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Published in: Cancer Immunology, Immunotherapy 8/2012

01-08-2012 | Original Article

Sensitivity of a novel model of mammary cancer stem cell-like cells to TNF-related death pathways

Authors: Ming Li, Deborah A. Knight, Mark J. Smyth, Trina J. Stewart

Published in: Cancer Immunology, Immunotherapy | Issue 8/2012

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Abstract

Cancer stem cells (CSC) are resistant to radiation and chemotherapy and play a significant role in cancer recurrence and metastatic disease. It is therefore important to identify alternative strategies, such as immunotherapies that can be used to control this refractory population. A CD44+CD24−/low subpopulation of cells within the B6 PyMT-MMTV transgenic mouse-derived AT-3 mammary carcinoma cell line was identified, which had CSC-like characteristics, including pluripotency and a resistance to chemo- and radiotherapy. Therefore, unlike xenograph models that require immunocompromised settings, this novel system may provide a means to study immune-mediated responses against CSC-like cells. The immunobiology of the AT-3 CSC-like cell population was studied by their surface molecule expression profile and their sensitivity to specified cell death pathways. Comparable levels of Rae-1, CD155, CD54 and higher levels of Fas and DR5 were expressed on the AT-3 CSC-like cells compared to non-CSC-like tumor cells. Expression correlated with an in vitro sensitivity to cell death by NK cells or through the ligation of the death receptors (Fas or DR5), by their ligands or anti-Fas and anti-DR5 mAbs. Indeed, compared to the rest of the AT-3 tumor cells, the CD44+CD24−/low subpopulation of cells were more sensitive to both Fas- and TRAIL-mediated cell death pathways. Therefore, despite the refractory nature of CSC to other conventional therapies, these CSC-like cells were not inherently resistant to specified forms of immune-mediated cell death. These results encourage the continued investigation into immunotherapeutic strategies as a means of controlling breast CSC, particularly through their cell death pathways.
Literature
8.
go back to reference Oliveira LR, Jeffrey SS, Ribeiro-Silva A (2010) Stem cells in human breast cancer. Histol Histopathol 25:371–385PubMed Oliveira LR, Jeffrey SS, Ribeiro-Silva A (2010) Stem cells in human breast cancer. Histol Histopathol 25:371–385PubMed
15.
go back to reference Stewart TJ, Abrams SI (2007) Altered immune function during long-term host-tumor interactions can be modulated to retard autochthonous neoplastic growth. J Immunol 179:2851–2859PubMed Stewart TJ, Abrams SI (2007) Altered immune function during long-term host-tumor interactions can be modulated to retard autochthonous neoplastic growth. J Immunol 179:2851–2859PubMed
16.
go back to reference Nakayama M, Harada N, Okumura K, Yagita H (2003) Characterization of murine TWEAK and its receptor (Fn14) by monoclonal antibodies. Biochem Biophys Res Commun 306:819–825PubMedCrossRef Nakayama M, Harada N, Okumura K, Yagita H (2003) Characterization of murine TWEAK and its receptor (Fn14) by monoclonal antibodies. Biochem Biophys Res Commun 306:819–825PubMedCrossRef
17.
go back to reference Latour S, Fridman WH, Daeron M (1996) Identification, molecular cloning, biologic properties, and tissue distribution of a novel isoform of murine low-affinity IgG receptor homologous to human Fc gamma RIIB1. J Immunol 157:189–197PubMed Latour S, Fridman WH, Daeron M (1996) Identification, molecular cloning, biologic properties, and tissue distribution of a novel isoform of murine low-affinity IgG receptor homologous to human Fc gamma RIIB1. J Immunol 157:189–197PubMed
19.
