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T follicular helper 17 (Tfh17) cells are superior for immunological memory maintenance

A defining feature of successful vaccination is the ability to induce long-lived antigen-specific memory cells. T follicular helper (Tfh) cells specialize in providing help to B cells in mounting protective humoral immunity in infection and after vaccination. Memory Tfh cells that retain the CXCR5 e...

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Autores principales: Gao, Xin, Luo, Kaiming, Wang, Diya, Wei, Yunbo, Yao, Yin, Deng, Jun, Yang, Yang, Zeng, Qunxiong, Dong, Xiaoru, Xiong, Le, Gong, Dongcheng, Lin, Lin, Pohl, Kai, Liu, Shaoling, Liu, Yu, Liu, Lu, Nguyen, Thi HO, Allen, Lilith F, Kedzierska, Katherine, Jin, Yanliang, Du, Mei-Rong, Chen, Wanping, Lu, Liangjing, Shen, Nan, Liu, Zheng, Cockburn, Ian A, Luo, Wenjing, Yu, Di
Formato: Online Artículo Texto
Lenguaje:English
Publicado: eLife Sciences Publications, Ltd 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9891720/
https://www.ncbi.nlm.nih.gov/pubmed/36655976
http://dx.doi.org/10.7554/eLife.82217
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author Gao, Xin
Luo, Kaiming
Wang, Diya
Wei, Yunbo
Yao, Yin
Deng, Jun
Yang, Yang
Zeng, Qunxiong
Dong, Xiaoru
Xiong, Le
Gong, Dongcheng
Lin, Lin
Pohl, Kai
Liu, Shaoling
Liu, Yu
Liu, Lu
Nguyen, Thi HO
Allen, Lilith F
Kedzierska, Katherine
Jin, Yanliang
Du, Mei-Rong
Chen, Wanping
Lu, Liangjing
Shen, Nan
Liu, Zheng
Cockburn, Ian A
Luo, Wenjing
Yu, Di
author_facet Gao, Xin
Luo, Kaiming
Wang, Diya
Wei, Yunbo
Yao, Yin
Deng, Jun
Yang, Yang
Zeng, Qunxiong
Dong, Xiaoru
Xiong, Le
Gong, Dongcheng
Lin, Lin
Pohl, Kai
Liu, Shaoling
Liu, Yu
Liu, Lu
Nguyen, Thi HO
Allen, Lilith F
Kedzierska, Katherine
Jin, Yanliang
Du, Mei-Rong
Chen, Wanping
Lu, Liangjing
Shen, Nan
Liu, Zheng
Cockburn, Ian A
Luo, Wenjing
Yu, Di
author_sort Gao, Xin
collection PubMed
description A defining feature of successful vaccination is the ability to induce long-lived antigen-specific memory cells. T follicular helper (Tfh) cells specialize in providing help to B cells in mounting protective humoral immunity in infection and after vaccination. Memory Tfh cells that retain the CXCR5 expression can confer protection through enhancing humoral response upon antigen re-exposure but how they are maintained is poorly understood. CXCR5(+) memory Tfh cells in human blood are divided into Tfh1, Tfh2, and Tfh17 cells by the expression of chemokine receptors CXCR3 and CCR6 associated with Th1 and Th17, respectively. Here, we developed a new method to induce Tfh1, Tfh2, and Tfh17-like (iTfh1, iTfh2, and iTfh17) mouse cells in vitro. Although all three iTfh subsets efficiently support antibody responses in recipient mice with immediate immunization, iTfh17 cells are superior to iTfh1 and iTfh2 cells in supporting antibody response to a later immunization after extended resting in vivo to mimic memory maintenance. Notably, the counterpart human Tfh17 cells are selectively enriched in CCR7(+) central memory Tfh cells with survival and proliferative advantages. Furthermore, the analysis of multiple human cohorts that received different vaccines for HBV, influenza virus, tetanus toxin or measles revealed that vaccine-specific Tfh17 cells outcompete Tfh1 or Tfh2 cells for the persistence in memory phase. Therefore, the complementary mouse and human results showing the advantage of Tfh17 cells in maintenance and memory function supports the notion that Tfh17-induced immunization might be preferable in vaccine development to confer long-term protection.
