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Cytokine-induced killer cells efficiently kill stem-like cancer cells of nasopharyngeal carcinoma via the NKG2D-ligands recognition

Cancer stem cells (CSCs) are considered to be the root cause for cancer treatment failure. Thus, there remains an urgent need for more potent and safer therapies against CSCs for curing cancer. In this study, the antitumor activity of cytokine-induced killer (CIK) cells against putative CSCs of naso...

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Autores principales: Wei, Fang, Rong, Xiao-Xiang, Xie, Rao-Ying, Jia, Li-Ting, Wang, Hui-Yan, Qin, Yu-Juan, Chen, Lin, Shen, Hong-Fen, Lin, Xiao-Lin, Yang, Jie, Yang, Sheng, Hao, Wei-Chao, Chen, Yan, Xiao, Sheng-Jun, Zhou, Hui-Rong, Lin, Tao-Yan, Chen, Yu-Shuang, Sun, Yan, Yao, Kai-Tai, Xiao, Dong
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Impact Journals LLC 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4741506/
https://www.ncbi.nlm.nih.gov/pubmed/26418951
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author Wei, Fang
Rong, Xiao-Xiang
Xie, Rao-Ying
Jia, Li-Ting
Wang, Hui-Yan
Qin, Yu-Juan
Chen, Lin
Shen, Hong-Fen
Lin, Xiao-Lin
Yang, Jie
Yang, Sheng
Hao, Wei-Chao
Chen, Yan
Xiao, Sheng-Jun
Zhou, Hui-Rong
Lin, Tao-Yan
Chen, Yu-Shuang
Sun, Yan
Yao, Kai-Tai
Xiao, Dong
author_facet Wei, Fang
Rong, Xiao-Xiang
Xie, Rao-Ying
Jia, Li-Ting
Wang, Hui-Yan
Qin, Yu-Juan
Chen, Lin
Shen, Hong-Fen
Lin, Xiao-Lin
Yang, Jie
Yang, Sheng
Hao, Wei-Chao
Chen, Yan
Xiao, Sheng-Jun
Zhou, Hui-Rong
Lin, Tao-Yan
Chen, Yu-Shuang
Sun, Yan
Yao, Kai-Tai
Xiao, Dong
author_sort Wei, Fang
collection PubMed
description Cancer stem cells (CSCs) are considered to be the root cause for cancer treatment failure. Thus, there remains an urgent need for more potent and safer therapies against CSCs for curing cancer. In this study, the antitumor activity of cytokine-induced killer (CIK) cells against putative CSCs of nasopharyngeal carcinoma (NPC) was fully evaluated in vitro and in vivo. To visualize putative CSCs in vitro by fluorescence imaging, and image and quantify putative CSCs in tumor xenograft-bearing mice by in vivo bioluminescence imaging, NPC cells were engineered with CSC detector vector encoding GFP and luciferase (Luc) under control of Nanog promoter. Our study reported in vitro intense tumor-killing activity of CIK cells against putative CSCs of NPC, as revealed by percentage analysis of side population cells, tumorsphere formation assay and Nanog-promoter-GFP-Luc reporter gene strategy plus time-lapse recording. Additionally, time-lapse imaging firstly illustrated that GFP-labeled or PKH26-labeled putative CSCs or tumorspheres were usually attacked simultaneously by many CIK cells and finally killed by CIK cells, suggesting the necessity of achieving sufficient effector-to-target ratios. We firstly confirmed that NKG2D blockade by anti-NKG2D antibody significantly but partially abrogated CIK cell-mediated cytolysis against putative CSCs. More importantly, intravenous infusion of CIK cells significantly delayed tumor growth in NOD/SCID mice, accompanied by a remarkable reduction in putative CSC number monitored by whole-body bioluminescence imaging. Taken together, our findings suggest that CIK cells demonstrate the intense tumor-killing activity against putative CSCs of NPC, at least in part, by NKG2D-ligands recognition. These results indicate that CIK cell-based therapeutic strategy against CSCs presents a promising and safe approach for cancer treatment.
