Cargando…

Osteoclasts control reactivation of dormant myeloma cells by remodelling the endosteal niche

Multiple myeloma is largely incurable, despite development of therapies that target myeloma cell-intrinsic pathways. Disease relapse is thought to originate from dormant myeloma cells, localized in specialized niches, which resist therapy and repopulate the tumour. However, little is known about the...

Descripción completa

Detalles Bibliográficos
Autores principales: Lawson, Michelle A., McDonald, Michelle M., Kovacic, Natasa, Hua Khoo, Weng, Terry, Rachael L., Down, Jenny, Kaplan, Warren, Paton-Hough, Julia, Fellows, Clair, Pettitt, Jessica A., Neil Dear, T., Van Valckenborgh, Els, Baldock, Paul A., Rogers, Michael J., Eaton, Colby L., Vanderkerken, Karin, Pettit, Allison R., Quinn, Julian M. W., Zannettino, Andrew C. W., Phan, Tri Giang, Croucher, Peter I.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4686867/
https://www.ncbi.nlm.nih.gov/pubmed/26632274
http://dx.doi.org/10.1038/ncomms9983
_version_ 1782406514500173824
author Lawson, Michelle A.
McDonald, Michelle M.
Kovacic, Natasa
Hua Khoo, Weng
Terry, Rachael L.
Down, Jenny
Kaplan, Warren
Paton-Hough, Julia
Fellows, Clair
Pettitt, Jessica A.
Neil Dear, T.
Van Valckenborgh, Els
Baldock, Paul A.
Rogers, Michael J.
Eaton, Colby L.
Vanderkerken, Karin
Pettit, Allison R.
Quinn, Julian M. W.
Zannettino, Andrew C. W.
Phan, Tri Giang
Croucher, Peter I.
author_facet Lawson, Michelle A.
McDonald, Michelle M.
Kovacic, Natasa
Hua Khoo, Weng
Terry, Rachael L.
Down, Jenny
Kaplan, Warren
Paton-Hough, Julia
Fellows, Clair
Pettitt, Jessica A.
Neil Dear, T.
Van Valckenborgh, Els
Baldock, Paul A.
Rogers, Michael J.
Eaton, Colby L.
Vanderkerken, Karin
Pettit, Allison R.
Quinn, Julian M. W.
Zannettino, Andrew C. W.
Phan, Tri Giang
Croucher, Peter I.
author_sort Lawson, Michelle A.
collection PubMed
description Multiple myeloma is largely incurable, despite development of therapies that target myeloma cell-intrinsic pathways. Disease relapse is thought to originate from dormant myeloma cells, localized in specialized niches, which resist therapy and repopulate the tumour. However, little is known about the niche, and how it exerts cell-extrinsic control over myeloma cell dormancy and reactivation. In this study, we track individual myeloma cells by intravital imaging as they colonize the endosteal niche, enter a dormant state and subsequently become activated to form colonies. We demonstrate that dormancy is a reversible state that is switched ‘on' by engagement with bone-lining cells or osteoblasts, and switched ‘off' by osteoclasts remodelling the endosteal niche. Dormant myeloma cells are resistant to chemotherapy that targets dividing cells. The demonstration that the endosteal niche is pivotal in controlling myeloma cell dormancy highlights the potential for targeting cell-extrinsic mechanisms to overcome cell-intrinsic drug resistance and prevent disease relapse.
format Online
Article
Text
id pubmed-4686867
institution National Center for Biotechnology Information
language English
publishDate 2015
publisher Nature Publishing Group
record_format MEDLINE/PubMed
spelling pubmed-46868672016-01-07 Osteoclasts control reactivation of dormant myeloma cells by remodelling the endosteal niche Lawson, Michelle A. McDonald, Michelle M. Kovacic, Natasa Hua Khoo, Weng Terry, Rachael L. Down, Jenny Kaplan, Warren Paton-Hough, Julia Fellows, Clair Pettitt, Jessica A. Neil Dear, T. Van Valckenborgh, Els Baldock, Paul A. Rogers, Michael J. Eaton, Colby L. Vanderkerken, Karin Pettit, Allison R. Quinn, Julian M. W. Zannettino, Andrew C. W. Phan, Tri Giang Croucher, Peter I. Nat Commun Article Multiple myeloma is largely incurable, despite development of therapies that target myeloma cell-intrinsic pathways. Disease relapse is thought to originate from dormant myeloma cells, localized in specialized niches, which resist therapy and repopulate the tumour. However, little is known about the niche, and how it exerts cell-extrinsic control over myeloma cell dormancy and reactivation. In this study, we track individual myeloma cells by intravital imaging as they colonize the endosteal niche, enter a dormant state and subsequently become activated to form colonies. We demonstrate that dormancy is a reversible state that is switched ‘on' by engagement with bone-lining cells or osteoblasts, and switched ‘off' by osteoclasts remodelling