Cargando…

JNK pathway inhibition selectively primes pancreatic cancer stem cells to TRAIL-induced apoptosis without affecting the physiology of normal tissue resident stem cells

OBJECTIVE: Successful treatment of solid cancers mandates targeting cancer stem cells (CSC) without impact on the physiology of normal tissue resident stem cells. C-Jun N-terminal kinase (JNK) signaling has been shown to be of importance in cancer. We test whether JNK inhibition would sensitize panc...

Descripción completa

Detalles Bibliográficos
Autores principales: Recio-Boiles, Alejandro, Ilmer, Matthias, Rhea, P. Robyn, Kettlun, Claudia, Heinemann, Mitja L., Ruetering, Jennifer, Vykoukal, Jody, Alt, Eckhard
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Impact Journals LLC 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4891091/
https://www.ncbi.nlm.nih.gov/pubmed/26840266
http://dx.doi.org/10.18632/oncotarget.7066
_version_ 1782435219382468608
author Recio-Boiles, Alejandro
Ilmer, Matthias
Rhea, P. Robyn
Kettlun, Claudia
Heinemann, Mitja L.
Ruetering, Jennifer
Vykoukal, Jody
Alt, Eckhard
author_facet Recio-Boiles, Alejandro
Ilmer, Matthias
Rhea, P. Robyn
Kettlun, Claudia
Heinemann, Mitja L.
Ruetering, Jennifer
Vykoukal, Jody
Alt, Eckhard
author_sort Recio-Boiles, Alejandro
collection PubMed
description OBJECTIVE: Successful treatment of solid cancers mandates targeting cancer stem cells (CSC) without impact on the physiology of normal tissue resident stem cells. C-Jun N-terminal kinase (JNK) signaling has been shown to be of importance in cancer. We test whether JNK inhibition would sensitize pancreatic CSCs to induction of apoptosis via low-dose TNFα-related apoptosis-inducing ligand (TRAIL). DESIGN: Effects of JNK inhibition (JNKi) were evaluated in vitro in functional assays, through mRNA and protein expression analysis, and in in vivo mouse studies. CSCs were enriched in anoikis-resistant spheroid culture and analyzed accordingly. RESULTS: We confirmed that the JNK pathway is an important regulatory pathway in pancreatic cancer stem cells and further found that JNK inhibition downregulates the decoy receptor DcR1 through IL-8 signaling while upregulating pro-apoptotic death receptors DR4/5, thereby sensitizing cells - even with acquired TRAIL-resistance - to apoptosis induction. Treatment of orthotopic pancreatic cancer xenografts with either gemcitabine, JNKi or TRAIL alone for 4 weeks showed only modest effects compared to control, while the combination of JNKi and TRAIL resulted in significantly lower tumor burden (69%; p < 0.04), reduced numbers of circulating tumor cells, and less distant metastatic events, without affecting the general health of the animals. CONCLUSIONS: The combination of JNKi and TRAIL significantly impacts on CSCs, but leaves regular tissue-resident stem cells unaffected – even under hypoxic stress conditions. This concept of selective treatment of pancreatic CSCs warrants further evaluation.
format Online
Article
Text
id pubmed-4891091
institution National Center for Biotechnology Information
language English
publishDate 2016
publisher Impact Journals LLC
record_format MEDLINE/PubMed
spelling pubmed-48910912016-06-23 JNK pathway inhibition selectively primes pancreatic cancer stem cells to TRAIL-induced apoptosis without affecting the physiology of normal tissue resident stem cells Recio-Boiles, Alejandro Ilmer, Matthias Rhea, P. Robyn Kettlun, Claudia Heinemann, Mitja L. Ruetering, Jennifer Vykoukal, Jody Alt, Eckhard Oncotarget Research Paper OBJECTIVE: Successful treatment of solid cancers mandates targeting cancer stem cells (CSC) without impact on the physiology of normal tissue resident stem cells. C-Jun N-terminal kinase (JNK) signaling has been shown to be of importance in cancer. We test whether JNK inhibition would sensitize pancreatic CSCs to induction of apoptosis via low-dose TNFα-related apoptosis-inducing ligand (TRAIL). DESIGN: Effects of JNK inhibition (JNKi) were evaluated in vitro in functional assays, through mRNA and protein expression analysis, and in in vivo mouse studies. CSCs were enriched in anoikis-resistant spheroid culture and