Tumor-Resident Dendritic Cells and Macrophages Modulate the Accumulation of TCR-Engineered T Cells in Melanoma

被引:19
作者
Hotblack, Alastair [1 ]
Holler, Angelika [1 ]
Piapi, Alice [1 ]
Ward, Sophie [1 ,2 ]
Stauss, Hans J. [1 ]
Bennett, Clare L. [1 ,2 ]
机构
[1] UCL, Div Infect & Immun, Inst Immun & Transplantat, London NW3 2PF, England
[2] UCL, Div Canc Studies, Canc Inst, London WC1E 6DD, England
关键词
IN-VIVO; FUNCTIONAL SPECIALIZATION; ESTABLISHED TUMORS; ANTITUMOR-ACTIVITY; GENE-THERAPY; RESPONSES; IMMUNITY; ANTIGEN; PROGENITORS; EXPRESSION;
D O I
10.1016/j.ymthe.2018.03.011
中图分类号
Q81 [生物工程学(生物技术)]; Q93 [微生物学];
学科分类号
071005 ; 0836 ; 090102 ; 100705 ;
摘要
Ongoing clinical trials explore T cell receptor (TCR) gene therapy as a treatment option for cancer, but responses in solid tumors are hampered by the immunosuppressive microenvironment. The production of TCR gene-engineered T cells requires full T cell activation in vitro, and it is currently unknown whether in vivo interactions with conventional dendritic cells (cDCs) regulate the accumulation and function of engineered T cells in tumors. Using the B16 melanoma model and the inducible depletion of CD11c(+) cells in CD11c. diphtheria toxin receptor (DTR) mice, we analyzed the interaction between tumor-resident cDCs and engineered T cells expressing the melanoma-specific TRP-2 TCR. We found that depletion of CD11c(+) cells triggered the recruitment of cross-presenting cDC1 into the tumor and enhanced the accumulation of TCR-engineered T cells. We show that the recruited tumor cDCs present melanoma tumor antigen, leading to enhanced activation of TCR-engineered T cells. In addition, detailed analysis of the tumor myeloid compartment revealed that the depletion of a population of DT-sensitive macrophages can contribute to the accumulation of tumor-infiltrating T cells. Together, these data suggest that the relative frequency of tumor-resident cDCs and macrophages may impact the therapeutic efficacy of TCR gene therapy in solid tumors.
引用
收藏
页码:1471 / 1481
页数:11
相关论文
共 42 条
[1]   CD3 limits the efficacy of TCR gene therapy in vivo [J].
Ahmadi, Maryam ;
King, Judith W. ;
Xue, Shao-An ;
Voisine, Cecile ;
Holler, Angelika ;
Wright, Graham P. ;
Waxman, Jonathan ;
Morris, Emma ;
Stauss, Hans J. .
BLOOD, 2011, 118 (13) :3528-3537
[2]   viSNE enables visualization of high dimensional single-cell data and reveals phenotypic heterogeneity of leukemia [J].
Amir, El-ad David ;
Davis, Kara L. ;
Tadmor, Michelle D. ;
Simonds, Erin F. ;
Levine, Jacob H. ;
Bendall, Sean C. ;
Shenfeld, Daniel K. ;
Krishnaswamy, Smita ;
Nolan, Garry P. ;
Pe'er, Dana .
NATURE BIOTECHNOLOGY, 2013, 31 (06) :545-+
[3]   Profiling of primary peripheral blood-and monocyte-derived dendritic cells using monoclonal antibodies from the HLDA10 Workshop in Wollongong, Australia [J].
Autenrieth, Stella E. ;
Grimm, Sabrina ;
Rittig, Susanne Malaika ;
Grunebach, Frank ;
Gouttefangeas, CeCile ;
Bhring, Hans-JoRg .
CLINICAL & TRANSLATIONAL IMMUNOLOGY, 2015, 4
[4]   Depletion of Dendritic Cells Enhances Innate Anti-Bacterial Host Defense through Modulation of Phagocyte Homeostasis [J].
Autenrieth, Stella E. ;
Warnke, Philipp ;
Wabnitz, Guido H. ;
Estrada, Cecilia Lucero ;
Pasquevich, Karina A. ;
Drechsler, Doreen ;
Guenter, Manina ;
Hochweller, Kristin ;
Novakovic, Ana ;
Beer-Hammer, Sandra ;
Samstag, Yvonne ;
Haemmerling, Guenter J. ;
Garbi, Natalio ;
Autenrieth, Ingo B. .
PLOS PATHOGENS, 2012, 8 (02)
[5]   Dendritic cells in tissues: in situ stimulation of immunity and immunopathology [J].
Bennett, Clare L. ;
Chakraverty, Ronjon .
TRENDS IN IMMUNOLOGY, 2012, 33 (01) :8-13
[6]   CD8+ Tumor-Infiltrating T Cells Are Trapped in the Tumor-Dendritic Cell Network [J].
Boissonnas, Alexandre ;
Licata, Fabrice ;
Poupel, Lucie ;
Jacquelin, Sebastien ;
Fetler, Luc ;
Krumeich, Sophie ;
Thery, Clotilde ;
Amigorena, Sebastian ;
Combadiere, Christophe .
NEOPLASIA, 2013, 15 (01) :85-+
[7]   Dissecting the Tumor Myeloid Compartment Reveals Rare Activating Antigen-Presenting Cells Critical for T Cell Immunity [J].
Broz, Miranda L. ;
Binnewies, Mikhail ;
Boldajipour, Bijan ;
Nelson, Amanda E. ;
Pollack, Joshua L. ;
Erle, David J. ;
Barczak, Andrea ;
Rosenblum, Michael D. ;
Daud, Adil ;
Barber, Diane L. ;
Amigorena, Sebastian ;
van't Veer, Laura J. ;
Sperling, Anne I. ;
Wolf, Denise M. ;
Krummel, Matthew F. .
CANCER CELL, 2014, 26 (05) :638-652
[8]   Simultaneous Targeting of Tumor Antigens and the Tumor Vasculature Using T Lymphocyte Transfer Synergize to Induce Regression of Established Tumors in Mice [J].
Chinnasamy, Dhanalakshmi ;
Tran, Eric ;
Yu, Zhiya ;
Morgan, Richard A. ;
Restifo, Nicholas P. ;
Rosenberg, Steven A. .
CANCER RESEARCH, 2013, 73 (11) :3371-3380
[9]   Enhanced antitumor activity of T cells engineered to express T-cell receptors with a second disulfide bond [J].
Cohen, Cyrille J. ;
Li, Yong F. ;
El-Gamil, Mona ;
Robbins, Paul F. ;
Rosenberg, Steven A. ;
Morgan, Richard A. .
CANCER RESEARCH, 2007, 67 (08) :3898-3903
[10]   TCR gene therapy of spontaneous prostate carcinoma requires in vivo T cell activation [J].
de Witte, Moniek A. ;
Bendle, Gavin M. ;
van den Boom, Marly D. ;
Coccoris, Miriam ;
Schell, Todd D. ;
Tevethia, Satvir S. ;
van Tinteren, Harm ;
Mesman, Elly M. ;
Song, Ji-Ying ;
Schumacher, Ton N. M. .
JOURNAL OF IMMUNOLOGY, 2008, 181 (04) :2563-2571