Regulatory T cells and toll-like receptors in tumor immunity

被引:52
作者
Wang, RF
Peng, GY
Wang, HY
机构
[1] Baylor Coll Med, Ctr Cell Therapy, Houston, TX 77030 USA
[2] Baylor Coll Med, Dept Immunol, Houston, TX 77030 USA
关键词
toll-like receptors; regulatory T cells; immune tolerance; tumor immunity; immunotherapy;
D O I
10.1016/j.smim.2006.01.008
中图分类号
R392 [医学免疫学]; Q939.91 [免疫学];
学科分类号
100102 ;
摘要
Regulatory T (Treg) cells induce immune tolerance by suppressing host immune responses against self- or non-self-antigens, thus playing critical roles in preventing autoimmune diseases. However, tumor cells may take advantage of Treg cells to protect themselves from immune attack elicited by vaccines. Recent studies demonstrate the presence of Treg cells in various types of cancers and their suppressive function. Therefore, Treg cells at tumor sites have detrimental effects on immunotherapy directed to cancer and infectious diseases. This review will discuss antigen specificity of Treg cells, the factors that contribute to Treg cell generation and suppressive function, and their regulation through Toll-like receptor signaling. It was generally though that TLR-mediated recognition of specific structures of invading pathogens initiate innate as well as adaptive immune responses through dendritic cells. New evidence suggests that TLR signaling may directly regulate the suppressive function of Treg cells. Linking TLR signaling to the functional control of Treg cells opens intriguing opportunities to shift the balance between CD4(+) T-helper and Treg cells, in ways that may improve the outcome of cancer immunotherapy. (c) 2006 Elsevier Ltd. All rights reserved.
引用
收藏
页码:136 / 142
页数:7
相关论文
共 86 条
[11]   TLR7: A new sensor of viral infection [J].
Crozat, K ;
Beutler, B .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2004, 101 (18) :6835-6836
[12]   Specific recruitment of regulatory T cells in ovarian carcinoma fosters immune privilege and predicts reduced survival [J].
Curiel, TJ ;
Coukos, G ;
Zou, LH ;
Alvarez, X ;
Cheng, P ;
Mottram, P ;
Evdemon-Hogan, M ;
Conejo-Garcia, JR ;
Zhang, L ;
Burow, M ;
Zhu, Y ;
Wei, S ;
Kryczek, I ;
Daniel, B ;
Gordon, A ;
Myers, L ;
Lackner, A ;
Disis, ML ;
Knutson, KL ;
Chen, LP ;
Zou, WP .
NATURE MEDICINE, 2004, 10 (09) :942-949
[13]   Innate antiviral responses by means of TLR7-mediated recognition of single-stranded RNA [J].
Diebold, SS ;
Kaisho, T ;
Hemmi, H ;
Akira, S ;
Sousa, CRE .
SCIENCE, 2004, 303 (5663) :1529-1531
[14]  
Dudley ME, 2002, SCIENCE, V298, P850, DOI 10.1126/science.1076514
[15]   The three Es of cancer immunoediting [J].
Dunn, GP ;
Old, LJ ;
Schreiber, RD .
ANNUAL REVIEW OF IMMUNOLOGY, 2004, 22 :329-360
[16]   Modulation of tryptophan catabolism by regulatory T cells [J].
Fallarino, F ;
Grohmann, U ;
Hwang, KW ;
Orabona, C ;
Vacca, C ;
Bianchi, R ;
Belladonna, ML ;
Fioretti, MC ;
Alegre, ML ;
Puccetti, P .
NATURE IMMUNOLOGY, 2003, 4 (12) :1206-1212
[17]   Control of Foxp3+ CD25+CD4+ regulatory cell activation and function by dendritic cells [J].
Fehérvári, Z ;
Sakaguchi, S .
INTERNATIONAL IMMUNOLOGY, 2004, 16 (12) :1769-1780
[18]   Continuous activation of autoreactive CD4+ CD25+ regulatory T cells in the steady state [J].
Fisson, S ;
Darrasse-Jèze, G ;
Litvinova, E ;
Septier, F ;
Klatzmann, D ;
Liblau, R ;
Salomon, BL .
JOURNAL OF EXPERIMENTAL MEDICINE, 2003, 198 (05) :737-746
[19]   Regulatory T cell lineage specification by the forkhead transcription factor FoxP3 [J].
Fontenot, JD ;
Rasmussen, JP ;
Williams, LM ;
Dooley, JL ;
Farr, AG ;
Rudensky, AY .
IMMUNITY, 2005, 22 (03) :329-341
[20]   Foxp3 Programs the Development and Function of CD4+CD25+ Regulatory T Cells (Reprinted from vol 4, pg 330-336, 2003) [J].
Fontenot, Jason D. ;
Gavin, Marc A. ;
Rudensky, Alexander Y. .
JOURNAL OF IMMUNOLOGY, 2017, 198 (03) :986-992