric layers on metal microneedles for tran...
Inkjet printing technology was used to apply insulin polymeric layers on metal microneedles for tran...
Inkjet printing technology was used to apply insulin polymeric layers on metal microneedles for tran...
Recently, swellable microneedles (SMNs) have gained significant interest due to their potential appl...
Inkjet printing technology was used to apply insulin polymeric layers on metal microneedles for tran...
In this study, dissolving polymeric microneedle (MN) patches composed of gelatin and sodium carboxym...
International audiencePainless and controlled on-demand drug delivery is the ultimate goal for the m...
International audiencePainless and controlled on-demand drug delivery is the ultimate goal for the m...
International audiencePainless and controlled on-demand drug delivery is the ultimate goal for the m...
It’s of great significance to develop insulin-loaded dissolving microneedles (MNs) which are fabrica...
Soluble microneedles (MNs) have recently become an efficient and minimally invasive tool in transder...
In the current study hollow microneedles (HMNs) were fabricated by means of vat polymerization metho...
Inkjet printing technology was used to apply insulin polymeric layers on metal microneedles for tran...
Inkjet printing technology was used to apply insulin polymeric layers on metal microneedles for tran...
Inkjet printing technology was used to apply insulin polymeric layers on metal microneedles for tran...
Inkjet printing technology was used to apply insulin polymeric layers on metal microneedles for tran...
Inkjet printing technology was used to apply insulin polymeric layers on metal microneedles for tran...
Inkjet printing technology was used to apply insulin polymeric layers on metal microneedles for tran...
Recently, swellable microneedles (SMNs) have gained significant interest due to their potential appl...
Inkjet printing technology was used to apply insulin polymeric layers on metal microneedles for tran...