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A Biomimetic, Silaffin R5-Based Antigen Delivery Platform.

Daniela ReichingerManuel ReithoferMariam HohagenMirjana DrinicJoshua TobiasUrsula WiedermannFreddy KleitzBeatrice Jahn-SchmidChristian F W Becker
Published in: Pharmaceutics (2022)
Nature offers a wide range of evolutionary optimized materials that combine unique properties with intrinsic biocompatibility and that can be exploited as biomimetic materials. The R5 and RRIL peptides employed here are derived from silaffin proteins that play a crucial role in the biomineralization of marine diatom silica shells and are also able to form silica materials in vitro. Here, we demonstrate the application of biomimetic silica particles as a vaccine delivery and adjuvant platform by linking the precipitating peptides R5 and the RRIL motif to a variety of peptide antigens. The resulting antigen-loaded silica particles combine the advantages of biomaterial-based vaccines with the proven intracellular uptake of silica particles. These particles induce NETosis in human neutrophils as well as IL-6 and TNF-α secretion in murine bone marrow-derived dendritic cells.
Keyphrases
  • dendritic cells
  • high throughput
  • early stage
  • rheumatoid arthritis
  • regulatory t cells
  • genome wide
  • cancer therapy