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Amplifications of stemness genes and the capacity of breast tumors for metastasis

Introduction: The phenomenon of non-CSC (cancer stem cell) to CSC plasticity has been previously described in multiple studies and occurs during the ectopic expression of stemness genes such as OCT3, SOX2, KLF4, MYC, NOTCH1, and NANOG. In our opinion, acquiring the ability to ectopically express ste...

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Autores principales: Litviakov, Nikolai, Ibragimova, Marina, Tsyganov, Matvey, Kazantseva, Polina, Deryusheva, Irina, Pevzner, Alina, Doroshenko, Artem, Garbukov, Eugeny, Tarabanovskaya, Natalia, Slonimskaya, Elena
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Impact Journals LLC 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7260118/
https://www.ncbi.nlm.nih.gov/pubmed/32523653
http://dx.doi.org/10.18632/oncotarget.27608
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author Litviakov, Nikolai
Ibragimova, Marina
Tsyganov, Matvey
Kazantseva, Polina
Deryusheva, Irina
Pevzner, Alina
Doroshenko, Artem
Garbukov, Eugeny
Tarabanovskaya, Natalia
Slonimskaya, Elena
author_facet Litviakov, Nikolai
Ibragimova, Marina
Tsyganov, Matvey
Kazantseva, Polina
Deryusheva, Irina
Pevzner, Alina
Doroshenko, Artem
Garbukov, Eugeny
Tarabanovskaya, Natalia
Slonimskaya, Elena
author_sort Litviakov, Nikolai
collection PubMed
description Introduction: The phenomenon of non-CSC (cancer stem cell) to CSC plasticity has been previously described in multiple studies and occurs during the ectopic expression of stemness genes such as OCT3, SOX2, KLF4, MYC, NOTCH1, and NANOG. In our opinion, acquiring the ability to ectopically express stemness genes, selected by bioinformatics analysis and, accordingly, non-CSC to CSC plasticity, is due to amplification of genes at the following locations: 3q, 5p, 6p, 7q, 8q, 13q, 9p, 9q, 10p, 10q21.1, 16p, 18chr, 19p. This paper demonstrates the significance of stemness gene amplifications leading to metastasis and stem-like cancer cell activity. Materials and Methods: In our studies, stemness gene amplifications were determined using the CytoScan HD Array. We studied the association of changes in stemness gene amplifications in tumors with metastasis treated with neoadjuvant chemotherapy (NAC) in 50 patients with breast cancer. We used qPCR to evaluate the expression of 13 stemness genes in tumors before and after NAC in 98 patients with breast cancer. Using primary cultures from the breast tumor of patient St23784/17 with stemness gene amplifications (SOX2, MYC, KLF4, NOTCH1, NODAL) and patient Ti41749/17 without stemness gene amplifications in the tumor, we studied the expression of stemness genes, proliferative tumor stem-cell activity, mammosphere formation, and expression of the CD44 tumor stem cell marker. Results: The occurrence of amplifications at regions of stemness gene localization during NAC (22% cases) in residual tumors was associated with a very high metastasis rate (91% cases). Eliminating tumor clones with stemness gene amplifications using NAC (42% cases) led to 100% metastasis-free survival. In patients who developed hematogenic metastases after treatment, the expression of 7/13 stemness genes in the residual tumor after NAC was statistically higher than in patients without metastases. Primary cultures of EpCam(+) tumor cells from patients with stemness gene amplifications revealed high proliferative activity. After the 3rd passage, the number of tumor cells increased 30-fold. Due to IL-6, this cell population showed a 2.5-fold increase in the EpCam(+)CD44(hi)CD24(–/low) and 2-fold decrease in the EpCam(+)CD44(low)CD24(–) subpopulations of tumor stem cells; the formation of mammospheres was also observed. Primary cultures of EpCam+ tumor cells from the patient with no stemness gene amplifications had relatively low proliferative activity. IL-6 caused a 2.3-fold increase in the EpCam(+)CD44(low)CD24(–) and 2-fold decrease in the EpCam(+)CD44(hi)CD24(–/low) subpopulations of tumor stem cells with no induction of mammospheres. Conclusions: The results of this study show that stemness gene amplifications in tumor cells are associated with metastasis and determine their potential stem property activation and non-CSC to CSC plasticity with the formation of EpCam(+)CD44(hi)CD24(–/low) cells, active proliferation, mammosphere formation, and metastasis.
