DNA demethylating agent 5-azacytidine inhibits myeloid-derived suppressor cells induced by tumor growth and cyclophosphamide treatment

被引:41
|
作者
Mikyskova, Romana [1 ]
Indrova, Marie [1 ]
Vlkova, Veronika [1 ]
Bieblova, Jana [1 ]
Simova, Jana [1 ]
Parackova, Zuzana [1 ]
Pajtasz-Piasecka, Elzbieta [2 ]
Rossowska, Joanna [2 ]
Reinis, Milan [1 ]
机构
[1] Acad Sci Czech Republ, Inst Mol Genet, Dept Tumor Imunol, Prague 14220 4, Czech Republic
[2] Polish Acad Sci, Ludwik Hirszfeld Inst Immunol & Expt Therapy, Wroclaw, Poland
关键词
immunosuppression; microenvironment; arginase-1; HPV16-ASSOCIATED TUMORS; IMMUNE-RESPONSES; DECITABINE; EXPRESSION; IMMUNOTHERAPY; IMMUNOSUPPRESSION; MICROENVIRONMENT; DIFFERENTIATION; IDENTIFICATION; MECHANISMS;
D O I
10.1189/jlb.0813435
中图分类号
Q2 [细胞生物学];
学科分类号
071009 ; 090102 ;
摘要
MDSCs represent one of the key players mediating immunosuppression. These cells accumulate in the TME, lymphoid organs, and blood during tumor growth. Their mobilization was also reported after CY therapy. DNMTi 5AC has been intensively studied as an antitumor agent. In this study, we examined, using two different murine tumor models, the modulatory effects of 5AC on TU-MDSCs and CY-MDSCs tumor growth and CY therapy. Indeed, the percentage of MDSCs in the TME and spleens of 5AC-treated mice bearing TRAMP-C2 or TC-1/A9 tumors was found decreased. The changes in the MDSC percentage were accompanied by a decrease in the Arg-1 gene expression, both in the TME and spleens. CY treatment of the tumors resulted in additional MDSC accumulation in the TME and spleens. This accumulation was subsequently inhibited by 5AC treatment. A combination of CY with 5AC led to the highest tumor growth inhibition. Furthermore, in vitro cultivation of spleen MDSCs in the presence of 5AC reduced the percentage of MDSCs. This reduction was associated with an increased percentage of CD11c(+) and CD86(+)/MHCII+ cells. The observed modulatory effect on MDSCs correlated with a reduction of the Arg-1 gene expression, VEGF production, and loss of suppressive capacity. Similar, albeit weaker effects were observed when MDSCs from the spleens of tumor-bearing animals were cultivated with 5AC. Our findings indicate that beside the direct antitumor effect, 5AC can reduce the percentage of MDSCs accumulating in the TME and spleens during tumor growth and CY chemotherapy, which can be beneficial for the outcome of cancer therapy. Direct effects of DNA demethylating agent 5-azacytidine on immunosuppressive myeloid cell subsets in cancer, suggest that co-administration of 5AC could improve therapeutic efficacy of existing cancer therapy.
引用
收藏
页码:743 / 753
页数:11
相关论文
共 50 条
  • [21] Induction of myeloid-derived suppressor cells by tumor exosomes
    Xiang, Xiaoyu
    Poliakov, Anton
    Liu, Cunren
    Liu, Yuelong
    Deng, Zhong-bin
    Wang, Jianhua
    Cheng, Ziqiang
    Shah, Spandan V.
    Wang, Gui-Jun
    Zhang, Liming
    Grizzle, William E.
    Mobley, Jim
    Zhang, Huang-Ge
    [J]. INTERNATIONAL JOURNAL OF CANCER, 2009, 124 (11) : 2621 - 2633
  • [22] The role of myeloid-derived suppressor cells in tumor development
    Ortiz, Myrna L.
    Cheng, Pingyan
    Luetteke, Noreen
    Youn, Je-In
    Gabriloyich, Dmitry I.
    [J]. CANCER RESEARCH, 2011, 71
  • [23] Regulation of Tumor Metastasis by Myeloid-Derived Suppressor Cells
    Condamine, Thomas
    Ramachandran, Indu
    Youn, Je-In
    Gabrilovich, Dmitry I.
    [J]. ANNUAL REVIEW OF MEDICINE, VOL 66, 2015, 66 : 97 - 110
  • [24] Myeloid-Derived Suppressor Cells: Not Only in Tumor Immunity
    Pawelec, Graham
    Verschoor, Chris P.
    Ostrand-Rosenberg, Suzanne
    [J]. FRONTIERS IN IMMUNOLOGY, 2019, 10
  • [25] Role of myeloid-derived suppressor cells in tumor immunotherapy
    Martin, Francois
    Apetoh, Lionel
    Ghiringhelli, Francois
    [J]. IMMUNOTHERAPY, 2012, 4 (01) : 43 - 57
  • [26] Claudin-12 Deficiency Inhibits Tumor Growth by Impairing Transendothelial Migration of Myeloid-Derived Suppressor Cells
    Cao, Hong
    Ni, Chen
    Han, Le
    Wang, Ruoqi
    Blasig, Rosel
    Haseloff, Reiner
    Qin, Yue
    Lan, Jie
    Lou, Xiaohan
    Ma, Pan
    Yao, Xiaohan
    Wang, Linlin
    Wang, Fei
    Zhu, Linyu
    Lei, Ningjing
    Blasig, Ingolf E.
    Qin, Zhihai
    [J]. CANCER RESEARCH, 2022, 82 (13) : 2472 - 2484
  • [27] Targeting Myeloid-Derived Suppressor Cells to Bypass Tumor-Induced Immunosuppression
    Fleming, Viktor
    Hu, Xiaoying
    Weber, Rebekka
    Nagibin, Vasyl
    Groth, Christopher
    Altevogt, Peter
    Utikal, Jochen
    Umansky, Viktor
    [J]. FRONTIERS IN IMMUNOLOGY, 2018, 9
  • [28] Tumor-derived exosomes, myeloid-derived suppressor cells, and tumor microenvironment
    Tian, Xinyu
    Shen, Han
    Li, Zhiyang
    Wang, Tingting
    Wang, Shengjun
    [J]. JOURNAL OF HEMATOLOGY & ONCOLOGY, 2019, 12 (01)
  • [29] Tumor-derived exosomes, myeloid-derived suppressor cells, and tumor microenvironment
    Xinyu Tian
    Han Shen
    Zhiyang Li
    Tingting Wang
    Shengjun Wang
    [J]. Journal of Hematology & Oncology, 12
  • [30] A Novel DNA Aptamer for Dual Targeting of Polymorphonuclear Myeloid-derived Suppressor Cells and Tumor Cells
    Liu, Haoran
    Mai, Junhua
    Shen, Jianliang
    Wolfram, Joy
    Li, Zhaoqi
    Zhang, Guodong
    Xu, Rong
    Li, Yan
    Mu, Chaofeng
    Zu, Youli
    Li, Xin
    Lokesh, Ganesh L.
    Thiviyanathan, Varatharasa
    Volk, David E.
    Gorenstein, David G.
    Ferrari, Mauro
    Hu, Zhongbo
    Shen, Haifa
    [J]. THERANOSTICS, 2018, 8 (01): : 31 - 44