go back to reference Chan CJ, Andrews DM, McLaughlin NM, Yagita H, Gilfillan S, Colonna M, Smyth MJ (2010) DNAM-1/CD155 interactions promote cytokine and NK cell-mediated suppression of poorly immunogenic melanoma metastases. J Immunol 184:902–911. doi:10.4049/jimmunol.0903225 PubMedCrossRef Chan CJ, Andrews DM, McLaughlin NM, Yagita H, Gilfillan S, Colonna M, Smyth MJ (2010) DNAM-1/CD155 interactions promote cytokine and NK cell-mediated suppression of poorly immunogenic melanoma metastases. J Immunol 184:902–911. doi:10.​4049/​jimmunol.​0903225 PubMedCrossRef
20.
go back to reference Dontu G, Abdallah WM, Foley JM, Jackson KW, Clarke MF, Kawamura MJ, Wicha MS (2003) In vitro propagation and transcriptional profiling of human mammary stem/progenitor cells. Genes Dev 17:1253–1270. doi:10.1101/gad.1061803 PubMedCrossRef Dontu G, Abdallah WM, Foley JM, Jackson KW, Clarke MF, Kawamura MJ, Wicha MS (2003) In vitro propagation and transcriptional profiling of human mammary stem/progenitor cells. Genes Dev 17:1253–1270. doi:10.​1101/​gad.​1061803 PubMedCrossRef
25.
go back to reference Hurt EM, Farrar WL (2010) Purification and characterization of cancer stem cells. In: Farrar WL (ed) Cancer stem cells, 1st edn. Cambridge University Press, New York, NY, pp 1–14 Hurt EM, Farrar WL (2010) Purification and characterization of cancer stem cells. In: Farrar WL (ed) Cancer stem cells, 1st edn. Cambridge University Press, New York, NY, pp 1–14
26.
go back to reference Nakshatri H, Srour EF, Badve S (2009) Breast cancer stem cells and intrinsic subtypes: controversies rage on. Curr Stem Cell Res Ther 4:50–60PubMedCrossRef Nakshatri H, Srour EF, Badve S (2009) Breast cancer stem cells and intrinsic subtypes: controversies rage on. Curr Stem Cell Res Ther 4:50–60PubMedCrossRef
28.
29.
go back to reference Ogasawara J, Watanabe-Fukunaga R, Adachi M, Matsuzawa A, Kasugai T, Kitamura Y, Itoh N, Suda T, Nagata S (1993) Lethal effect of the anti-Fas antibody in mice. Nature 364:806–809. doi:10.1038/364806a0 PubMedCrossRef Ogasawara J, Watanabe-Fukunaga R, Adachi M, Matsuzawa A, Kasugai T, Kitamura Y, Itoh N, Suda T, Nagata S (1993) Lethal effect of the anti-Fas antibody in mice. Nature 364:806–809. doi:10.​1038/​364806a0 PubMedCrossRef
33.
go back to reference Rajeshkumar NV, Rasheed ZA, Garcia-Garcia E, Lopez-Rios F, Fujiwara K, Matsui WH, Hidalgo M (2010) A combination of DR5 agonistic monoclonal antibody with gemcitabine targets pancreatic cancer stem cells and results in long-term disease control in human pancreatic cancer model. Mol Cancer Ther 9:2582–2592. doi:10.1158/1535-7163.MCT-10-0370 PubMedCrossRef Rajeshkumar NV, Rasheed ZA, Garcia-Garcia E, Lopez-Rios F, Fujiwara K, Matsui WH, Hidalgo M (2010) A combination of DR5 agonistic monoclonal antibody with gemcitabine targets pancreatic cancer stem cells and results in long-term disease control in human pancreatic cancer model. Mol Cancer Ther 9:2582–2592. doi:10.​1158/​1535-7163.​MCT-10-0370 PubMedCrossRef
34.
go back to reference Deonarain MP, Kousparou CA, Epenetos AA (2009) Antibodies targeting cancer stem cells: a new paradigm in immunotherapy? MAbs 1:12–25PubMedCrossRef Deonarain MP, Kousparou CA, Epenetos AA (2009) Antibodies targeting cancer stem cells: a new paradigm in immunotherapy? MAbs 1:12–25PubMedCrossRef
Metadata
Title
Sensitivity of a novel model of mammary cancer stem cell-like cells to TNF-related death pathways
Authors
Ming Li
Deborah A. Knight
Mark J. Smyth
Trina J. Stewart
Publication date
01-08-2012
Publisher
Springer-Verlag
Published in
Cancer Immunology, Immunotherapy / Issue 8/2012
Print ISSN: 0340-7004
Electronic ISSN: 1432-0851
DOI
https://doi.org/10.1007/s00262-012-1200-1

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