B cells, plasma cells and antibody repertoires in the tumour microenvironment

被引:449
作者
Sharonov, George, V [1 ,2 ,3 ]
Serebrovskaya, Ekaterina O. [2 ,3 ]
Yuzhakova, Diana, V [1 ]
Britanova, Olga, V [1 ,2 ,3 ]
Chudakov, Dmitriy M. [1 ,2 ,3 ,4 ]
机构
[1] Privolzhsky Res Med Univ, Lab Genom Antitumor Adapt Immun, Nizhnii Novgorod, Russia
[2] Shemyakin & Ovchinnikov Inst Bioorgan Chem, Genom Adapt Immun Dept, Moscow, Russia
[3] Pirogov Russian Natl Res Med Univ, Inst Translat Med, Moscow, Russia
[4] Skolkovo Inst Sci & Technol, Ctr Life Sci, Moscow, Russia
基金
俄罗斯科学基金会;
关键词
TERTIARY LYMPHOID STRUCTURES; HUMORAL IMMUNE-RESPONSE; BRUTONS TYROSINE KINASE; REGULATORY T-CELLS; BREAST-CANCER; LUNG-CANCER; INFILTRATING LYMPHOCYTES; ANTITUMOR IMMUNITY; ANTIGEN PRESENTATION; FAVORABLE PROGNOSIS;
D O I
10.1038/s41577-019-0257-x
中图分类号
R392 [医学免疫学]; Q939.91 [免疫学];
学科分类号
100102 ;
摘要
This Review discusses the various ways in which B cells, plasma cells and antibodies shape the immune response in cancer. B cells can have both protumour and antitumour roles, and the authors discuss the potential of targeting these cells for therapy. Recent data show that B cells and plasma cells located in tumours or in tumour-draining lymph nodes can have important roles in shaping antitumour immune responses. In tumour-associated tertiary lymphoid structures, T cells and B cells interact and undergo cooperative selection, specialization and clonal expansion. Importantly, B cells can present cognate tumour-derived antigens to T cells, with the functional consequences of such interactions being shaped by the B cell phenotype. Furthermore, the isotype and specificity of the antibodies produced by plasma cells can drive distinct immune responses. Here we summarize our current knowledge of the roles of B cells and antibodies in the tumour microenvironment. Moreover, we discuss the potential of using immunoglobulin repertoires as a source of tumour-specific receptors for immunotherapy or as biomarkers to predict the efficacy of immunotherapeutic interventions.
引用
收藏
页码:294 / 307
页数:14
相关论文
共 208 条
[31]   Memory T cells targeting oncogenic mutations detected in peripheral blood of epithelial cancer patients [J].
Cafri, Gal ;
Yossef, Rami ;
Pasetto, Anna ;
Deniger, Drew C. ;
Lu, Yong-Chen ;
Parkhurst, Maria ;
Gartner, Jared J. ;
Jia, Li ;
Ray, Satyajit ;
Ngo, Lien T. ;
Jafferji, Mohammad ;
Sachs, Abraham ;
Prickett, Todd ;
Robbins, Paul F. ;
Rosenberg, Steven A. .
NATURE COMMUNICATIONS, 2019, 10 (1)
[32]   Interleukin 10-expressing B cells inhibit tumor-infiltrating T cell function and correlate with T cell Tim-3 expression in renal cell carcinoma [J].
Cai, Chen ;
Zhang, Jin ;
Li, Minyu ;
Wu, Zhen-Jie ;
Song, Ken H. ;
Zhan, Tina W. ;
Wang, Lin-Hui ;
Sun, Ying-Hao .
TUMOR BIOLOGY, 2016, 37 (06) :8209-8218
[33]   BASIC: BCR assembly from single cells [J].
Canzar, Stefan ;
Neu, Karlynn E. ;
Tang, Qingming ;
Wilson, Patrick C. ;
Khan, Aly A. .
BIOINFORMATICS, 2017, 33 (03) :425-427
[34]   Allogeneic IgG combined with dendritic cell stimuli induce antitumour T-cell immunity [J].
Carmi, Yaron ;
Spitzer, Matthew H. ;
Linde, Ian L. ;
Burt, Bryan M. ;
Prestwood, Tyler R. ;
Perlman, Nicola ;
Davidson, Matthew G. ;
Kenkel, Justin A. ;
Segal, Ehud ;
Pusapati, Ganesh V. ;
Bhattacharya, Nupur ;
Engleman, Edgar G. .
NATURE, 2015, 521 (7550) :99-U254
[35]   Mice Lacking Endogenous IL-10-Producing Regulatory B Cells Develop Exacerbated Disease and Present with an Increased Frequency of Th1/Th17 but a Decrease in Regulatory T Cells [J].
Carter, Natalie A. ;
Vasconcellos, Rita ;
Rosser, Elizabeth C. ;
Tulone, Calogero ;
Munoz-Suano, Alba ;
Kamanaka, Masahito ;
Ehrenstein, Michael R. ;
Flavell, Richard A. ;
Mauri, Claudia .
JOURNAL OF IMMUNOLOGY, 2011, 186 (10) :5569-5579
[36]   Spatial distribution of B cells predicts prognosis in human pancreatic adenocarcinoma [J].
Castino, Giovanni Francesco ;
Cortese, Nina ;
Capretti, Giovanni ;
Serio, Simone ;
Di Caro, Giuseppe ;
Mineri, Rossana ;
Magrini, Elena ;
Grizzi, Fabio ;
Cappello, Paola ;
Novelli, Francesco ;
Spaggiari, Paola ;
Roncalli, Massimo ;
Ridolfi, Cristina ;
Gavazzi, Francesca ;
Zerbi, Alessandro ;
Allavena, Paola ;
Marchesi, Federica .
ONCOIMMUNOLOGY, 2016, 5 (04)
[37]   EarlyCDTA®-Lung test: improved clinical utility through additional autoantibody assays [J].
Chapman, Caroline J. ;
Healey, Graham F. ;
Murray, Andrea ;
Boyle, Peter ;
Robertson, Chris ;
Peek, Laura J. ;
Allen, Jared ;
Thorpe, Alison J. ;
Hamilton-Fairley, Geoffrey ;
Parsy-Kowalska, Celine B. ;
MacDonald, Isabel K. ;
Jewell, William ;
Maddison, Paul ;
Robertson, John F. R. .
TUMOR BIOLOGY, 2012, 33 (05) :1319-1326
[38]   Pan-cancer Immunogenomic Analyses Reveal Genotype-Immunophenotype Relationships and Predictors of Response to Checkpoint Blockade [J].
Charoentong, Pornpimol ;
Finotello, Francesca ;
Angelova, Mihaela ;
Mayer, Clemens ;
Efremova, Mirjana ;
Rieder, Dietmar ;
Hackl, Hubert ;
Trajanoski, Zlatko .
CELL REPORTS, 2017, 18 (01) :248-262
[39]   KrasG12D mutation contributes to regulatory T cell conversion through activation of the MEK/ERK pathway in pancreatic cancer [J].
Chen, He ;
Fan, Kun ;
Luo, Guopei ;
Fan, Zhiyao ;
Yang, Chao ;
Huang, Qiuyi ;
Jin, Kaizhou ;
Xu, Jin ;
Yu, Xianjun ;
Liu, Chen .
CANCER LETTERS, 2019, 446 :103-111
[40]   Blood autoantibodies against tumor-associated antigens as biomarkers in early detection of colorectal cancer [J].
Chen, Hongda ;
Werner, Simone ;
Tao, Sha ;
Zoernig, Inka ;
Brenner, Hermann .
CANCER LETTERS, 2014, 346 (02) :178-187