Cargando…

Bafilomycin A1 triggers proliferative potential of senescent cancer cells in vitro and in NOD/SCID mice

Anticancer therapies that induce DNA damage tend to trigger senescence in cancer cells, a process known as therapy-induced senescence (TIS). Such cells may undergo atypical divisions, thus contributing to tumor re-growth. Accumulation of senescent cancer cells reduces survival of patients after chem...

Descripción completa

Detalles Bibliográficos
Autores principales: Was, Halina, Barszcz, Kamila, Czarnecka, Joanna, Kowalczyk, Agata, Bernas, Tytus, Uzarowska, Ewelina, Koza, Paulina, Klejman, Agata, Piwocka, Katarzyna, Kaminska, Bozena, Sikora, Eva
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Impact Journals LLC 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5354733/
https://www.ncbi.nlm.nih.gov/pubmed/28030837
http://dx.doi.org/10.18632/oncotarget.14066
_version_ 1782515376749281280
author Was, Halina
Barszcz, Kamila
Czarnecka, Joanna
Kowalczyk, Agata
Bernas, Tytus
Uzarowska, Ewelina
Koza, Paulina
Klejman, Agata
Piwocka, Katarzyna
Kaminska, Bozena
Sikora, Eva
author_facet Was, Halina
Barszcz, Kamila
Czarnecka, Joanna
Kowalczyk, Agata
Bernas, Tytus
Uzarowska, Ewelina
Koza, Paulina
Klejman, Agata
Piwocka, Katarzyna
Kaminska, Bozena
Sikora, Eva
author_sort Was, Halina
collection PubMed
description Anticancer therapies that induce DNA damage tend to trigger senescence in cancer cells, a process known as therapy-induced senescence (TIS). Such cells may undergo atypical divisions, thus contributing to tumor re-growth. Accumulation of senescent cancer cells reduces survival of patients after chemotherapy. As senescence interplays with autophagy, a dynamic recycling process, we sought to study whether inhibition of autophagy interferes with divisions of TIS cells. We exposed human colon cancer HCT116 cells to repeated cycles of a chemotherapeutic agent – doxorubicin (doxo) and demonstrated induction of hallmarks of TIS (e.g. growth arrest, hypertrophy, poliploidization and secretory phenotype) and certain properties of cancer stem cells (increased NANOG expression, percentages of CD24+ cells and side population). Colonies of small and highly proliferative progeny appeared shortly after drug removal. Treatment with bafilomycin A1 (BAF A1), an autophagy inhibitor, postponed short term in vitro cell re-population. It was associated with reduction in the number of diploid and increase in the number of poliploid cells. In a long term, a pulse of BAF A1 resulted in reactivation of autophagy in a subpopulation of HCT116 cells and increased proliferation. Accordingly, the senescent HCT116 cells treated with BAF A1 when injected into NOD/SCID mice formed tumors, in contrast to the controls. Our results suggest that senescent cancer cells that appear during therapy, can be considered as dormant cells that contribute to cancer re-growth, when chemotherapeutic treatment is stopped. These data unveil new mechanisms of TIS-related cancer maintenance and re-population, triggered by a single pulse of BAF A1 treatment.
format Online
Article
Text
id pubmed-5354733
institution National Center for Biotechnology Information
language English
publishDate 2016
publisher Impact Journals LLC
record_format MEDLINE/PubMed
spelling pubmed-53547332017-04-14 Bafilomycin A1 triggers proliferative potential of senescent cancer cells in vitro and in NOD/SCID mice Was, Halina Barszcz, Kamila Czarnecka, Joanna Kowalczyk, Agata Bernas, Tytus Uzarowska, Ewelina Koza, Paulina Klejman, Agata Piwocka, Katarzyna Kaminska, Bozena Sikora, Eva Oncotarget Research Paper Anticancer therapies that induce DNA damage tend to trigger senescence in cancer cells, a process known as therapy-induced senescence (TIS). Such cells may undergo atypical divisions, thus contributing to tumor re-growth. Accumulation of senescent cancer cells reduces survival of patients after chemotherapy. As senescence interplays with