Development of vaccines in autoimmune diseases has received wide attention over the last decade. However, many vaccines showed limited clinical efficacy. To enhance vaccine efficacy in infectious diseases, biocompatible and biodegradable polymeric nanoparticles have gained interest as antigen delivery systems. We investigated in mice whether antigen-encapsulated PLGA (poly-lactic-co-glycolic acid), PLGA-TMC (N-trimethyl chitosan) or TMC-TPP (tri-polyphosphate) nanoparticles can also be used to modulate the immunological outcome after nasal vaccination. These three nanoparticles enhanced the antigen presentation by dendritic cells, as shown by increased in vitro and in vivo CD4(+) T-cell proliferation. However, only nasal PLGA nanoparticles ...
Background: Poly(D, L-lactic-co-glycolic acid) (PLGA) nanoparticles have potential applications as a...
In this study, the potential of N-trimethyl chitosan (TMC) nanoparticles as a carrier system for the...
Aim: To develop novel polymer-based nanoscale delivery system for lipopeptide-based vaccine against ...
Nasal vaccination is a promising, needle-free alternative to classical vaccination. Nanoparticulate ...
The continuous emergence of new pathogens and growing drug resistance of microorganisms asks for inn...
The continuous emergence of new pathogens and growing drug resistance of microorganisms asks for inn...
The aim of this work was the assessment of the "in vivo" immune response of a poly(lactide-co-glycol...
The aim of this work was the assessment of the "in vivo" immune response of a poly(lactide-co-glycol...
The aim of this work was the assessment of the "in vivo" immune response of a poly(lactide-co-glycol...
Entrapment of antigens in mucoadhesive nanoparticles prepared from N-trimethyl chitosan (TMC) has be...
Most vaccines are administered parentally since they are absorbed poorly at mucosal sites. However, ...
Tolerogenic vaccines are aimed at inhibiting antigen-specific immune responses. Antigen-loaded nanop...
AIM: Dendritic cells rapidly capture nanoparticles and induce a potent cellular immune response. It ...
In this study, the potential of N-trimethyl chitosan (TMC) nanoparticles as a carrier system for the...
Peptide-based vaccines have the potential to overcome the limitations of classical vaccines; however...
Background: Poly(D, L-lactic-co-glycolic acid) (PLGA) nanoparticles have potential applications as a...
In this study, the potential of N-trimethyl chitosan (TMC) nanoparticles as a carrier system for the...
Aim: To develop novel polymer-based nanoscale delivery system for lipopeptide-based vaccine against ...
Nasal vaccination is a promising, needle-free alternative to classical vaccination. Nanoparticulate ...
The continuous emergence of new pathogens and growing drug resistance of microorganisms asks for inn...
The continuous emergence of new pathogens and growing drug resistance of microorganisms asks for inn...
The aim of this work was the assessment of the "in vivo" immune response of a poly(lactide-co-glycol...
The aim of this work was the assessment of the "in vivo" immune response of a poly(lactide-co-glycol...
The aim of this work was the assessment of the "in vivo" immune response of a poly(lactide-co-glycol...
Entrapment of antigens in mucoadhesive nanoparticles prepared from N-trimethyl chitosan (TMC) has be...
Most vaccines are administered parentally since they are absorbed poorly at mucosal sites. However, ...
Tolerogenic vaccines are aimed at inhibiting antigen-specific immune responses. Antigen-loaded nanop...
AIM: Dendritic cells rapidly capture nanoparticles and induce a potent cellular immune response. It ...
In this study, the potential of N-trimethyl chitosan (TMC) nanoparticles as a carrier system for the...
Peptide-based vaccines have the potential to overcome the limitations of classical vaccines; however...
Background: Poly(D, L-lactic-co-glycolic acid) (PLGA) nanoparticles have potential applications as a...
In this study, the potential of N-trimethyl chitosan (TMC) nanoparticles as a carrier system for the...
Aim: To develop novel polymer-based nanoscale delivery system for lipopeptide-based vaccine against ...