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spelling pubmed-47415062016-03-15 Cytokine-induced killer cells efficiently kill stem-like cancer cells of nasopharyngeal carcinoma via the NKG2D-ligands recognition Wei, Fang Rong, Xiao-Xiang Xie, Rao-Ying Jia, Li-Ting Wang, Hui-Yan Qin, Yu-Juan Chen, Lin Shen, Hong-Fen Lin, Xiao-Lin Yang, Jie Yang, Sheng Hao, Wei-Chao Chen, Yan Xiao, Sheng-Jun Zhou, Hui-Rong Lin, Tao-Yan Chen, Yu-Shuang Sun, Yan Yao, Kai-Tai Xiao, Dong Oncotarget Research Paper Cancer stem cells (CSCs) are considered to be the root cause for cancer treatment failure. Thus, there remains an urgent need for more potent and safer therapies against CSCs for curing cancer. In this study, the antitumor activity of cytokine-induced killer (CIK) cells against putative CSCs of nasopharyngeal carcinoma (NPC) was fully evaluated in vitro and in vivo. To visualize putative CSCs in vitro by fluorescence imaging, and image and quantify putative CSCs in tumor xenograft-bearing mice by in vivo bioluminescence imaging, NPC cells were engineered with CSC detector vector encoding GFP and luciferase (Luc) under control of Nanog promoter. Our study reported in vitro intense tumor-killing activity of CIK cells against putative CSCs of NPC, as revealed by percentage analysis of side population cells, tumorsphere formation assay and Nanog-promoter-GFP-Luc reporter gene strategy plus time-lapse recording. Additionally, time-lapse imaging firstly illustrated that GFP-labeled or PKH26-labeled putative CSCs or tumorspheres were usually attacked simultaneously by many CIK cells and finally killed by CIK cells, suggesting the necessity of achieving sufficient effector-to-target ratios. We firstly confirmed that NKG2D blockade by anti-NKG2D antibody significantly but partially abrogated CIK cell-mediated cytolysis against putative CSCs. More importantly, intravenous infusion of CIK cells significantly delayed tumor growth in NOD/SCID mice, accompanied by a remarkable reduction in putative CSC number monitored by whole-body bioluminescence imaging. Taken together, our findings suggest that CIK cells demonstrate the intense tumor-killing activity against putative CSCs of NPC, at least in part, by NKG2D-ligands recognition. These results indicate that CIK cell-based therapeutic strategy against CSCs presents a promising and safe approach for cancer treatment. Impact Journals LLC 2015-09-16 /pmc/articles/PMC4741506/ /pubmed/26418951 Text en Copyright: © 2015 Wei et al. http://creativecommons.org/licenses/by/2.5/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Paper
Wei, Fang
Rong, Xiao-Xiang
Xie, Rao-Ying
Jia, Li-Ting
Wang, Hui-Yan
Qin, Yu-Juan
Chen, Lin
Shen, Hong-Fen
Lin, Xiao-Lin
Yang, Jie
Yang, Sheng
Hao, Wei-Chao
Chen, Yan
Xiao, Sheng-Jun
Zhou, Hui-Rong
Lin, Tao-Yan
Chen, Yu-Shuang
Sun, Yan
Yao, Kai-Tai
Xiao, Dong
Cytokine-induced killer cells efficiently kill stem-like cancer cells of nasopharyngeal carcinoma via the NKG2D-ligands recognition
title Cytokine-induced killer cells efficiently kill stem-like cancer cells of nasopharyngeal carcinoma via the NKG2D-ligands recognition
title_full Cytokine-induced killer cells efficiently kill stem-like cancer cells of nasopharyngeal carcinoma via the NKG2D-ligands recognition
title_fullStr Cytokine-induced killer cells efficiently kill stem-like cancer cells of nasopharyngeal carcinoma via the NKG2D-ligands recognition
title_full_unstemmed Cytokine-induced killer cells efficiently kill stem-like cancer cells of nasopharyngeal carcinoma via the NKG2D-ligands recognition
title_short Cytokine-induced killer cells efficiently kill stem-like cancer cells of nasopharyngeal carcinoma via the NKG2D-ligands recognition
title_sort cytokine-induced killer cells efficiently kill stem-like cancer cells of nasopharyngeal carcinoma via the nkg2d-ligands recognition
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4741506/
https://www.ncbi.nlm.nih.gov/pubmed/26418951
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