Literature DB >> 23610140

Local administration of TLR ligands rescues the function of tumor-infiltrating CD8 T cells and enhances the antitumor effect of lentivector immunization.

Haiyan Xiao1, Yibing Peng, Yuan Hong, Lei Huang, Z Sheng Guo, David L Bartlett, Ning Fu, David H Munn, Andrew Mellor, Yukai He.   

Abstract

Cancer vaccines, to date, have shown limited effect to control the growth of established tumors due largely to effector failure of the antitumor immune responses. Tumor lesion is characterized as chronic indolent inflammation in which the effector function of tumor-infiltrating lymphocytes (TILs) is severely impaired. In this study, we investigated whether the effector function of CD8 TILs could be rescued by converting the chronic inflammation milieu to acute inflammation within tumors. We found that injection of TLR3/9 ligands (polyI:C/CpG) into a tumor during the effector phase of lentivector (lv) immunization effectively rescued the function of lv-activated CD8 TILs and decreased the percentage of T regulatory within the tumor, resulting in a marked improvement in the antitumor efficacy of lv immunization. Mechanistically, rescue of the effector function of CD8 TILs by TLR3/9 ligands is most likely dependent on production, within a tumor, of type-1 IFN that can mature and activate tumor-infiltrating dendritic cells. The effector function of CD8 TILs could not be rescued in mice lacking intact type I IFN signaling. These findings have important implications for tumor immunotherapy, suggesting that type I IFN-mediated activation of tumor-infiltrating dendritic cells within a tumor will most likely restore/enhance the effector function of CD8 TILs and thus improve the antitumor efficacy of current cancer vaccines.

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Year:  2013        PMID: 23610140      PMCID: PMC3660440          DOI: 10.4049/jimmunol.1203470

Source DB:  PubMed          Journal:  J Immunol        ISSN: 0022-1767            Impact factor:   5.422


  59 in total

1.  Lymphoma immunotherapy with CpG oligodeoxynucleotides requires TLR9 either in the host or in the tumor itself.

Authors:  Jiali Li; Wenru Song; Debra K Czerwinski; Bindu Varghese; Satoshi Uematsu; Shizuo Akira; Arthur M Krieg; Ronald Levy
Journal:  J Immunol       Date:  2007-08-15       Impact factor: 5.422

2.  Dendritic cell-induced memory T cell activation in nonlymphoid tissues.

Authors:  Linda M Wakim; Jason Waithman; Nico van Rooijen; William R Heath; Francis R Carbone
Journal:  Science       Date:  2008-01-11       Impact factor: 47.728

3.  Melanoma progression despite infiltration by in vivo-primed TRP-2-specific T cells.

Authors:  Vinod Singh; Qingyong Ji; Lionel Feigenbaum; Robert M Leighty; Arthur A Hurwitz
Journal:  J Immunother       Date:  2009 Feb-Mar       Impact factor: 4.456

Review 4.  Failure at the effector phase: immune barriers at the level of the melanoma tumor microenvironment.

Authors:  Thomas F Gajewski
Journal:  Clin Cancer Res       Date:  2007-09-15       Impact factor: 12.531

5.  Targeting the effector site with IFN-alphabeta-inducing TLR ligands reactivates tumor-resident CD8 T cell responses to eradicate established solid tumors.

Authors:  Andrew J Currie; Robbert G van der Most; Steve A Broomfield; Amy C Prosser; Michael G Tovey; Bruce W S Robinson
Journal:  J Immunol       Date:  2008-02-01       Impact factor: 5.422

Review 6.  Cancer immunotherapy by dendritic cells.

Authors:  Cornelis J M Melief
Journal:  Immunity       Date:  2008-09-19       Impact factor: 31.745

7.  Antagonistic nature of T helper 1/2 developmental programs in opposing peripheral induction of Foxp3+ regulatory T cells.

Authors:  Jun Wei; Omar Duramad; Olivia A Perng; Steven L Reiner; Yong-Jun Liu; F Xiao-Feng Qin
Journal:  Proc Natl Acad Sci U S A       Date:  2007-10-31       Impact factor: 11.205

Review 8.  Cancer-related inflammation.

