Oral administration of vaccines has been limited due to low immune response compared to parenteral administration. Antigen degradation in the acidic gastrointestinal environment (GI), mucus barriers, and inefficient cellular uptake by immune cells are the major challenges for oral vaccine delivery. To solve these issues, the current study investigates calcium phosphate nano-particles (CaP NPs) coated with polysaccharides as nano-carriers for oral protein antigen delivery. In this design, the CaP NP core had an optimized antigen encapsulation capacity of 90 mg (BSA-FITC)/g (CaP NPs). The polysaccharides chitosan and alginate were coated onto the CaP NPs to protect the antigens against acidic degradation in the GI environment and enhance the ...
Thesis (Ph.D.)--University of Washington, 2013Subunit and inactivated vaccines are a safer but less ...
Previously we reported that calcium phosphate nanoparticles (CAP) represented a superior alternative...
Particle-based delivery systems are a promising approach to enhance antigen-specific immunity for us...
Oral vaccines delivery is an attractive alternative to parenteral route for vaccination but is limit...
For oral vaccination, incorporation of antigens into nanoparticles has been shown to protect the ant...
The design of particulate vaccine delivery systems, particularly for mucosal surfaces, has been a fo...
It has been found that the adsorption of antigens onto chitosan particles is an easy and unique mild...
Mucosal vaccination is a promising alternative to classical parental vaccination, as it is non-invas...
Orally administered antigens are known to induce mucosal and systemic immune responses. Biodegradabl...
© 2019 Zhe SunDespite the recent advances in cancer treatment, this disease continues to pose a seri...
Layered double hydroxide nanoparticles (LDHs) have shown the excellent capability and good adjuvant ...
Most infectious diseases are caused by pathogenic infiltrations from the mucosal tract. Therefore, v...
A successful potent vaccine for protection against the faecal-oral pathogen human Enterovirus 71, re...
Most vaccines are administered parentally since they are absorbed poorly at mucosal sites. However, ...
Mucosal surfaces are the first site of infection for most infectious diseases and oral vaccination c...
Thesis (Ph.D.)--University of Washington, 2013Subunit and inactivated vaccines are a safer but less ...
Previously we reported that calcium phosphate nanoparticles (CAP) represented a superior alternative...
Particle-based delivery systems are a promising approach to enhance antigen-specific immunity for us...
Oral vaccines delivery is an attractive alternative to parenteral route for vaccination but is limit...
For oral vaccination, incorporation of antigens into nanoparticles has been shown to protect the ant...
The design of particulate vaccine delivery systems, particularly for mucosal surfaces, has been a fo...
It has been found that the adsorption of antigens onto chitosan particles is an easy and unique mild...
Mucosal vaccination is a promising alternative to classical parental vaccination, as it is non-invas...
Orally administered antigens are known to induce mucosal and systemic immune responses. Biodegradabl...
© 2019 Zhe SunDespite the recent advances in cancer treatment, this disease continues to pose a seri...
Layered double hydroxide nanoparticles (LDHs) have shown the excellent capability and good adjuvant ...
Most infectious diseases are caused by pathogenic infiltrations from the mucosal tract. Therefore, v...
A successful potent vaccine for protection against the faecal-oral pathogen human Enterovirus 71, re...
Most vaccines are administered parentally since they are absorbed poorly at mucosal sites. However, ...
Mucosal surfaces are the first site of infection for most infectious diseases and oral vaccination c...
Thesis (Ph.D.)--University of Washington, 2013Subunit and inactivated vaccines are a safer but less ...
Previously we reported that calcium phosphate nanoparticles (CAP) represented a superior alternative...
Particle-based delivery systems are a promising approach to enhance antigen-specific immunity for us...