Cargando…

A subset of bone marrow stromal cells regulate ATP-binding cassette gene expression via insulin-like growth factor-I in a leukemia cell line

The importance of the insulin-like growth factor, IGF, as a signaling axis in cancer development, progression and metastasis is highlighted by its effects on cancer cells, notably proliferation and acquired resistance. The role of the microenvironment within which cancer cells evolve and which media...

Descripción completa

Detalles Bibliográficos
Autores principales: BENABOU, NADIA, MIRSHAHI, PEZHMAN, BORDU, CAMILE, FAUSSAT, ANNE-MARIE, TANG, RUOPING, THERWATH, AMU, SORIA, JEANETE, MARIE, JEAN-PIERE, MIRSHAHI, MASSOUD
Formato: Online Artículo Texto
Lenguaje:English
Publicado: D.A. Spandidos 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4151812/
https://www.ncbi.nlm.nih.gov/pubmed/25095896
http://dx.doi.org/10.3892/ijo.2014.2569
_version_ 1782333062186532864
author BENABOU, NADIA
MIRSHAHI, PEZHMAN
BORDU, CAMILE
FAUSSAT, ANNE-MARIE
TANG, RUOPING
THERWATH, AMU
SORIA, JEANETE
MARIE, JEAN-PIERE
MIRSHAHI, MASSOUD
author_facet BENABOU, NADIA
MIRSHAHI, PEZHMAN
BORDU, CAMILE
FAUSSAT, ANNE-MARIE
TANG, RUOPING
THERWATH, AMU
SORIA, JEANETE
MARIE, JEAN-PIERE
MIRSHAHI, MASSOUD
author_sort BENABOU, NADIA
collection PubMed
description The importance of the insulin-like growth factor, IGF, as a signaling axis in cancer development, progression and metastasis is highlighted by its effects on cancer cells, notably proliferation and acquired resistance. The role of the microenvironment within which cancer cells evolve and which mediates this effect is far from clear. Here, the involvement of IGF-I in inducing multidrug resistance in a myeloid leukemia cell line, grown in the presence of bone marrow-derived stromal cells called ‘Hospicells’ (BMH), is demonstrated. We found that i) drug sensitive as well as resistant leukemia cells express IGF-I and its receptor IGF-IR. However, the resistant cells were found to secrete high levels of IGF-I. ii) Presence of exogenous IGF-I promoted cell proliferation, which decreased when an inhibitor of IGF-IR (picropodophyllin, PPP) was added. iii) BMH and IGF-I are both involved in the regulation of genes of the ATP binding cassette (ABC) related to resistance development (MDR1, MRP1, MRP2, MRP3 and BCRP). iv) The levels of ABC gene expression by leukemia cells were found to increase in the presence of increasing numbers of BMH. However, these levels decreased when IGF-IR was inhibited by addition of PPP. v) Co-culture of the drug-sensitive leukemia cells with BMH induced protection against the action of daunorubicin. This chemoresistance was amplified by the presence of IGF-I whereas it decreased when IGF-IR was inhibited. Our results underline the role of microenvironment in concert with the IGF-1 pathway in conferring drug resistance to leukemia cells.
format Online
Article
Text
id pubmed-4151812
institution National Center for Biotechnology Information
language English
publishDate 2014
publisher D.A. Spandidos
record_format MEDLINE/PubMed
spelling pubmed-41518122014-09-03 A subset of bone marrow stromal cells regulate ATP-binding cassette gene expression via insulin-like growth factor-I in a leukemia cell line BENABOU, NADIA MIRSHAHI, PEZHMAN BORDU, CAMILE FAUSSAT, ANNE-MARIE TANG, RUOPING THERWATH, AMU SORIA, JEANETE MARIE, JEAN-PIERE MIRSHAHI, MASSOUD Int J Oncol Articles The importance of the insulin-like growth factor, IGF, as a signaling axis in cancer development, progression and metastasis is highlighted by its effects on cancer cells, notably proliferation and acquired resistance. The role of the microenvironment within which cancer cells evolve and which mediates this effect is far from clear. Here, the involvement of IGF-I in inducing multidrug resistance in a myeloid leukemia cell line, grown in the presence of bone marrow-derived stromal cells called ‘Hospicells’ (BMH), is demonstrated. We found that i) drug sensitive as well as resistant leukemia cells express IGF-I and its receptor IGF-IR. However, the resistant cells were found to secrete high levels of IGF-I. ii) Presence of exogenous IGF-I promoted cell proliferation, which decreased when an inhibitor of IGF-IR (picropodophyllin, PPP) was added. iii) BMH and IGF-I are both involved in the regulation of genes of the ATP binding cassette (ABC) related to resistance development (MDR1, MRP1, MRP2, MRP3 and BCRP). iv) The levels of ABC gene expression by leukemia cells were found to increase in the presence of increasing numbers of BMH. However, these levels decreased when IGF-IR was inhibited by addition