Outer Membrane Vesicle Induction and Isolation for Vaccine Development
Publication date
2021-02-04
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Abstract
Gram-negative bacteria release vesicular structures from their outer membrane, so called outer membrane vesicles (OMVs). OMVs have a variety of functions such as waste disposal, communication, and antigen or toxin delivery. These vesicles are the promising structures for vaccine development since OMVs carry many surface antigens that are identical to the bacterial surface. However, isolation is often difficult and results in low yields. Several methods to enhance OMV yield exist, but these do affect the resulting OMVs. In this review, our current knowledge about OMVs will be presented. Different methods to induce OMVs will be reviewed and their advantages and disadvantages will be discussed. The effects of the induction and isolation methods used in several immunological studies on OMVs will be compared. Finally, the challenges for OMV-based vaccine development will be examined and one example of a successful OMV-based vaccine will be presented.
Keywords
Bordetella pertussis, Neisseria meningitidis, host defense peptides, induction, isolation, outer membrane vesicles, vaccine development, Microbiology, Microbiology (medical), SDG 3 - Good Health and Well-being
Citation
Balhuizen, M D, Veldhuizen, E J A & Haagsman, H P 2021, 'Outer Membrane Vesicle Induction and Isolation for Vaccine Development', Frontiers in Microbiology, vol. 12, 629090, pp. 1-14. https://doi.org/10.3389/fmicb.2021.629090