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.

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