Virus-like particles: preparation, immunogenicity and their roles as nanovaccines and drug nanocarriers

Вирусоподобные частицы: получение, иммуногенность и их роль в качестве нановацин и нанопереносчиков лекарственных средств
Saghi Nooraei, Howra Bahrulolum, Zakieh Sadat Hoseini, Camellia Katalani, Abbas Hajizade, Andrew J. Easton, Gholamreza Ahmadian
2021-02-25

drug deliveryhumoral and cellular immunitynanovaccinestargeted gene therapyvirus-like particles
Virus-like particles (VLPs) are virus-derived structures made up of one or more different molecules with the ability to self-assemble, mimicking the form and size of a virus particle but lacking the genetic material so they are not capable of infecting the host cell. Expression and self-assembly of the viral structural proteins can take place in various living or cell-free expression systems after which the viral structures can be assembled and reconstructed. VLPs are gaining in popularity in the field of preventive medicine and to date, a wide range of VLP-based candidate vaccines have been developed for immunization against various infectious agents, the latest of which is the vaccine against SARS-CoV-2, the efficacy of which is being evaluated. VLPs are highly immunogenic and are able to elicit both the antibody- and cell-mediated immune responses by pathways different from those elicited by conventional inactivated viral vaccines. However, there are still many challenges to this surface display system that need to be addressed in the future. VLPs that are classified as subunit vaccines are subdivided into enveloped and non- enveloped subtypes both of which are discussed in this review article. VLPs have also recently received attention for their successful applications in targeted drug delivery and for use in gene therapy. The development of more effective and targeted forms of VLP by modification of the surface of the particles in such a way that they can be introduced into specific cells or tissues or increase their half-life in the host is likely to expand their use in the future. Recent advances in the production and fabrication of VLPs including the exploration of different types of expression systems for their development, as well as their applications as vaccines in the prevention of infectious diseases and cancers resulting from their interaction with, and mechanism of activation of, the humoral and cellular immune systems are discussed in this review.
1
Surface-engineered VLPs show promise for targeted drug delivery and gene therapy, although challenges remain in improving tissue specificity and host half-life.
2
VLP-based candidate vaccines have been developed against diverse infectious agents, including SARS-CoV-2, whose efficacy is still being evaluated.
3
VLPs are highly immunogenic and stimulate both antibody-mediated and cell-mediated immune responses through pathways distinct from conventional inactivated viral vaccines.
4
VLPs can be produced using diverse living or cell-free expression systems, enabling reconstruction of enveloped and non-enveloped vaccine platforms.
5
Virus-like particles self-assemble from viral structural proteins while lacking genetic material, making them noninfectious virus-mimicking platforms.

Virus-like particles (VLPs)

Their preparation, immunogenicity, and applications as nanovaccines and targeted drug nanocarriers, including mechanisms of humoral and cellular immune activation

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2021-02-25
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Saghi Nooraei
Howra Bahrulolum
Zakieh Sadat Hoseini
Camellia Katalani
Abbas Hajizade
Andrew J. Easton
Gholamreza Ahmadian
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