analyzed accordingly. RESULTS: We confirmed that the JNK pathway is an important regulatory pathway in pancreatic cancer stem cells and further found that JNK inhibition downregulates the decoy receptor DcR1 through IL-8 signaling while upregulating pro-apoptotic death receptors DR4/5, thereby sensitizing cells - even with acquired TRAIL-resistance - to apoptosis induction. Treatment of orthotopic pancreatic cancer xenografts with either gemcitabine, JNKi or TRAIL alone for 4 weeks showed only modest effects compared to control, while the combination of JNKi and TRAIL resulted in significantly lower tumor burden (69%; p < 0.04), reduced numbers of circulating tumor cells, and less distant metastatic events, without affecting the general health of the animals. CONCLUSIONS: The combination of JNKi and TRAIL significantly impacts on CSCs, but leaves regular tissue-resident stem cells unaffected – even under hypoxic stress conditions. This concept of selective treatment of pancreatic CSCs warrants further evaluation. Impact Journals LLC 2016-01-28 /pmc/articles/PMC4891091/ /pubmed/26840266 http://dx.doi.org/10.18632/oncotarget.7066 Text en Copyright: © 2016 Recio-Boiles et al. http://creativecommons.org/licenses/by/2.5/ 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
Recio-Boiles, Alejandro
Ilmer, Matthias
Rhea, P. Robyn
Kettlun, Claudia
Heinemann, Mitja L.
Ruetering, Jennifer
Vykoukal, Jody
Alt, Eckhard
JNK pathway inhibition selectively primes pancreatic cancer stem cells to TRAIL-induced apoptosis without affecting the physiology of normal tissue resident stem cells
title JNK pathway inhibition selectively primes pancreatic cancer stem cells to TRAIL-induced apoptosis without affecting the physiology of normal tissue resident stem cells
title_full JNK pathway inhibition selectively primes pancreatic cancer stem cells to TRAIL-induced apoptosis without affecting the physiology of normal tissue resident stem cells
title_fullStr JNK pathway inhibition selectively primes pancreatic cancer stem cells to TRAIL-induced apoptosis without affecting the physiology of normal tissue resident stem cells
title_full_unstemmed JNK pathway inhibition selectively primes pancreatic cancer stem cells to TRAIL-induced apoptosis without affecting the physiology of normal tissue resident stem cells
title_short JNK pathway inhibition selectively primes pancreatic cancer stem cells to TRAIL-induced apoptosis without affecting the physiology of normal tissue resident stem cells
title_sort jnk pathway inhibition selectively primes pancreatic cancer stem cells to trail-induced apoptosis without affecting the physiology of normal tissue resident stem cells
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4891091/
https://www.ncbi.nlm.nih.gov/pubmed/26840266
http://dx.doi.org/10.18632/oncotarget.7066
work_keys_str_mv AT recioboilesalejandro jnkpathwayinhibitionselectivelyprimespancreaticcancerstemcellstotrailinducedapoptosiswithoutaffectingthephysiologyofnormaltissueresidentstemcells
AT ilmermatthias jnkpathwayinhibitionselectivelyprimespancreaticcancerstemcellstotrailinducedapoptosiswithoutaffectingthephysiologyofnormaltissueresidentstemcells
AT rheaprobyn jnkpathwayinhibitionselectivelyprimespancreaticcancerstemcellstotrailinducedapoptosiswithoutaffectingthephysiologyofnormaltissueresidentstemcells
AT kettlunclaudia jnkpathwayinhibitionselectivelyprimespancreaticcancerstemcellstotrailinducedapoptosiswithoutaffectingthephysiologyofnormaltissueresidentstemcells
AT heinemannmitjal jnkpathwayinhibitionselectivelyprimespancreaticcancerstemcellstotrailinducedapoptosiswithoutaffectingthephysiologyofnormaltissueresidentstemcells
AT rueteringjennifer jnkpathwayinhibitionselectivelyprimespancreaticcancerstemcellstotrailinducedapoptosiswithoutaffectingthephysiologyofnormaltissueresidentstemcells
AT vykoukaljody jnkpathwayinhibitionselectivelyprimespancreaticcancerstemcellstotrailinducedapoptosiswithoutaffectingthephysiologyofnormaltissueresidentstemcells
AT alteckhard jnkpathwayinhibitionselectivelyprimespancreaticcancerstemcellstotrailinducedapoptosiswithoutaffectingthephysiologyofnormaltissueresidentstemcells