Cargando…

A micro-electroporation/electrophoresis-based vaccine screening system reveals the impact of vaccination orders on cross-protective immunity

The constant emergence of mutated pathogens poses great challenges to the existing vaccine system. A screening system is needed to screen for antigen designs and vaccination strategies capable of inducing cross-protective immunity. Herein, we report a screening system based on DNA vaccines and a mic...

Descripción completa

Detalles Bibliográficos
Autores principales: Li, Yongyong, Mo, Jingshan, Liu, Jing, Liang, Ying, Deng, Caiguanxi, Huang, Zhangping, Jiang, Juan, Liu, Ming, Liu, Xinmin, Shang, Liru, Wang, Xiafeng, Xie, Xi, Wang, Ji
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10582514/
https://www.ncbi.nlm.nih.gov/pubmed/37860767
http://dx.doi.org/10.1016/j.isci.2023.108086
_version_ 1785122348873023488
author Li, Yongyong
Mo, Jingshan
Liu, Jing
Liang, Ying
Deng, Caiguanxi
Huang, Zhangping
Jiang, Juan
Liu, Ming
Liu, Xinmin
Shang, Liru
Wang, Xiafeng
Xie, Xi
Wang, Ji
author_facet Li, Yongyong
Mo, Jingshan
Liu, Jing
Liang, Ying
Deng, Caiguanxi
Huang, Zhangping
Jiang, Juan
Liu, Ming
Liu, Xinmin
Shang, Liru
Wang, Xiafeng
Xie, Xi
Wang, Ji
author_sort Li, Yongyong
collection PubMed
description The constant emergence of mutated pathogens poses great challenges to the existing vaccine system. A screening system is needed to screen for antigen designs and vaccination strategies capable of inducing cross-protective immunity. Herein, we report a screening system based on DNA vaccines and a micro-electroporation/electrophoresis system (MEES), which greatly improved the efficacy of DNA vaccines, elevating humoral and cellular immune responses by over 400- and 35-fold respectively. Eighteen vaccination strategies were screened simultaneously by sequential immunization with vaccines derived from wildtype (WT) SARS-CoV-2, Delta, or Omicron BA.1 variant. Sequential vaccination of BA.1-WT-Delta vaccines with MEES induced potent neutralizing antibodies against all three viral strains and BA.5 variant, demonstrating that cross-protective immunity against future mutants can be successfully induced by existing strain-derived vaccines when a proper combination and order of sequential vaccination are used. Our screening system could be used for fast-seeking vaccination strategies for emerging pathogens in the future.
format Online
Article
Text
id pubmed-10582514
institution National Center for Biotechnology Information
language English
publishDate 2023
publisher Elsevier
record_format MEDLINE/PubMed
spelling pubmed-105825142023-10-19 A micro-electroporation/electrophoresis-based vaccine screening system reveals the impact of vaccination orders on cross-protective immunity Li, Yongyong Mo, Jingshan Liu, Jing Liang, Ying Deng, Caiguanxi Huang, Zhangping Jiang, Juan Liu, Ming Liu, Xinmin Shang, Liru Wang, Xiafeng Xie, Xi Wang, Ji iScience Article The constant emergence of mutated pathogens poses great challenges to the existing vaccine system. A screening system is needed to screen for antigen designs and vaccination strategies capable of inducing cross-protective immunity. Herein, we report a screening system based on DNA vaccines and a micro-electroporation/electrophoresis system (MEES), which greatly improved the efficacy of DNA vaccines, elevating humoral and cellular immune responses by over 400- and 35-fold respectively. Eighteen vaccination strategies were screened simultaneously by sequential immunization with vaccines derived from wildtype (WT) SARS-CoV-2, Delta, or Omicron BA.1 variant. Sequential vaccination of BA.1-WT-Delta vaccines with MEES induced potent neutralizing antibodies against all three viral strains and BA.5 variant, demonstrating that cross-protective immunity against future mutants can be successfully induced by existing strain-derived vaccines when a proper combination and order of sequential vaccination are used. Our screening system could be used for fast-seeking vaccination strategies for emerging pathogens in the future. Elsevier 2023-09-28 /pmc/articles/PMC10582514/ /pubmed/37860767 http://dx.doi.org/10.1016/j.isci.2023.108086 Text en © 2023 The Author(s) https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Article
Li, Yongyong
Mo, Jingshan
Liu, Jing
Liang, Ying
Deng, Caiguanxi
Huang, Zhangping
Jiang, Juan
Liu, Ming
Liu, Xinmin
Shang, Liru
Wang, Xiafeng
Xie, Xi
Wang, Ji
A micro-electroporation/electrophoresis-based vaccine screening system reveals the impact of vaccination orders on cross-protective immunity