of PPP. v) Co-culture of the drug-sensitive leukemia cells with BMH induced protection against the action of daunorubicin. This chemoresistance was amplified by the presence of IGF-I whereas it decreased when IGF-IR was inhibited. Our results underline the role of microenvironment in concert with the IGF-1 pathway in conferring drug resistance to leukemia cells. D.A. Spandidos 2014-07-29 /pmc/articles/PMC4151812/ /pubmed/25095896 http://dx.doi.org/10.3892/ijo.2014.2569 Text en Copyright © 2014, Spandidos Publications http://creativecommons.org/licenses/by/3.0 This is an open-access article licensed under a Creative Commons Attribution-NonCommercial 3.0 Unported License. The article may be redistributed, reproduced, and reused for non-commercial purposes, provided the original source is properly cited.
spellingShingle Articles
BENABOU, NADIA
MIRSHAHI, PEZHMAN
BORDU, CAMILE
FAUSSAT, ANNE-MARIE
TANG, RUOPING
THERWATH, AMU
SORIA, JEANETE
MARIE, JEAN-PIERE
MIRSHAHI, MASSOUD
A subset of bone marrow stromal cells regulate ATP-binding cassette gene expression via insulin-like growth factor-I in a leukemia cell line
title A subset of bone marrow stromal cells regulate ATP-binding cassette gene expression via insulin-like growth factor-I in a leukemia cell line
title_full A subset of bone marrow stromal cells regulate ATP-binding cassette gene expression via insulin-like growth factor-I in a leukemia cell line
title_fullStr A subset of bone marrow stromal cells regulate ATP-binding cassette gene expression via insulin-like growth factor-I in a leukemia cell line
title_full_unstemmed A subset of bone marrow stromal cells regulate ATP-binding cassette gene expression via insulin-like growth factor-I in a leukemia cell line
title_short A subset of bone marrow stromal cells regulate ATP-binding cassette gene expression via insulin-like growth factor-I in a leukemia cell line
title_sort subset of bone marrow stromal cells regulate atp-binding cassette gene expression via insulin-like growth factor-i in a leukemia cell line
topic Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4151812/
https://www.ncbi.nlm.nih.gov/pubmed/25095896
http://dx.doi.org/10.3892/ijo.2014.2569
work_keys_str_mv AT benabounadia asubsetofbonemarrowstromalcellsregulateatpbindingcassettegeneexpressionviainsulinlikegrowthfactoriinaleukemiacellline
AT mirshahipezhman asubsetofbonemarrowstromalcellsregulateatpbindingcassettegeneexpressionviainsulinlikegrowthfactoriinaleukemiacellline
AT borducamile asubsetofbonemarrowstromalcellsregulateatpbindingcassettegeneexpressionviainsulinlikegrowthfactoriinaleukemiacellline
AT faussatannemarie asubsetofbonemarrowstromalcellsregulateatpbindingcassettegeneexpressionviainsulinlikegrowthfactoriinaleukemiacellline
AT tangruoping asubsetofbonemarrowstromalcellsregulateatpbindingcassettegeneexpressionviainsulinlikegrowthfactoriinaleukemiacellline
AT therwathamu asubsetofbonemarrowstromalcellsregulateatpbindingcassettegeneexpressionviainsulinlikegrowthfactoriinaleukemiacellline
AT soriajeanete asubsetofbonemarrowstromalcellsregulateatpbindingcassettegeneexpressionviainsulinlikegrowthfactoriinaleukemiacellline
AT mariejeanpiere asubsetofbonemarrowstromalcellsregulateatpbindingcassettegeneexpressionviainsulinlikegrowthfactoriinaleukemiacellline
AT mirshahimassoud asubsetofbonemarrowstromalcellsregulateatpbindingcassettegeneexpressionviainsulinlikegrowthfactoriinaleukemiacellline
AT benabounadia subsetofbonemarrowstromalcellsregulateatpbindingcassettegeneexpressionviainsulinlikegrowthfactoriinaleukemiacellline
AT mirshahipezhman subsetofbonemarrowstromalcellsregulateatpbindingcassettegeneexpressionviainsulinlikegrowthfactoriinaleukemiacellline
AT borducamile subsetofbonemarrowstromalcellsregulateatpbindingcassettegeneexpressionviainsulinlikegrowthfactoriinaleukemiacellline
AT faussatannemarie subsetofbonemarrowstromalcellsregulateatpbindingcassettegeneexpressionviainsulinlikegrowthfactoriinaleukemiacellline
AT tangruoping subsetofbonemarrowstromalcellsregulateatpbindingcassettegeneexpressionviainsulinlikegrowthfactoriinaleukemiacellline
AT therwathamu subsetofbonemarrowstromalcellsregulateatpbindingcassettegeneexpressionviainsulinlikegrowthfactoriinaleukemiacellline
AT soriajeanete subsetofbonemarrowstromalcellsregulateatpbindingcassettegeneexpressionviainsulinlikegrowthfactoriinaleukemiacellline
AT mariejeanpiere subsetofbonemarrowstromalcellsregulateatpbindingcassettegeneexpressionviainsulinlikegrowthfactoriinaleukemiacellline
AT mirshahimassoud subsetofbonemarrowstromalcellsregulateatpbindingcassettegeneexpressionviainsulinlikegrowthfactoriinaleukemiacellline