the endosteal niche. Dormant myeloma cells are resistant to chemotherapy that targets dividing cells. The demonstration that the endosteal niche is pivotal in controlling myeloma cell dormancy highlights the potential for targeting cell-extrinsic mechanisms to overcome cell-intrinsic drug resistance and prevent disease relapse. Nature Publishing Group 2015-12-03 /pmc/articles/PMC4686867/ /pubmed/26632274 http://dx.doi.org/10.1038/ncomms9983 Text en Copyright © 2015, Nature Publishing Group, a division of Macmillan Publishers Limited. All Rights Reserved. http://creativecommons.org/licenses/by/4.0/ This work is licensed under a Creative Commons Attribution 4.0 International License. The images or other third party material in this article are included in the article's Creative Commons license, unless indicated otherwise in the credit line; if the material is not included under the Creative Commons license, users will need to obtain permission from the license holder to reproduce the material. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/
spellingShingle Article
Lawson, Michelle A.
McDonald, Michelle M.
Kovacic, Natasa
Hua Khoo, Weng
Terry, Rachael L.
Down, Jenny
Kaplan, Warren
Paton-Hough, Julia
Fellows, Clair
Pettitt, Jessica A.
Neil Dear, T.
Van Valckenborgh, Els
Baldock, Paul A.
Rogers, Michael J.
Eaton, Colby L.
Vanderkerken, Karin
Pettit, Allison R.
Quinn, Julian M. W.
Zannettino, Andrew C. W.
Phan, Tri Giang
Croucher, Peter I.
Osteoclasts control reactivation of dormant myeloma cells by remodelling the endosteal niche
title Osteoclasts control reactivation of dormant myeloma cells by remodelling the endosteal niche
title_full Osteoclasts control reactivation of dormant myeloma cells by remodelling the endosteal niche
title_fullStr Osteoclasts control reactivation of dormant myeloma cells by remodelling the endosteal niche
title_full_unstemmed Osteoclasts control reactivation of dormant myeloma cells by remodelling the endosteal niche
title_short Osteoclasts control reactivation of dormant myeloma cells by remodelling the endosteal niche
title_sort osteoclasts control reactivation of dormant myeloma cells by remodelling the endosteal niche
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4686867/
https://www.ncbi.nlm.nih.gov/pubmed/26632274
http://dx.doi.org/10.1038/ncomms9983
work_keys_str_mv AT lawsonmichellea osteoclastscontrolreactivationofdormantmyelomacellsbyremodellingtheendostealniche
AT mcdonaldmichellem osteoclastscontrolreactivationofdormantmyelomacellsbyremodellingtheendostealniche
AT kovacicnatasa osteoclastscontrolreactivationofdormantmyelomacellsbyremodellingtheendostealniche
AT huakhooweng osteoclastscontrolreactivationofdormantmyelomacellsbyremodellingtheendostealniche
AT terryrachaell osteoclastscontrolreactivationofdormantmyelomacellsbyremodellingtheendostealniche
AT downjenny osteoclastscontrolreactivationofdormantmyelomacellsbyremodellingtheendostealniche
AT kaplanwarren osteoclastscontrolreactivationofdormantmyelomacellsbyremodellingtheendostealniche
AT patonhoughjulia osteoclastscontrolreactivationofdormantmyelomacellsbyremodellingtheendostealniche
AT fellowsclair osteoclastscontrolreactivationofdormantmyelomacellsbyremodellingtheendostealniche
AT pettittjessicaa osteoclastscontrolreactivationofdormantmyelomacellsbyremodellingtheendostealniche
AT neildeart osteoclastscontrolreactivationofdormantmyelomacellsbyremodellingtheendostealniche
AT vanvalckenborghels osteoclastscontrolreactivationofdormantmyelomacellsbyremodellingtheendostealniche
AT baldockpaula osteoclastscontrolreactivationofdormantmyelomacellsbyremodellingtheendostealniche
AT rogersmichaelj osteoclastscontrolreactivationofdormantmyelomacellsbyremodellingtheendostealniche
AT eatoncolbyl osteoclastscontrolreactivationofdormantmyelomacellsbyremodellingtheendostealniche
AT vanderkerkenkarin osteoclastscontrolreactivationofdormantmyelomacellsbyremodellingtheendostealniche
AT pettitallisonr osteoclastscontrolreactivationofdormantmyelomacellsbyremodellingtheendostealniche
AT quinnjulianmw osteoclastscontrolreactivationofdormantmyelomacellsbyremodellingtheendostealniche
AT zannettinoandrewcw osteoclastscontrolreactivationofdormantmyelomacellsbyremodellingtheendostealniche
AT phantrigiang osteoclastscontrolreactivationofdormantmyelomacellsbyremodellingtheendostealniche
AT croucherpeteri osteoclastscontrolreactivationofdormantmyelomacellsbyremodellingtheendostealniche