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spelling pubmed-98917202023-02-02 T follicular helper 17 (Tfh17) cells are superior for immunological memory maintenance Gao, Xin Luo, Kaiming Wang, Diya Wei, Yunbo Yao, Yin Deng, Jun Yang, Yang Zeng, Qunxiong Dong, Xiaoru Xiong, Le Gong, Dongcheng Lin, Lin Pohl, Kai Liu, Shaoling Liu, Yu Liu, Lu Nguyen, Thi HO Allen, Lilith F Kedzierska, Katherine Jin, Yanliang Du, Mei-Rong Chen, Wanping Lu, Liangjing Shen, Nan Liu, Zheng Cockburn, Ian A Luo, Wenjing Yu, Di eLife Immunology and Inflammation A defining feature of successful vaccination is the ability to induce long-lived antigen-specific memory cells. T follicular helper (Tfh) cells specialize in providing help to B cells in mounting protective humoral immunity in infection and after vaccination. Memory Tfh cells that retain the CXCR5 expression can confer protection through enhancing humoral response upon antigen re-exposure but how they are maintained is poorly understood. CXCR5(+) memory Tfh cells in human blood are divided into Tfh1, Tfh2, and Tfh17 cells by the expression of chemokine receptors CXCR3 and CCR6 associated with Th1 and Th17, respectively. Here, we developed a new method to induce Tfh1, Tfh2, and Tfh17-like (iTfh1, iTfh2, and iTfh17) mouse cells in vitro. Although all three iTfh subsets efficiently support antibody responses in recipient mice with immediate immunization, iTfh17 cells are superior to iTfh1 and iTfh2 cells in supporting antibody response to a later immunization after extended resting in vivo to mimic memory maintenance. Notably, the counterpart human Tfh17 cells are selectively enriched in CCR7(+) central memory Tfh cells with survival and proliferative advantages. Furthermore, the analysis of multiple human cohorts that received different vaccines for HBV, influenza virus, tetanus toxin or measles revealed that vaccine-specific Tfh17 cells outcompete Tfh1 or Tfh2 cells for the persistence in memory phase. Therefore, the complementary mouse and human results showing the advantage of Tfh17 cells in maintenance and memory function supports the notion that Tfh17-induced immunization might be preferable in vaccine development to confer long-term protection. eLife Sciences Publications, Ltd 2023-01-19 /pmc/articles/PMC9891720/ /pubmed/36655976 http://dx.doi.org/10.7554/eLife.82217 Text en © 2023, Gao et al https://creativecommons.org/licenses/by/4.0/This article is distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use and redistribution provided that the original author and source are credited.
spellingShingle Immunology and Inflammation
Gao, Xin
Luo, Kaiming
Wang, Diya
Wei, Yunbo
Yao, Yin
Deng, Jun
Yang, Yang
Zeng, Qunxiong
Dong, Xiaoru
Xiong, Le
Gong, Dongcheng
Lin, Lin
Pohl, Kai
Liu, Shaoling
Liu, Yu
Liu, Lu
Nguyen, Thi HO
Allen, Lilith F
Kedzierska, Katherine
Jin, Yanliang
Du, Mei-Rong
Chen, Wanping
Lu, Liangjing
Shen, Nan
Liu, Zheng
Cockburn, Ian A
Luo, Wenjing
Yu, Di
T follicular helper 17 (Tfh17) cells are superior for immunological memory maintenance
title T follicular helper 17 (Tfh17) cells are superior for immunological memory maintenance
title_full T follicular helper 17 (Tfh17) cells are superior for immunological memory maintenance
title_fullStr T follicular helper 17 (Tfh17) cells are superior for immunological memory maintenance
title_full_unstemmed T follicular helper 17 (Tfh17) cells are superior for immunological memory maintenance
title_short T follicular helper 17 (Tfh17) cells are superior for immunological memory maintenance
title_sort t follicular helper 17 (tfh17) cells are superior for immunological memory maintenance
topic Immunology and Inflammation
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9891720/
https://www.ncbi.nlm.nih.gov/pubmed/36655976
http://dx.doi.org/10.7554/eLife.82217
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