Related Experiment Video
Updated: Jun 14, 2026

Evaluating the Immune Response of a Nanoemulsion Adjuvant Vaccine Against Methicillin-Resistant Staphylococcus aureus (MRSA) Infection
Published on: September 1, 2023
Archaeal lipid mucosal vaccine adjuvant and delivery system
Girishchandra B Patel1, Wangxue Chen
1Institute for Biological Sciences, National Research Council Canada, 100 Sussex Drive, Ottawa, ON K1A 0R6, Canada. girish.patel@nrc-cnrc.gc.ca
Abstract:
Archaeal polar lipids are being evaluated as adjuvants/vaccine delivery systems for mucosal vaccines that can provide protection against pathogens that enter the human host via the mucosal surfaces. Archaeosomes, liposomes made from polar lipids extracted from Archaea, with encapsulated antigens elicit strong antigen-specific systemic immune responses upon systemic or intranasal immunization, but fail to generate mucosal immune responses. However, intranasal immunization of mice with the archaeal lipid mucosal vaccine adjuvant and delivery (AMVAD) system, obtained by the interaction of archaeosomes/antigens with multivalent cations, induces robust, antigen-specific IgA responses in nasal and vaginal mucosa, feces, bile, and serum. In addition, strong antigen-specific systemic antibody (serum IgG, IgG(1) and IgG(2a)) and cell-mediated responses, including CD8(+) cytotoxic T lymphocyte, are generated. The responses are sustained over time and are subject to good memory-boost responses. The AMVAD formulations are stable during storage, have a good safety profile and show protective efficacy in a murine model of infection/challenge.
More Related Videos
06:02Cationic Nanoemulsion-Encapsulated Retinoic Acid as an Adjuvant to Promote OVA-Specific Systemic and Mucosal Responses
Published on: February 23, 2024
12:53Cell-Free Scaled Production and Adjuvant Addition to a Recombinant Major Outer Membrane Protein from Chlamydia muridarum for Vaccine Development
Published on: March 16, 2022
Related Concept Videos
Surface Appendages of Archaea
Biosynthesis of Lipids
Archaeal Cell Wall
Formation of Lipopolysaccharides