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Updated: May 5, 2026

Enhanced Rabies Surveillance Using a Direct Rapid Immunohistochemical Test
Published on: April 30, 2019
Superior immune responses from thermostable, single-administration rabies vaccines prepared using atomic layer
Theodore Randolph1, Holly Coleman1, Amber M Rauch2
1Department of Chemical and Biological Engineering, University of Colorado Boulder, CO 80303, USA.
None:
Shortcomings of current rabies virus (RABV) vaccines include thermal instability and the need for multiple injections to achieve protective immune responses. To overcome these drawbacks we describe a single-administration vaccine formulation prepared using a combination of spray-drying and atomic layer deposition (ALD) technologies. First, an inactivated RABV antigen is spray-dried from polysaccharide solutions to create glassy microparticles. ALD in a fluidized bed reactor is then used to deposit nanoscopic layers of alumina onto particle surfaces. The nanoscopic alumina coatings deposited by ALD provide a programmable delayed release of RABV antigen that enable both prime and boost vaccine functionality within a single injection. Immune responses to the resulting vaccines were tested following intramuscular administration in mice by measuring total anti-rabies IgG titers as well as neutralizing antibody titers. The immune responses to the spray-dried vaccines were unaffected by storage of the vaccines for 3 months at temperatures as high as 50 °C. ALD-coated rabies vaccine microparticles were also thermostable, with no changes in immunogenicity apparent after 3 months storage at 50 °C. Moreover, ALD-coated RABV vaccine microparticles induced IgG and neutralizing antibody titers nearly an order of magnitude higher than those generated in response to conventional liquid RABV vaccine formulations. Thus, spray-dried and ALD-coated RABV vaccine microparticle formulations offer both thermostability and superior immunogenicity from single vaccine administrations, with the potential for relaxed vaccine cold-chain requirements, antigen-sparing efficacy, and a reduced need for multiple administrations.

