Literature DB >> 35624209

'Stem-like' precursors are the fount to sustain persistent CD8+ T cell responses.

Dietmar Zehn1, Robert Thimme2, Enrico Lugli3, Gustavo Pereira de Almeida4, Annette Oxenius5.   

Abstract

Virus-specific CD8+ T cells that differentiate in the context of resolved versus persisting infections exhibit divergent phenotypic and functional characteristics, which suggests that their differentiation trajectories are governed by distinct cellular dynamics, developmental pathways and molecular mechanisms. For acute infection, it is long known that antigen-specific T cell populations contain terminally differentiated effector T cells, known as short-lived effector T cells, and proliferation-competent and differentiation-competent memory precursor T cells. More recently, it was identified that a similar functional segregation occurs in chronic infections. A failure to generate proliferation-competent precursor cells in chronic infections and tumors results in the collapse of the T cell response. Thus, these precursor cells are major therapeutic and prophylactic targets of immune interventions. These observations suggest substantial commonality between T cell responses in acute and chronic infections but there are also critical differences. We are therefore reviewing the common features and peculiarities of precursor cells in acute infections, different types of persistent infection and cancer.
© 2022. Springer Nature America, Inc.

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Year:  2022        PMID: 35624209     DOI: 10.1038/s41590-022-01219-w

Source DB:  PubMed          Journal:  Nat Immunol        ISSN: 1529-2908            Impact factor:   31.250


  140 in total

1.  Follicular CXCR5- expressing CD8(+) T cells curtail chronic viral infection.

Authors:  Ran He; Shiyue Hou; Cheng Liu; Anli Zhang; Qiang Bai; Miao Han; Yu Yang; Gang Wei; Ting Shen; Xinxin Yang; Lifan Xu; Xiangyu Chen; Yaxing Hao; Pengcheng Wang; Chuhong Zhu; Juanjuan Ou; Houjie Liang; Ting Ni; Xiaoyan Zhang; Xinyuan Zhou; Kai Deng; Yaokai Chen; Yadong Luo; Jianqing Xu; Hai Qi; Yuzhang Wu; Lilin Ye
Journal:  Nature       Date:  2016-08-02       Impact factor: 49.962

2.  CXCR5(+) follicular cytotoxic T cells control viral infection in B cell follicles.

Authors:  Yew Ann Leong; Yaping Chen; Hong Sheng Ong; Di Wu; Kevin Man; Claire Deleage; Martina Minnich; Benjamin J Meckiff; Yunbo Wei; Zhaohua Hou; Dimitra Zotos; Kevin A Fenix; Anurag Atnerkar; Simon Preston; Jeffrey G Chipman; Greg J Beilman; Cody C Allison; Lei Sun; Peng Wang; Jiawei Xu; Jesse G Toe; Hao K Lu; Yong Tao; Umaimainthan Palendira; Alexander L Dent; Alan L Landay; Marc Pellegrini; Iain Comerford; Shaun R McColl; Timothy W Schacker; Heather M Long; Jacob D Estes; Meinrad Busslinger; Gabrielle T Belz; Sharon R Lewin; Axel Kallies; Di Yu
Journal:  Nat Immunol       Date:  2016-08-03       Impact factor: 25.606

Review 3.  Defining 'T cell exhaustion'.

Authors:  Christian U Blank; W Nicholas Haining; Werner Held; Patrick G Hogan; Axel Kallies; Enrico Lugli; Rachel C Lynn; Mary Philip; Anjana Rao; Nicholas P Restifo; Andrea Schietinger; Ton N Schumacher; Pamela L Schwartzberg; Arlene H Sharpe; Daniel E Speiser; E John Wherry; Benjamin A Youngblood; Dietmar Zehn
Journal:  Nat Rev Immunol       Date:  2019-09-30       Impact factor: 53.106

4.  T Cell Factor 1-Expressing Memory-like CD8(+) T Cells Sustain the Immune Response to Chronic Viral Infections.

Authors:  Daniel T Utzschneider; Mélanie Charmoy; Vijaykumar Chennupati; Laurène Pousse; Daniela Pais Ferreira; Sandra Calderon-Copete; Maxime Danilo; Francesca Alfei; Maike Hofmann; Dominik Wieland; Sylvain Pradervand; Robert Thimme; Dietmar Zehn; Werner Held
Journal:  Immunity       Date:  2016-08-16       Impact factor: 31.745

Review 5.  Precursor exhausted T cells: key to successful immunotherapy?

Authors:  Axel Kallies; Dietmar Zehn; Daniel T Utzschneider
Journal:  Nat Rev Immunol       Date:  2019-10-07       Impact factor: 53.106

Review 6.  T cell responses to cytomegalovirus.

Authors:  Paul Klenerman; Annette Oxenius
Journal:  Nat Rev Immunol       Date:  2016-04-25       Impact factor: 53.106

7.  Defining CD8+ T cells that provide the proliferative burst after PD-1 therapy.

Authors:  Se Jin Im; Masao Hashimoto; Michael Y Gerner; Junghwa Lee; Haydn T Kissick; Matheus C Burger; Qiang Shan; J Scott Hale; Judong Lee; Tahseen H Nasti; Arlene H Sharpe; Gordon J Freeman; Ronald N Germain; Helder I Nakaya; Hai-Hui Xue; Rafi Ahmed
Journal:  Nature       Date:  2016-08-02       Impact factor: 49.962

Review 8.  T Cell Dysfunction in Cancer.

Authors:  Daniela S Thommen; Ton N Schumacher
Journal:  Cancer Cell       Date:  2018-04-09       Impact factor: 31.743

9.  Progenitor and terminal subsets of CD8+ T cells cooperate to contain chronic viral infection.

Authors:  Michael A Paley; Daniela C Kroy; Pamela M Odorizzi; Jonathan B Johnnidis; Douglas V Dolfi; Burton E Barnett; Elizabeth K Bikoff; Elizabeth J Robertson; Georg M Lauer; Steven L Reiner; E John Wherry
Journal:  Science       Date:  2012-11-30       Impact factor: 47.728

Review 10.  Metabolic and epigenetic regulation of T-cell exhaustion.

Authors:  Fabien Franco; Alison Jaccard; Pedro Romero; Yi-Ru Yu; Ping-Chih Ho
Journal:  Nat Metab       Date:  2020-09-21
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  1 in total

Review 1.  Stem-like T cells and niches: Implications in human health and disease.

Authors:  Linglu Yi; Li Yang
Journal:  Front Immunol       Date:  2022-08-17       Impact factor: 8.786

  1 in total

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