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Updated: Oct 8, 2026

Surface Functionalization of Hepatitis E Virus Nanoparticles Using Chemical Conjugation Methods
Published on: May 11, 2018
A novel microencapsulated peptide vaccine against hepatitis B
J S Moynihan1, D H Jones, G H Farrar
1Department of Pathology and Infectious Diseases, Royal Veterinary College, Royal College Street, NW1 0TU, London, UK.
Abstract:
A 48 amino acid synthetic peptide (S121/48) representing residues 121-167 of the major envelope protein of hepatitis B virus (HBsAg) was successfully encapsulated into polylactide co-glycolide microspheres. A single immunization of the microspheres in BALB/c (H-2d) mice resulted in the production of high-titre anti-HBs antibodies (IgG1-type). The response was long lasting and was superior to that obtained using the same peptide adjuvanted with Freund's complete adjuvant. A T-cell memory response was detected 10 weeks after a booster immunization (approximately 35 weeks after initial immunization) as measured by in-vitro re-stimulation of splenocytes. This study illustrates the feasibility of a single dose vaccine for hepatitis B and is, to our knowledge, the first demonstration of a synthetic peptide immunogen inducing anti-native protein antibodies of comparable titre to those obtained with conventional vaccines for hepatitis B. The suitability of a synthetic peptide vaccine for hepatitis B is discussed.
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