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Expression and Purification of Virus-like Particles for Vaccination
Published on: June 2, 2016
Formulation and preclinical studies with a trivalent rotavirus P2-VP8 subunit vaccine
Kyle Lakatos1, David McAdams1, Jessica A White1
1Medical Devices and Health Technologies Global Program, Formulation Technologies, PATH , Seattle, WA, USA.
Insights
A new nonreplicating rotavirus vaccine (NRRV) administered parenterally shows promise for preventing childhood diarrhea. The NRRV formulation, using recombinant VP8* proteins and an aluminum adjuvant, enhanced immune responses in preclinical studies.
Area of Science:
- Vaccinology
- Pediatric Infectious Diseases
- Biotechnology
Background:
- Rotavirus causes significant diarrheal disease in young children, particularly in low-resource settings.
- Current oral rotavirus vaccines face challenges related to efficacy in diverse intestinal environments.
- Parenteral administration offers an alternative route to potentially improve vaccine effectiveness.
Purpose of the Study:
- To develop a trivalent nonreplicating rotavirus vaccine (NRRV) for parenteral administration.
- To combine prevalent rotavirus VP8* antigens with an adjuvant and immunodominant epitope for enhanced immunogenicity.
- To formulate and characterize a stable NRRV vaccine candidate.
Main Methods:
- Developed a trivalent NRRV using recombinant VP8* proteins (DS-1, 1076, Wa) and a P2 tetanus toxoid epitope.
- Selected aluminum hydroxide adjuvant and optimized buffer for antigen stability and binding.
- Assessed formulation stability under various temperature conditions.
- Evaluated immunogenicity in a guinea pig model, measuring neutralization titers.
Main Results:
- The NRRV liquid formulation demonstrated stability for one year at 2-8°C and four weeks at 37°C.
- The aluminum adjuvant increased neutralization titers by 20-fold against homologous antigen.
- The P2-fusion enhanced serum neutralizing antibody responses in the animal model.
Conclusions:
- The parenteral NRRV vaccine candidate, formulated with aluminum adjuvant and P2 epitope, shows promising immunogenicity.
- This formulation may overcome challenges associated with oral rotavirus vaccines.
- The vaccine candidate is advancing to human clinical trials for further evaluation.
Abstract:
More effective rotavirus vaccines are essential for preventing extensive diarrheal morbidity and mortality in children under five years of age in low-resource regions. Nonreplicating rotavirus vaccines (NRRV) administered parenterally provide an alternate vaccination method to the current licensed oral vaccine. Live attenuated vaccines and may generate increased efficacy in low-resource settings because the parenteral administration route bypasses some of the challenges associated with oral administration, including differences in intestinal environments. Work described here supports development of a trivalent NRRV vaccine for parenteral administration to avoid complications of the gastrointestinal route. Recombinant VP8* subunit proteins representing some of the most prevalent strains of rotavirus infecting humans - DS-1 (P[4]), 1076 (P[6]), and Wa (P[8]) - were combined with an aluminum adjuvant and the P2 epitope of tetanus toxoid to enhance the immune response to this NRRV antigen. Vaccine formulation development included selection of aluminum hydroxide (Alhydrogel®) as an appropriate adjuvant as well as an optimal buffer to maintain antigen stability and optimize antigen binding to the adjuvant. Characterization assays were used to select the lead vaccine formulation and monitor formulation stability. The NRRV liquid formulation was stable for one year at 2°C to 8°C and four weeks at 37°C. Immunogenicity of the NRRV formulation was evaluated using a guinea pig model, where we demonstrated that the adjuvant provided a 20-fold increase in neutralization titer against a homologous antigen and that the P2-fusion also enhanced the serum neutralizing antibody responses. This vaccine candidate is currently being evaluated in human clinical trials.
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