The skin is immunologically very potent because of the high number of antigen-presenting cells in the dermis and epidermis, and is therefore considered to be very suitable for vaccination. However, the skin's physical barrier, the stratum corneum, prevents foreign substances, including vaccines, from entering the skin. Microneedles, which are needle-like structures with dimensions in the micrometer range, form a relatively new approach to circumvent the stratum corneum, allowing for minimally invasive and pain-free vaccination. In this study, we tested ceramic nanoporous microneedle arrays (npMNAs), representing a novel microneedle-based drug delivery technology, for their ability to deliver the subunit vaccines diphtheria toxoid (DT) and t...
In the literature, several types of microneedles have been extensively described. However, porous mi...
In the literature, several types of microneedles have been extensively described. However, porous mi...
Transcutaneous immunization (TCI) is limited by poor permeation of macromolecules across the skin. M...
The skin is immunologically very potent because of the high number of antigen-presenting cells in th...
Abstract Current vaccination technology can advance from the use of novel ceramic nanoporous microne...
Abstract Current vaccination technology can advance from the use of novel ceramic nanoporous microne...
\u3cp\u3eAbstract Current vaccination technology can advance from the use of novel ceramic nanoporou...
Microneedle-based vaccination into skin has several advantages over vaccination using conventional n...
Microneedle-based vaccination into skin has several advantages over vaccination using conventional n...
Microneedle-based vaccination into skin has several advantages over vaccination using conventional n...
Microneedle arrays (MNAs) are a promising mean to administer vaccines. Without the need of highly tr...
Microneedle arrays (MNAs) are a promising mean to administer vaccines. Without the need of highly tr...
To examine the immunogenicity of diphtheria toxoid (DT) loaded mesoporous silica nanoparticles (MSNs...
Nanoporous microneedle arrays from Al2O3 were fabricated via a micromolding process using a PDMS mol...
Transcutaneous immunization (TCI) is limited by poor permeation of macromolecules across the skin. M...
In the literature, several types of microneedles have been extensively described. However, porous mi...
In the literature, several types of microneedles have been extensively described. However, porous mi...
Transcutaneous immunization (TCI) is limited by poor permeation of macromolecules across the skin. M...
The skin is immunologically very potent because of the high number of antigen-presenting cells in th...
Abstract Current vaccination technology can advance from the use of novel ceramic nanoporous microne...
Abstract Current vaccination technology can advance from the use of novel ceramic nanoporous microne...
\u3cp\u3eAbstract Current vaccination technology can advance from the use of novel ceramic nanoporou...
Microneedle-based vaccination into skin has several advantages over vaccination using conventional n...
Microneedle-based vaccination into skin has several advantages over vaccination using conventional n...
Microneedle-based vaccination into skin has several advantages over vaccination using conventional n...
Microneedle arrays (MNAs) are a promising mean to administer vaccines. Without the need of highly tr...
Microneedle arrays (MNAs) are a promising mean to administer vaccines. Without the need of highly tr...
To examine the immunogenicity of diphtheria toxoid (DT) loaded mesoporous silica nanoparticles (MSNs...
Nanoporous microneedle arrays from Al2O3 were fabricated via a micromolding process using a PDMS mol...
Transcutaneous immunization (TCI) is limited by poor permeation of macromolecules across the skin. M...
In the literature, several types of microneedles have been extensively described. However, porous mi...
In the literature, several types of microneedles have been extensively described. However, porous mi...
Transcutaneous immunization (TCI) is limited by poor permeation of macromolecules across the skin. M...