title A micro-electroporation/electrophoresis-based vaccine screening system reveals the impact of vaccination orders on cross-protective immunity
title_full A micro-electroporation/electrophoresis-based vaccine screening system reveals the impact of vaccination orders on cross-protective immunity
title_fullStr A micro-electroporation/electrophoresis-based vaccine screening system reveals the impact of vaccination orders on cross-protective immunity
title_full_unstemmed A micro-electroporation/electrophoresis-based vaccine screening system reveals the impact of vaccination orders on cross-protective immunity
title_short A micro-electroporation/electrophoresis-based vaccine screening system reveals the impact of vaccination orders on cross-protective immunity
title_sort micro-electroporation/electrophoresis-based vaccine screening system reveals the impact of vaccination orders on cross-protective immunity
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10582514/
https://www.ncbi.nlm.nih.gov/pubmed/37860767
http://dx.doi.org/10.1016/j.isci.2023.108086
work_keys_str_mv AT liyongyong amicroelectroporationelectrophoresisbasedvaccinescreeningsystemrevealstheimpactofvaccinationordersoncrossprotectiveimmunity
AT mojingshan amicroelectroporationelectrophoresisbasedvaccinescreeningsystemrevealstheimpactofvaccinationordersoncrossprotectiveimmunity
AT liujing amicroelectroporationelectrophoresisbasedvaccinescreeningsystemrevealstheimpactofvaccinationordersoncrossprotectiveimmunity
AT liangying amicroelectroporationelectrophoresisbasedvaccinescreeningsystemrevealstheimpactofvaccinationordersoncrossprotectiveimmunity
AT dengcaiguanxi amicroelectroporationelectrophoresisbasedvaccinescreeningsystemrevealstheimpactofvaccinationordersoncrossprotectiveimmunity
AT huangzhangping amicroelectroporationelectrophoresisbasedvaccinescreeningsystemrevealstheimpactofvaccinationordersoncrossprotectiveimmunity
AT jiangjuan amicroelectroporationelectrophoresisbasedvaccinescreeningsystemrevealstheimpactofvaccinationordersoncrossprotectiveimmunity
AT liuming amicroelectroporationelectrophoresisbasedvaccinescreeningsystemrevealstheimpactofvaccinationordersoncrossprotectiveimmunity
AT liuxinmin amicroelectroporationelectrophoresisbasedvaccinescreeningsystemrevealstheimpactofvaccinationordersoncrossprotectiveimmunity
AT shangliru amicroelectroporationelectrophoresisbasedvaccinescreeningsystemrevealstheimpactofvaccinationordersoncrossprotectiveimmunity
AT wangxiafeng amicroelectroporationelectrophoresisbasedvaccinescreeningsystemrevealstheimpactofvaccinationordersoncrossprotectiveimmunity
AT xiexi amicroelectroporationelectrophoresisbasedvaccinescreeningsystemrevealstheimpactofvaccinationordersoncrossprotectiveimmunity
AT wangji amicroelectroporationelectrophoresisbasedvaccinescreeningsystemrevealstheimpactofvaccinationordersoncrossprotectiveimmunity
AT liyongyong microelectroporationelectrophoresisbasedvaccinescreeningsystemrevealstheimpactofvaccinationordersoncrossprotectiveimmunity
AT mojingshan microelectroporationelectrophoresisbasedvaccinescreeningsystemrevealstheimpactofvaccinationordersoncrossprotectiveimmunity
AT liujing microelectroporationelectrophoresisbasedvaccinescreeningsystemrevealstheimpactofvaccinationordersoncrossprotectiveimmunity
AT liangying microelectroporationelectrophoresisbasedvaccinescreeningsystemrevealstheimpactofvaccinationordersoncrossprotectiveimmunity
AT dengcaiguanxi microelectroporationelectrophoresisbasedvaccinescreeningsystemrevealstheimpactofvaccinationordersoncrossprotectiveimmunity
AT huangzhangping microelectroporationelectrophoresisbasedvaccinescreeningsystemrevealstheimpactofvaccinationordersoncrossprotectiveimmunity
AT jiangjuan microelectroporationelectrophoresisbasedvaccinescreeningsystemrevealstheimpactofvaccinationordersoncrossprotectiveimmunity
AT liuming microelectroporationelectrophoresisbasedvaccinescreeningsystemrevealstheimpactofvaccinationordersoncrossprotectiveimmunity
AT liuxinmin microelectroporationelectrophoresisbasedvaccinescreeningsystemrevealstheimpactofvaccinationordersoncrossprotectiveimmunity
AT shangliru microelectroporationelectrophoresisbasedvaccinescreeningsystemrevealstheimpactofvaccinationordersoncrossprotectiveimmunity
AT wangxiafeng microelectroporationelectrophoresisbasedvaccinescreeningsystemrevealstheimpactofvaccinationordersoncrossprotectiveimmunity
AT xiexi microelectroporationelectrophoresisbasedvaccinescreeningsystemrevealstheimpactofvaccinationordersoncrossprotectiveimmunity
AT wangji microelectroporationelectrophoresisbasedvaccinescreeningsystemrevealstheimpactofvaccinationordersoncrossprotectiveimmunity