At the University of Oxford and PowderJect Pharmaceuticals plc, a unique form of needle-free injection technology has been developed. Powdered vaccines and drugs in micro-particle form are accelerated in a high-speed gas flow to sufficient velocity to enter the skin, subsequently achieving a pharmaceutical effect. To optimize the delivery of vaccines and drugs with this method a detailed understanding of the interactive processes that occur between the microparticles and the skin is necessary. Investigations to date of micro-particle delivery into excised human and animal tissue have involved image analyses of histology sections. In the present study, a series of investigations were conducted on excised human and porcine skin using the tech...
Particle-based drug delivery systems target active compounds to the hair follicle and may result in ...
Encapsulation using nanoparticulate systems is an increasingly implemented strategy in drug targetin...
Abstract Microneedles (MNs) have been shown to enhance the penetration depths of microparticles deli...
Multiphoton laser scanning microscopy (MPLSM) has been adapted to non-invasively characterize hand-h...
Multiphoton microscopy of a dually fluorescence-labeled model system in excised human skin is employ...
Multiphoton microscopy (MPM) of a dually fluorescence-labeled model system in excised human skin is ...
The effectiveness of ballistic particle delivery to the skin is often dependent upon breaching the s...
A set of laboratory experiments has been carried out to determine if micro-needles (MNs) can enhance...
This study experimentally evaluates the self-targeting ability of asiaticoside-loaded nanoemulsions ...
Using nanoparticulate systems for transdermal delivery has emerged as an increasingly important appr...
A unique form of needle-free drug and vaccine delivery is under investigation. The principle of the ...
Nanodermatology is a rapidly emerging field of study receiving significant interest because of its p...
The development of novel cutaneous delivery technologies that can produce micron-sized channels with...
The skin is a large and accessible area of the body, offering the possibility to be used as an alter...
WOS: 000336904200008PubMed ID: 24510225The purpose of this study was to develop micro and nano sized...
Particle-based drug delivery systems target active compounds to the hair follicle and may result in ...
Encapsulation using nanoparticulate systems is an increasingly implemented strategy in drug targetin...
Abstract Microneedles (MNs) have been shown to enhance the penetration depths of microparticles deli...
Multiphoton laser scanning microscopy (MPLSM) has been adapted to non-invasively characterize hand-h...
Multiphoton microscopy of a dually fluorescence-labeled model system in excised human skin is employ...
Multiphoton microscopy (MPM) of a dually fluorescence-labeled model system in excised human skin is ...
The effectiveness of ballistic particle delivery to the skin is often dependent upon breaching the s...
A set of laboratory experiments has been carried out to determine if micro-needles (MNs) can enhance...
This study experimentally evaluates the self-targeting ability of asiaticoside-loaded nanoemulsions ...
Using nanoparticulate systems for transdermal delivery has emerged as an increasingly important appr...
A unique form of needle-free drug and vaccine delivery is under investigation. The principle of the ...
Nanodermatology is a rapidly emerging field of study receiving significant interest because of its p...
The development of novel cutaneous delivery technologies that can produce micron-sized channels with...
The skin is a large and accessible area of the body, offering the possibility to be used as an alter...
WOS: 000336904200008PubMed ID: 24510225The purpose of this study was to develop micro and nano sized...
Particle-based drug delivery systems target active compounds to the hair follicle and may result in ...
Encapsulation using nanoparticulate systems is an increasingly implemented strategy in drug targetin...
Abstract Microneedles (MNs) have been shown to enhance the penetration depths of microparticles deli...