Authors:  Alberto Mantovani; Paola Allavena; Antonio Sica; Frances Balkwill
Journal:  Nature       Date:  2008-07-24       Impact factor: 49.962

9.  Rapid tolerization of virus-activated tumor-specific CD8+ T cells in prostate tumors of TRAMP mice.

Authors:  Ailin Bai; Eileen Higham; Herman N Eisen; K Dane Wittrup; Jianzhu Chen
Journal:  Proc Natl Acad Sci U S A       Date:  2008-08-22       Impact factor: 11.205

10.  Protective influenza-specific CD8 T cell responses require interactions with dendritic cells in the lungs.

Authors:  Jodi McGill; Nico Van Rooijen; Kevin L Legge
Journal:  J Exp Med       Date:  2008-07-07       Impact factor: 14.307

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  15 in total

1.  Cancer Cell-targeted and Activatable Photoimmunotherapy Spares T Cells in a 3D Coculture Model.

Authors:  Eric M Kercher; Shubhankar Nath; Imran Rizvi; Bryan Q Spring
Journal:  Photochem Photobiol       Date:  2019-10-13       Impact factor: 3.421

2.  Intratumoral immune activation with TLR4 agonist synergizes with effector T cells to eradicate established murine tumors.

Authors:  Tina C Albershardt; Jardin Leleux; Andrea J Parsons; Jordan E Krull; Peter Berglund; Jan Ter Meulen
Journal:  NPJ Vaccines       Date:  2020-06-16       Impact factor: 7.344

3.  NF-κB activation during intradermal DNA vaccination is essential for eliciting tumor protective antigen-specific CTL responses.

Authors:  Maarten A Ligtenberg; Nicole Rojas-Colonelli; Rolf Kiessling; Alvaro Lladser
Journal:  Hum Vaccin Immunother       Date:  2013-07-24       Impact factor: 3.452

4.  Ameliorating the tumor microenvironment for antitumor responses through TLR5 ligand-secreting T cells.

Authors:  Sabina Kaczanowska; Eduardo Davila
Journal:  Oncoimmunology       Date:  2015-08-20       Impact factor: 8.110

5.  Tumour immunogenicity, antigen presentation and immunological barriers in cancer immunotherapy.

Authors:  David Escors
Journal:  New J Sci       Date:  2014-01-05

Review 6.  Oncolytic viruses as therapeutic cancer vaccines.

Authors:  David L Bartlett; Zuqiang Liu; Magesh Sathaiah; Roshni Ravindranathan; Zongbi Guo; Yukai He; Zong Sheng Guo
Journal:  Mol Cancer       Date:  2013-09-11       Impact factor: 27.401

Review 7.  The "Trojan Horse" approach to tumor immunotherapy: targeting the tumor microenvironment.

Authors:  Delia Nelson; Scott Fisher; Bruce Robinson
Journal:  J Immunol Res       Date:  2014-05-18       Impact factor: 4.818

Review 8.  Targeting the tumor microenvironment to enhance antitumor immune responses.

Authors:  Kevin Van der Jeught; Lukasz Bialkowski; Lidia Daszkiewicz; Katrijn Broos; Cleo Goyvaerts; Dries Renmans; Sandra Van Lint; Carlo Heirman; Kris Thielemans; Karine Breckpot
Journal:  Oncotarget       Date:  2015-01-30

Review 9.  CpG Oligonucleotides as Cancer Vaccine Adjuvants.

Authors:  Hidekazu Shirota; Debra Tross; Dennis M Klinman
Journal:  Vaccines (Basel)       Date:  2015-05-08

Review 10.  Trial Watch: Toll-like receptor agonists for cancer therapy.

Authors:  Erika Vacchelli; Alexander Eggermont; Catherine Sautès-Fridman; Jérôme Galon; Laurence Zitvogel; Guido Kroemer; Lorenzo Galluzzi
Journal:  Oncoimmunology       Date:  2013-06-10       Impact factor: 8.110

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