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Fast DNA Vaccination Strategy Elicits a Stronger Immune Response Dependent on CD8(+)CD11c(+) Cell Accumulation

Conventional DNA vaccine strategies usually employ a regimen of immunizations at 2-week or longer intervals to induce effective memory cell-dependent immune responses. Clinical cancer treatment requires a faster immunization strategy to contend with tumor progression. In this study, a novel fast imm...

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Autores principales: Liu, Chenlu, Cong, Xianling, Wang, Yuqian, Guo, Qianqian, Xie, Yu, Geng, Fei, Guo, Jie, Dong, Ling, Zhou, Yi, Wu, Hui, Yu, Bin, Wu, Jiaxin, Zhang, Haihong, Yu, Xianghui, Kong, Wei
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8691261/
https://www.ncbi.nlm.nih.gov/pubmed/34950581
http://dx.doi.org/10.3389/fonc.2021.752444
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author Liu, Chenlu
Cong, Xianling
Wang, Yuqian
Guo, Qianqian
Xie, Yu
Geng, Fei
Guo, Jie
Dong, Ling
Zhou, Yi
Wu, Hui
Yu, Bin
Wu, Jiaxin
Zhang, Haihong
Yu, Xianghui
Kong, Wei
author_facet Liu, Chenlu
Cong, Xianling
Wang, Yuqian
Guo, Qianqian
Xie, Yu
Geng, Fei
Guo, Jie
Dong, Ling
Zhou, Yi
Wu, Hui
Yu, Bin
Wu, Jiaxin
Zhang, Haihong
Yu, Xianghui
Kong, Wei
author_sort Liu, Chenlu
collection PubMed
description Conventional DNA vaccine strategies usually employ a regimen of immunizations at 2-week or longer intervals to induce effective memory cell-dependent immune responses. Clinical cancer treatment requires a faster immunization strategy to contend with tumor progression. In this study, a novel fast immunization strategy was established, wherein a DNA vaccine was intramuscularly administered on days 0, 2, and 5 in a murine lung cancer model. Effector cells peaked 7 to 10 days after the last vaccination. Compared with traditional 2-week-interval immunization strategies, antigen-specific cytolysis and INF-γ secretion were significantly enhanced under the fast vaccination approach. As a result, the rapidly administered DNA vaccine elicited stronger and more prompt antitumor effects. The probable underlying mechanism of fast immunization was the accumulation of CD8(+)CD11c(+) antigen-presenting cells at the injection site, which enhanced subsequent antigen presentation. In conclusion, the fast DNA vaccination strategy shortened vaccination time to 5 days and elicited a stronger antitumor immune response.
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spelling pubmed-86912612021-12-22 Fast DNA Vaccination Strategy Elicits a Stronger Immune Response Dependent on CD8(+)CD11c(+) Cell Accumulation Liu, Chenlu Cong, Xianling Wang, Yuqian Guo, Qianqian Xie, Yu Geng, Fei Guo, Jie Dong, Ling Zhou, Yi Wu, Hui Yu, Bin Wu, Jiaxin Zhang, Haihong Yu, Xianghui Kong, Wei Front Oncol Oncology Conventional DNA vaccine strategies usually employ a regimen of immunizations at 2-week or longer intervals to induce effective memory cell-dependent immune responses. Clinical cancer treatment requires a faster immunization strategy to contend with tumor progression. In this study, a novel fast immunization strategy was established, wherein a DNA vaccine was intramuscularly administered on days 0, 2, and 5 in a murine lung cancer model. Effector cells peaked 7 to 10 days after the last vaccination. Compared with traditional 2-week-interval immunization strategies, antigen-specific cytolysis and INF-γ secretion were significantly enhanced under the fast vaccination approach. As a result, the rapidly administered DNA vaccine elicited stronger and more prompt antitumor effects. The probable underlying mechanism of fast immunization was the accumulation of CD8(+)CD11c(+) antigen-presenting cells at the injection site, which enhanced subsequent antigen presentation. In conclusion, the fast DNA vaccination strategy shortened vaccination time to 5 days and elicited a stronger antitumor immune response. Frontiers Media S.A. 2021-12-07 /pmc/articles/PMC8691261/ /pubmed/34950581 http://dx.doi.org/10.3389/fonc.2021.752444 Text en Copyright © 2021 Liu, Cong, Wang, Guo, Xie, Geng, Guo, Dong, Zhou, Wu, Yu, Wu, Zhang, Yu and Kong https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Oncology
Liu, Chenlu
Cong, Xianling
Wang, Yuqian
Guo, Qianqian
Xie, Yu
Geng, Fei
Guo, Jie
Dong, Ling
Zhou, Yi
Wu, Hui
Yu, Bin
Wu, Jiaxin
Zhang, Haihong
Yu, Xianghui
Kong, Wei
Fast DNA Vaccination Strategy Elicits a Stronger Immune Response Dependent on CD8(+)CD11c(+) Cell Accumulation
title Fast DNA Vaccination Strategy Elicits a Stronger Immune Response Dependent on CD8(+)CD11c(+) Cell Accumulation
title_full Fast DNA Vaccination Strategy Elicits a Stronger Immune Response Dependent on CD8(+)CD11c(+) Cell Accumulation
title_fullStr Fast DNA Vaccination Strategy Elicits a Stronger Immune Response Dependent on CD8(+)CD11c(+) Cell Accumulation
title_full_unstemmed Fast DNA Vaccination Strategy Elicits a Stronger Immune Response Dependent on CD8(+)CD11c(+) Cell Accumulation
title_short Fast DNA Vaccination Strategy Elicits a Stronger Immune Response Dependent on CD8(+)CD11c(+) Cell Accumulation
title_sort fast dna vaccination strategy elicits a stronger immune response dependent on cd8(+)cd11c(+) cell accumulation
topic Oncology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8691261/
https://www.ncbi.nlm.nih.gov/pubmed/34950581
http://dx.doi.org/10.3389/fonc.2021.752444
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