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spelling pubmed-72601182020-06-09 Amplifications of stemness genes and the capacity of breast tumors for metastasis Litviakov, Nikolai Ibragimova, Marina Tsyganov, Matvey Kazantseva, Polina Deryusheva, Irina Pevzner, Alina Doroshenko, Artem Garbukov, Eugeny Tarabanovskaya, Natalia Slonimskaya, Elena Oncotarget Research Paper Introduction: The phenomenon of non-CSC (cancer stem cell) to CSC plasticity has been previously described in multiple studies and occurs during the ectopic expression of stemness genes such as OCT3, SOX2, KLF4, MYC, NOTCH1, and NANOG. In our opinion, acquiring the ability to ectopically express stemness genes, selected by bioinformatics analysis and, accordingly, non-CSC to CSC plasticity, is due to amplification of genes at the following locations: 3q, 5p, 6p, 7q, 8q, 13q, 9p, 9q, 10p, 10q21.1, 16p, 18chr, 19p. This paper demonstrates the significance of stemness gene amplifications leading to metastasis and stem-like cancer cell activity. Materials and Methods: In our studies, stemness gene amplifications were determined using the CytoScan HD Array. We studied the association of changes in stemness gene amplifications in tumors with metastasis treated with neoadjuvant chemotherapy (NAC) in 50 patients with breast cancer. We used qPCR to evaluate the expression of 13 stemness genes in tumors before and after NAC in 98 patients with breast cancer. Using primary cultures from the breast tumor of patient St23784/17 with stemness gene amplifications (SOX2, MYC, KLF4, NOTCH1, NODAL) and patient Ti41749/17 without stemness gene amplifications in the tumor, we studied the expression of stemness genes, proliferative tumor stem-cell activity, mammosphere formation, and expression of the CD44 tumor stem cell marker. Results: The occurrence of amplifications at regions of stemness gene localization during NAC (22% cases) in residual tumors was associated with a very high metastasis rate (91% cases). Eliminating tumor clones with stemness gene amplifications using NAC (42% cases) led to 100% metastasis-free survival. In patients who developed hematogenic metastases after treatment, the expression of 7/13 stemness genes in the residual tumor after NAC was statistically higher than in patients without metastases. Primary cultures of EpCam(+) tumor cells from patients with stemness gene amplifications revealed high proliferative activity. After the 3rd passage, the number of tumor cells increased 30-fold. Due to IL-6, this cell population showed a 2.5-fold increase in the EpCam(+)CD44(hi)CD24(–/low) and 2-fold decrease in the EpCam(+)CD44(low)CD24(–) subpopulations of tumor stem cells; the formation of mammospheres was also observed. Primary cultures of EpCam+ tumor cells from the patient with no stemness gene amplifications had relatively low proliferative activity. IL-6 caused a 2.3-fold increase in the EpCam(+)CD44(low)CD24(–) and 2-fold decrease in the EpCam(+)CD44(hi)CD24(–/low) subpopulations of tumor stem cells with no induction of mammospheres. Conclusions: The results of this study show that stemness gene amplifications in tumor cells are associated with metastasis and determine their potential stem property activation and non-CSC to CSC plasticity with the formation of EpCam(+)CD44(hi)CD24(–/low) cells, active proliferation, mammosphere formation, and metastasis. Impact Journals LLC 2020-05-26 /pmc/articles/PMC7260118/ /pubmed/32523653 http://dx.doi.org/10.18632/oncotarget.27608 Text en http://creativecommons.org/licenses/by/3.0/ Copyright: Litviakov et al. This is an open-access article distributed under the terms of the Creative Commons Attribution License 3.0 (CC BY 3.0), which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Paper
Litviakov, Nikolai
Ibragimova, Marina
Tsyganov, Matvey
Kazantseva, Polina
Deryusheva, Irina
Pevzner, Alina
Doroshenko, Artem
Garbukov, Eugeny
Tarabanovskaya, Natalia
Slonimskaya, Elena
Amplifications of stemness genes and the capacity of breast tumors for metastasis
title Amplifications of stemness genes and the capacity of breast tumors for metastasis
title_full Amplifications of stemness genes and the capacity of breast tumors for metastasis
title_fullStr Amplifications of stemness genes and the capacity of breast tumors for metastasis
title_full_unstemmed Amplifications of stemness genes and the capacity of breast tumors for metastasis
title_short Amplifications of stemness genes and the capacity of breast tumors for metastasis
title_sort amplifications of stemness genes and the capacity of breast tumors for metastasis
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7260118/
https://www.ncbi.nlm.nih.gov/pubmed/32523653
http://dx.doi.org/10.18632/oncotarget.27608
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