Vaccines (Jul 2024)

Demonstration of Tunable Control over a Delayed-Release Vaccine Using Atomic Layer Deposition

  • Sky W. Brubaker,
  • Isabella R. Walters,
  • Emily M. Hite,
  • Lorena R. Antunez,
  • Emma L. Palm,
  • Hans H. Funke,
  • Bryan L. Steadman

DOI
https://doi.org/10.3390/vaccines12070761
Journal volume & issue
Vol. 12, no. 7
p. 761

Abstract

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Many vaccines require multiple doses for full efficacy, posing a barrier for patient adherence and protection. One solution to achieve full vaccination may be attained with single-administration vaccines containing multiple controlled release doses. In this study, delayed-release vaccines were generated using atomic layer deposition (ALD) to coat antigen-containing powders with alumina. Using in vitro and in vivo methods, we show that increasing the coat thickness controls the kinetics of antigen release and antibody response, ranging from weeks to months. Our results establish an in vitro–in vivo correlation with a level of tunable control over the antigen release and antibody response times with the potential to impact future vaccine design.

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