autophagy, a dynamic recycling process, we sought to study whether inhibition of autophagy interferes with divisions of TIS cells. We exposed human colon cancer HCT116 cells to repeated cycles of a chemotherapeutic agent – doxorubicin (doxo) and demonstrated induction of hallmarks of TIS (e.g. growth arrest, hypertrophy, poliploidization and secretory phenotype) and certain properties of cancer stem cells (increased NANOG expression, percentages of CD24+ cells and side population). Colonies of small and highly proliferative progeny appeared shortly after drug removal. Treatment with bafilomycin A1 (BAF A1), an autophagy inhibitor, postponed short term in vitro cell re-population. It was associated with reduction in the number of diploid and increase in the number of poliploid cells. In a long term, a pulse of BAF A1 resulted in reactivation of autophagy in a subpopulation of HCT116 cells and increased proliferation. Accordingly, the senescent HCT116 cells treated with BAF A1 when injected into NOD/SCID mice formed tumors, in contrast to the controls. Our results suggest that senescent cancer cells that appear during therapy, can be considered as dormant cells that contribute to cancer re-growth, when chemotherapeutic treatment is stopped. These data unveil new mechanisms of TIS-related cancer maintenance and re-population, triggered by a single pulse of BAF A1 treatment. Impact Journals LLC 2016-12-21 /pmc/articles/PMC5354733/ /pubmed/28030837 http://dx.doi.org/10.18632/oncotarget.14066 Text en Copyright: © 2017 Was et al. http://creativecommons.org/licenses/by/3.0/ 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
Was, Halina
Barszcz, Kamila
Czarnecka, Joanna
Kowalczyk, Agata
Bernas, Tytus
Uzarowska, Ewelina
Koza, Paulina
Klejman, Agata
Piwocka, Katarzyna
Kaminska, Bozena
Sikora, Eva
Bafilomycin A1 triggers proliferative potential of senescent cancer cells in vitro and in NOD/SCID mice
title Bafilomycin A1 triggers proliferative potential of senescent cancer cells in vitro and in NOD/SCID mice
title_full Bafilomycin A1 triggers proliferative potential of senescent cancer cells in vitro and in NOD/SCID mice
title_fullStr Bafilomycin A1 triggers proliferative potential of senescent cancer cells in vitro and in NOD/SCID mice
title_full_unstemmed Bafilomycin A1 triggers proliferative potential of senescent cancer cells in vitro and in NOD/SCID mice
title_short Bafilomycin A1 triggers proliferative potential of senescent cancer cells in vitro and in NOD/SCID mice
title_sort bafilomycin a1 triggers proliferative potential of senescent cancer cells in vitro and in nod/scid mice
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5354733/
https://www.ncbi.nlm.nih.gov/pubmed/28030837
http://dx.doi.org/10.18632/oncotarget.14066
work_keys_str_mv AT washalina bafilomycina1triggersproliferativepotentialofsenescentcancercellsinvitroandinnodscidmice
AT barszczkamila bafilomycina1triggersproliferativepotentialofsenescentcancercellsinvitroandinnodscidmice
AT czarneckajoanna bafilomycina1triggersproliferativepotentialofsenescentcancercellsinvitroandinnodscidmice
AT kowalczykagata bafilomycina1triggersproliferativepotentialofsenescentcancercellsinvitroandinnodscidmice
AT bernastytus bafilomycina1triggersproliferativepotentialofsenescentcancercellsinvitroandinnodscidmice
AT uzarowskaewelina bafilomycina1triggersproliferativepotentialofsenescentcancercellsinvitroandinnodscidmice
AT kozapaulina bafilomycina1triggersproliferativepotentialofsenescentcancercellsinvitroandinnodscidmice
AT klejmanagata bafilomycina1triggersproliferativepotentialofsenescentcancercellsinvitroandinnodscidmice
AT piwockakatarzyna bafilomycina1triggersproliferativepotentialofsenescentcancercellsinvitroandinnodscidmice
AT kaminskabozena bafilomycina1triggersproliferativepotentialofsenescentcancercellsinvitroandinnodscidmice
AT sikoraeva bafilomycina1triggersproliferativepotentialofsenescentcancercellsinvitroandinnodscidmice