COVID-19 vaccines: Development, strategies, types and vaccine usage hesitancy

Vaccine development using different platforms is one of the important strategies to address coronavirus disease pandemic. The global need for vaccines requires effective vaccine approaches and collaboration between pharmaceutical and biotechnological companies, governments and the industrial and aca...

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Main Authors: Ayisha Shaukat, Khalid Hussain, Naureen Shehzadi
Format: Article
Language:English
Published: Finlay Ediciones 2021-09-01
Series:VacciMonitor
Subjects:
Online Access:http://scielo.sld.cu/scielo.php?script=sci_arttext&pid=S1025-028X2021000300145&lng=es&nrm=iso&tlng=en
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spelling doaj-b1c46ddd083349fbb49b13ad781dd6df2021-09-28T20:30:07ZengFinlay EdicionesVacciMonitor1025-028X1025-02982021-09-01303145152COVID-19 vaccines: Development, strategies, types and vaccine usage hesitancyAyisha Shaukat0https://orcid.org/0000-0003-1649-1628Khalid Hussain1https://orcid.org/0000-0001-9627-8346Naureen Shehzadi2https://orcid.org/0000-0001-6688-3289Punjab University, College of Pharmacy, PakistanPunjab University, College of Pharmacy, PakistanPunjab University, College of Pharmacy, PakistanVaccine development using different platforms is one of the important strategies to address coronavirus disease pandemic. The global need for vaccines requires effective vaccine approaches and collaboration between pharmaceutical and biotechnological companies, governments and the industrial and academic sectors. About 72% of the vaccine candidates are being developed by the private sector, while 28% are carried out by the public sector and different non-profit organizations. COVID-19 vaccines are based on complete viruses (inactivated or attenuated), viral vectors (replicating or not), antigenic subunits (proteins or peptides), nucleic acids (RNA or DNA) or virus-like particles. Important aspects of vaccine development include manufacturing flexibility, speed, cost, safety, cellular and humoral immunogenicity, vaccine stability and cold chain maintenance. Vaccines can be prepared using different manufacturing platforms, computational biology, gene synthesis, structure-based antigen design and protein engineering. Individual confidence, convenience and complacency are factors that affect the attitude towards acceptance of COVID-19 vaccination. This could be complicated by socio-demographic, psychologic, cognitive and cultural factors.http://scielo.sld.cu/scielo.php?script=sci_arttext&pid=S1025-028X2021000300145&lng=es&nrm=iso&tlng=encovid-19sars-cov-2vaccinesimmunity
collection DOAJ
language English
format Article
sources DOAJ
author Ayisha Shaukat
Khalid Hussain
Naureen Shehzadi
spellingShingle Ayisha Shaukat
Khalid Hussain
Naureen Shehzadi
COVID-19 vaccines: Development, strategies, types and vaccine usage hesitancy
VacciMonitor
covid-19
sars-cov-2
vaccines
immunity
author_facet Ayisha Shaukat
Khalid Hussain
Naureen Shehzadi
author_sort Ayisha Shaukat
title COVID-19 vaccines: Development, strategies, types and vaccine usage hesitancy
title_short COVID-19 vaccines: Development, strategies, types and vaccine usage hesitancy
title_full COVID-19 vaccines: Development, strategies, types and vaccine usage hesitancy
title_fullStr COVID-19 vaccines: Development, strategies, types and vaccine usage hesitancy
title_full_unstemmed COVID-19 vaccines: Development, strategies, types and vaccine usage hesitancy
title_sort covid-19 vaccines: development, strategies, types and vaccine usage hesitancy
publisher Finlay Ediciones
series VacciMonitor
issn 1025-028X
1025-0298
publishDate 2021-09-01
description Vaccine development using different platforms is one of the important strategies to address coronavirus disease pandemic. The global need for vaccines requires effective vaccine approaches and collaboration between pharmaceutical and biotechnological companies, governments and the industrial and academic sectors. About 72% of the vaccine candidates are being developed by the private sector, while 28% are carried out by the public sector and different non-profit organizations. COVID-19 vaccines are based on complete viruses (inactivated or attenuated), viral vectors (replicating or not), antigenic subunits (proteins or peptides), nucleic acids (RNA or DNA) or virus-like particles. Important aspects of vaccine development include manufacturing flexibility, speed, cost, safety, cellular and humoral immunogenicity, vaccine stability and cold chain maintenance. Vaccines can be prepared using different manufacturing platforms, computational biology, gene synthesis, structure-based antigen design and protein engineering. Individual confidence, convenience and complacency are factors that affect the attitude towards acceptance of COVID-19 vaccination. This could be complicated by socio-demographic, psychologic, cognitive and cultural factors.
topic covid-19
sars-cov-2
vaccines
immunity
url http://scielo.sld.cu/scielo.php?script=sci_arttext&pid=S1025-028X2021000300145&lng=es&nrm=iso&tlng=en
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