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Selective targeting of neuroblastoma tumour-initiating cells by compounds identified in stem cell-based small molecule screens

Neuroblastoma (NB) is the most deadly extra-cranial solid tumour in children necessitating an urgent need for effective and less toxic treatments. One reason for the lack of efficacious treatments may be the inability of existing drugs to target the tumour-initiating or cancer stem cell population r...

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Autores principales: Smith, Kristen M, Datti, Alessandro, Fujitani, Mayumi, Grinshtein, Natalie, Zhang, Libo, Morozova, Olena, Blakely, Kim M, Rotenberg, Susan A, Hansford, Loen M, Miller, Freda D, Yeger, Herman, Irwin, Meredith S, Moffat, Jason, Marra, Marco A, Baruchel, Sylvain, Wrana, Jeffrey L, Kaplan, David R
Formato: Online Artículo Texto
Lenguaje:English
Publicado: WILEY-VCH Verlag 2010
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3377336/
https://www.ncbi.nlm.nih.gov/pubmed/20721990
http://dx.doi.org/10.1002/emmm.201000093
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author Smith, Kristen M
Datti, Alessandro
Fujitani, Mayumi
Grinshtein, Natalie
Zhang, Libo
Morozova, Olena
Blakely, Kim M
Rotenberg, Susan A
Hansford, Loen M
Miller, Freda D
Yeger, Herman
Irwin, Meredith S
Moffat, Jason
Marra, Marco A
Baruchel, Sylvain
Wrana, Jeffrey L
Kaplan, David R
author_facet Smith, Kristen M
Datti, Alessandro
Fujitani, Mayumi
Grinshtein, Natalie
Zhang, Libo
Morozova, Olena
Blakely, Kim M
Rotenberg, Susan A
Hansford, Loen M
Miller, Freda D
Yeger, Herman
Irwin, Meredith S
Moffat, Jason
Marra, Marco A
Baruchel, Sylvain
Wrana, Jeffrey L
Kaplan, David R
author_sort Smith, Kristen M
collection PubMed
description Neuroblastoma (NB) is the most deadly extra-cranial solid tumour in children necessitating an urgent need for effective and less toxic treatments. One reason for the lack of efficacious treatments may be the inability of existing drugs to target the tumour-initiating or cancer stem cell population responsible for sustaining tumour growth, metastases and relapse. Here, we describe a strategy to identify compounds that selectively target patient-derived cancer stem cell-like tumour-initiating cells (TICs) while sparing normal paediatric stem cells (skin-derived precursors, SKPs) and characterize two therapeutic candidates. DECA-14 and rapamycin were identified as NB TIC-selective agents. Both compounds induced TIC death at nanomolar concentrations in vitro, significantly reduced NB xenograft tumour weight in vivo, and dramatically decreased self-renewal or tumour-initiation capacity in treated tumours. These results demonstrate that differential drug sensitivities between TICs and normal paediatric stem cells can be exploited to identify novel, patient-specific and potentially less toxic therapies.
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spelling pubmed-33773362012-09-17 Selective targeting of neuroblastoma tumour-initiating cells by compounds identified in stem cell-based small molecule screens Smith, Kristen M Datti, Alessandro Fujitani, Mayumi Grinshtein, Natalie Zhang, Libo Morozova, Olena Blakely, Kim M Rotenberg, Susan A Hansford, Loen M Miller, Freda D Yeger, Herman Irwin, Meredith S Moffat, Jason Marra, Marco A Baruchel, Sylvain Wrana, Jeffrey L Kaplan, David R EMBO Mol Med Research Articles Neuroblastoma (NB) is the most deadly extra-cranial solid tumour in children necessitating an urgent need for effective and less toxic treatments. One reason for the lack of efficacious treatments may be the inability of existing drugs to target the tumour-initiating or cancer stem cell population responsible for sustaining tumour growth, metastases and relapse. Here, we describe a strategy to identify compounds that selectively target patient-derived cancer stem cell-like tumour-initiating cells (TICs) while sparing normal paediatric stem cells (skin-derived precursors, SKPs) and characterize two therapeutic candidates. DECA-14 and rapamycin were identified as NB TIC-selective agents. Both compounds induced TIC death at nanomolar concentrations in vitro, significantly reduced NB xenograft tumour weight in vivo, and dramatically decreased self-renewal or tumour-initiation capacity in treated tumours. These results demonstrate that differential drug sensitivities between TICs and normal paediatric stem cells can be exploited to identify novel, patient-specific and potentially less toxic therapies. WILEY-VCH Verlag 2010-09 /pmc/articles/PMC3377336/ /pubmed/20721990 http://dx.doi.org/10.1002/emmm.201000093 Text en Copyright © 2010 EMBO Molecular Medicine
spellingShingle Research Articles
Smith, Kristen M
Datti, Alessandro
Fujitani, Mayumi
Grinshtein, Natalie
Zhang, Libo
Morozova, Olena
Blakely, Kim M
Rotenberg, Susan A
Hansford, Loen M
Miller, Freda D
Yeger, Herman
Irwin, Meredith S
Moffat, Jason
Marra, Marco A
Baruchel, Sylvain
Wrana, Jeffrey L
Kaplan, David R
Selective targeting of neuroblastoma tumour-initiating cells by compounds identified in stem cell-based small molecule screens
title Selective targeting of neuroblastoma tumour-initiating cells by compounds identified in stem cell-based small molecule screens
title_full Selective targeting of neuroblastoma tumour-initiating cells by compounds identified in stem cell-based small molecule screens
title_fullStr Selective targeting of neuroblastoma tumour-initiating cells by compounds identified in stem cell-based small molecule screens
title_full_unstemmed Selective targeting of neuroblastoma tumour-initiating cells by compounds identified in stem cell-based small molecule screens
title_short Selective targeting of neuroblastoma tumour-initiating cells by compounds identified in stem cell-based small molecule screens
title_sort selective targeting of neuroblastoma tumour-initiating cells by compounds identified in stem cell-based small molecule screens
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3377336/
https://www.ncbi.nlm.nih.gov/pubmed/20721990
http://dx.doi.org/10.1002/emmm.201000093
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