AbstractWe describe formulation and evaluation of novel dissolving polymeric microneedle (MN) arrays for the facilitated delivery of low molecular weight, high dose drugs. Ibuprofen sodium was used as the model here and was successfully formulated at approximately 50% w/w in the dry state using the copolymer poly(methylvinylether/maleic acid). These MNs were robust and effectively penetrated skin in vitro, dissolving rapidly to deliver the incorporated drug. The delivery of 1.5mg ibuprofen sodium, the theoretical mass of ibuprofen sodium contained within the dry MN alone, was vastly exceeded, indicating extensive delivery of the drug loaded into the baseplates. Indeed in in vitro transdermal delivery studies, approximately 33mg (90%) of the...
Super-swelling hydrogel-forming microneedles (HFMNs) based transdermal drug delivery (TDD) is gainin...
AbstractTransdermal drug delivery is an attractive route of drug administration; however, there are ...
Levothyroxine (LT-4) sodium has shown variable bioavailability following oral administration. This c...
Delivery across skin offers many advantages compared to oral or parenteral routes e.g. non-invasive,...
We describe, for the first time, stimuli-responsive hydrogel-forming microneedle (MN) arrays that en...
Advances in microtechnology and biomedical imaging technology has led to extensive research for self...
We describe, for the first time, hydrogel-forming microneedle arrays prepared from "super swelling" ...
Dissolving microneedles (dMNs) are promising versatile drug delivery systems for the transdermal del...
AbstractThe use of biological tissues in the in vitro assessments of dissolving (?) microneedle (MN)...
Drug delivery research extensively studies methods to transport proteins, deoxyribonucleic acid (DNA...
The present study was designed to identify the most suitable polymeric microneedle (MN) array design...
Dissolving microneedles made from natural polymers recently have gained much attention as an efficie...
The largest organ of the body provides the main challenge for the transdermal delivery of lipophilic...
The purpose of this study was to optimize the manufacturing of dissolving microneedles (dMNs) and to...
This study aims to explore the use of polymeric microneedles (MNs) for the transdermal delivery of d...
Super-swelling hydrogel-forming microneedles (HFMNs) based transdermal drug delivery (TDD) is gainin...
AbstractTransdermal drug delivery is an attractive route of drug administration; however, there are ...
Levothyroxine (LT-4) sodium has shown variable bioavailability following oral administration. This c...
Delivery across skin offers many advantages compared to oral or parenteral routes e.g. non-invasive,...
We describe, for the first time, stimuli-responsive hydrogel-forming microneedle (MN) arrays that en...
Advances in microtechnology and biomedical imaging technology has led to extensive research for self...
We describe, for the first time, hydrogel-forming microneedle arrays prepared from "super swelling" ...
Dissolving microneedles (dMNs) are promising versatile drug delivery systems for the transdermal del...
AbstractThe use of biological tissues in the in vitro assessments of dissolving (?) microneedle (MN)...
Drug delivery research extensively studies methods to transport proteins, deoxyribonucleic acid (DNA...
The present study was designed to identify the most suitable polymeric microneedle (MN) array design...
Dissolving microneedles made from natural polymers recently have gained much attention as an efficie...
The largest organ of the body provides the main challenge for the transdermal delivery of lipophilic...
The purpose of this study was to optimize the manufacturing of dissolving microneedles (dMNs) and to...
This study aims to explore the use of polymeric microneedles (MNs) for the transdermal delivery of d...
Super-swelling hydrogel-forming microneedles (HFMNs) based transdermal drug delivery (TDD) is gainin...
AbstractTransdermal drug delivery is an attractive route of drug administration; however, there are ...
Levothyroxine (LT-4) sodium has shown variable bioavailability following oral administration. This c...