Cargando…

Emerging Trends in Lipid-Based Vaccine Delivery: A Special Focus on Developmental Strategies, Fabrication Methods, and Applications

Lipid-based vaccine delivery systems such as the conventional liposomes, virosomes, bilosomes, vesosomes, pH-fusogenic liposomes, transferosomes, immuno-liposomes, ethosomes, and lipid nanoparticles have gained a remarkable interest in vaccine delivery due to their ability to render antigens in vesi...

Descripción completa

Detalles Bibliográficos
Autores principales: Karunakaran, Bharathi, Gupta, Raghav, Patel, Pranav, Salave, Sagar, Sharma, Amit, Desai, Dhruv, Benival, Derajram, Kommineni, Nagavendra
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10051624/
https://www.ncbi.nlm.nih.gov/pubmed/36992244
http://dx.doi.org/10.3390/vaccines11030661
_version_ 1785014933165965312
author Karunakaran, Bharathi
Gupta, Raghav
Patel, Pranav
Salave, Sagar
Sharma, Amit
Desai, Dhruv
Benival, Derajram
Kommineni, Nagavendra
author_facet Karunakaran, Bharathi
Gupta, Raghav
Patel, Pranav
Salave, Sagar
Sharma, Amit
Desai, Dhruv
Benival, Derajram
Kommineni, Nagavendra
author_sort Karunakaran, Bharathi
collection PubMed
description Lipid-based vaccine delivery systems such as the conventional liposomes, virosomes, bilosomes, vesosomes, pH-fusogenic liposomes, transferosomes, immuno-liposomes, ethosomes, and lipid nanoparticles have gained a remarkable interest in vaccine delivery due to their ability to render antigens in vesicular structures, that in turn prevents its enzymatic degradation in vivo. The particulate form of lipid-based nanocarriers confers immunostimulatory potential, making them ideal antigen carriers. Facilitation in the uptake of antigen-loaded nanocarriers, by the antigen-presenting cells and its subsequent presentation through the major histocompatibility complex molecules, leads to the activation of a cascade of immune responses. Further, such nanocarriers can be tailored to achieve the desired characteristics such as charge, size, size distribution, entrapment, and site-specificity through modifications in the composition of lipids and the selection of the appropriate method of preparation. This ultimately adds to its versatility as an effective vaccine delivery carrier. The current review focuses on the various lipid-based carriers that have been investigated to date as potential vaccine delivery systems, the factors that affect their efficacy, and their various methods of preparation. The emerging trends in lipid-based mRNA vaccines and lipid-based DNA vaccines have also been summarized.
format Online
Article
Text
id pubmed-10051624
institution National Center for Biotechnology Information
language English
publishDate 2023
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-100516242023-03-30 Emerging Trends in Lipid-Based Vaccine Delivery: A Special Focus on Developmental Strategies, Fabrication Methods, and Applications Karunakaran, Bharathi Gupta, Raghav Patel, Pranav Salave, Sagar Sharma, Amit Desai, Dhruv Benival, Derajram Kommineni, Nagavendra Vaccines (Basel) Review Lipid-based vaccine delivery systems such as the conventional liposomes, virosomes, bilosomes, vesosomes, pH-fusogenic liposomes, transferosomes, immuno-liposomes, ethosomes, and lipid nanoparticles have gained a remarkable interest in vaccine delivery due to their ability to render antigens in vesicular structures, that in turn prevents its enzymatic degradation in vivo. The particulate form of lipid-based nanocarriers confers immunostimulatory potential, making them ideal antigen carriers. Facilitation in the uptake of antigen-loaded nanocarriers, by the antigen-presenting cells and its subsequent presentation through the major histocompatibility complex molecules, leads to the activation of a cascade of immune responses. Further, such nanocarriers can be tailored to achieve the desired characteristics such as charge, size, size distribution, entrapment, and site-specificity through modifications in the composition of lipids and the selection of the appropriate method of preparation. This ultimately adds to its versatility as an effective vaccine delivery carrier. The current review focuses on the various lipid-based carriers that have been investigated to date as potential vaccine delivery systems, the factors that affect their efficacy, and their various methods of preparation. The emerging trends in lipid-based mRNA vaccines and lipid-based DNA vaccines have also been summarized. MDPI 2023-03-15 /pmc/articles/PMC10051624/ /pubmed/36992244 http://dx.doi.org/10.3390/vaccines11030661 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Review
Karunakaran, Bharathi
Gupta, Raghav
Patel, Pranav
Salave, Sagar
Sharma, Amit
Desai, Dhruv
Benival, Derajram
Kommineni, Nagavendra
Emerging Trends in Lipid-Based Vaccine Delivery: A Special Focus on Developmental Strategies, Fabrication Methods, and Applications
title Emerging Trends in Lipid-Based Vaccine Delivery: A Special Focus on Developmental Strategies, Fabrication Methods, and Applications
title_full Emerging Trends in Lipid-Based Vaccine Delivery: A Special Focus on Developmental Strategies, Fabrication Methods, and Applications
title_fullStr Emerging Trends in Lipid-Based Vaccine Delivery: A Special Focus on Developmental Strategies, Fabrication Methods, and Applications
title_full_unstemmed Emerging Trends in Lipid-Based Vaccine Delivery: A Special Focus on Developmental Strategies, Fabrication Methods, and Applications
title_short Emerging Trends in Lipid-Based Vaccine Delivery: A Special Focus on Developmental Strategies, Fabrication Methods, and Applications
title_sort emerging trends in lipid-based vaccine delivery: a special focus on developmental strategies, fabrication methods, and applications
topic Review
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10051624/
https://www.ncbi.nlm.nih.gov/pubmed/36992244
http://dx.doi.org/10.3390/vaccines11030661
work_keys_str_mv AT karunakaranbharathi emergingtrendsinlipidbasedvaccinedeliveryaspecialfocusondevelopmentalstrategiesfabricationmethodsandapplications
AT guptaraghav emergingtrendsinlipidbasedvaccinedeliveryaspecialfocusondevelopmentalstrategiesfabricationmethodsandapplications
AT patelpranav emergingtrendsinlipidbasedvaccinedeliveryaspecialfocusondevelopmentalstrategiesfabricationmethodsandapplications
AT salavesagar emergingtrendsinlipidbasedvaccinedeliveryaspecialfocusondevelopmentalstrategiesfabricationmethodsandapplications
AT sharmaamit emergingtrendsinlipidbasedvaccinedeliveryaspecialfocusondevelopmentalstrategiesfabricationmethodsandapplications
AT desaidhruv emergingtrendsinlipidbasedvaccinedeliveryaspecialfocusondevelopmentalstrategiesfabricationmethodsandapplications
AT benivalderajram emergingtrendsinlipidbasedvaccinedeliveryaspecialfocusondevelopmentalstrategiesfabricationmethodsandapplications
AT kommineninagavendra emergingtrendsinlipidbasedvaccinedeliveryaspecialfocusondevelopmentalstrategiesfabricationmethodsandapplications