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Updated: Jun 6, 2025

A "Plug-And-Display" Nanoparticle Vaccine Platform Based on Outer Membrane Vesicles Displaying SARS-CoV-2 Receptor-Binding Domain
Published on: July 25, 2022
A Self-Adjuvanting Large Pore 2D Covalent Organic Framework as a Vaccine Platform
Yalini H Wijesundara1, Niyati Arora1, Ryanne N Ehrman1
1Department of Chemistry and Biochemistry, The University of Texas at Dallas, 800 West Campbell Rd, Richardson, 75080, TX, USA.
A novel covalent organic framework (COF) platform, PyCOFamide, enhances subunit vaccines by improving immune responses. This COF acts as an antigen reservoir and adjuvant, offering a safer and more effective vaccine approach.
Area of Science:
- Biotechnology
- Materials Science
- Immunology
Background:
- Traditional vaccines using live or inactivated pathogens pose risks and are costly.
- Subunit vaccines offer improved safety but often lack sufficient immunogenicity due to antigen size and short half-life.
Purpose of the Study:
- To introduce PyCOFamide, a 2D covalent organic framework (COF), as a novel platform for enhancing subunit vaccine efficacy.
- To evaluate the immunogenicity of an ovalbumin antigen adsorbed onto PyCOFamide (OVA@COF) compared to free ovalbumin.
Main Methods:
- Adsorption of a model antigen, ovalbumin (OVA), onto a large pore 2D covalent organic framework (PyCOFamide).
- Assessment of humoral and cell-mediated immune responses in vivo.
- Analysis of immune cell activation, antigen-presenting cell trafficking, and adjuvant effects of COF breakdown products.
Main Results:
- OVA@COF significantly enhanced both humoral and cell-mediated immune responses compared to free OVA.
- PyCOFamide acted as an antigen reservoir, promoting antigen-presenting cell migration to lymph nodes.
- Degradation of the COF released monomers that boosted immune cell activation, enhancing overall immunity.
Conclusions:
- PyCOFamide serves as a promising platform for developing safer and more effective subunit vaccines.
- The COF platform enhances immunogenicity through antigen presentation, immune cell trafficking, and adjuvant effects.
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