Cargando…

Irreversible EGFR Inhibitor EKB-569 Targets Low-LET γ-Radiation-Triggered Rel Orchestration and Potentiates Cell Death in Squamous Cell Carcinoma

EKB-569 (Pelitinib), an irreversible EGFR tyrosine kinase inhibitor has shown potential therapeutic efficiency in solid tumors. However, cell-killing potential in combination with radiotherapy and its underlying molecular orchestration remain to be explored. The objective of this study was to determ...

Descripción completa

Detalles Bibliográficos
Autores principales: Aravindan, Natarajan, Thomas, Charles R., Aravindan, Sheeja, Mohan, Aswathi S., Veeraraghavan, Jamunarani, Natarajan, Mohan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2011
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3248439/
https://www.ncbi.nlm.nih.gov/pubmed/22242139
http://dx.doi.org/10.1371/journal.pone.0029705
_version_ 1782220243730432000
author Aravindan, Natarajan
Thomas, Charles R.
Aravindan, Sheeja
Mohan, Aswathi S.
Veeraraghavan, Jamunarani
Natarajan, Mohan
author_facet Aravindan, Natarajan
Thomas, Charles R.
Aravindan, Sheeja
Mohan, Aswathi S.
Veeraraghavan, Jamunarani
Natarajan, Mohan
author_sort Aravindan, Natarajan
collection PubMed
description EKB-569 (Pelitinib), an irreversible EGFR tyrosine kinase inhibitor has shown potential therapeutic efficiency in solid tumors. However, cell-killing potential in combination with radiotherapy and its underlying molecular orchestration remain to be explored. The objective of this study was to determine the effect of EKB-569 on ionizing radiation (IR)-associated NFκB-dependent cell death. SCC-4 and SCC-9 cells exposed to IR (2Gy) with and without EKB-569 treatment were analyzed for transactivation of 88 NFκB pathway molecules, NFκB DNA-binding activity, translation of the NFκB downstream mediators, Birc1, 2 and 5, cell viability, metabolic activity and apoptosis. Selective targeting of IR-induced NFκB by EKB-569 and its influence on cell-fate were assessed by overexpressing (p50/p65) and silencing (ΔIκBα) NFκB. QPCR profiling after IR exposure revealed a significant induction of 74 NFκB signal transduction molecules. Of those, 72 were suppressed with EKB-569. EMSA revealed a dose dependent inhibition of NFκB by EKB-569. More importantly, EKB-569 inhibited IR-induced NFκB in a dose-dependent manner, and this inhibition was sustained up to at least 72 h. Immunoblotting revealed a significant suppression of IR-induced Birc1, 2 and 5 by EKB-569. We observed a dose-dependent inhibition of cell viability, metabolic activity and apoptosis with EKB-569. EKB-569 significantly enhanced IR-induced cell death and apoptosis. Blocking NFκB improved IR-induced cell death. Conversely, NFκB overexpression negates EKB-569 -induced cell-killing. Together, these pre-clinical data suggest that EKB-569 is a radiosensitizer of squamous cell carcinoma and may mechanistically involve selective targeting of IR-induced NFκB-dependent survival signaling. Further pre-clinical in-vivo studies are warranted.
format Online
Article
Text
id pubmed-3248439
institution National Center for Biotechnology Information
language English
publishDate 2011
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-32484392012-01-12 Irreversible EGFR Inhibitor EKB-569 Targets Low-LET γ-Radiation-Triggered Rel Orchestration and Potentiates Cell Death in Squamous Cell Carcinoma Aravindan, Natarajan Thomas, Charles R. Aravindan, Sheeja Mohan, Aswathi S. Veeraraghavan, Jamunarani Natarajan, Mohan PLoS One Research Article EKB-569 (Pelitinib), an irreversible EGFR tyrosine kinase inhibitor has shown potential therapeutic efficiency in solid tumors. However, cell-killing potential in combination with radiotherapy and its underlying molecular orchestration remain to be explored. The objective of this study was to determine the effect of EKB-569 on ionizing radiation (IR)-associated NFκB-dependent cell death. SCC-4 and SCC-9 cells exposed to IR (2Gy) with and without EKB-569 treatment were analyzed for transactivation of 88 NFκB pathway molecules, NFκB DNA-binding activity, translation of the NFκB downstream mediators, Birc1, 2 and 5, cell viability, metabolic activity and apoptosis. Selective targeting of IR-induced NFκB by EKB-569 and its influence on cell-fate were assessed by overexpressing (p50/p65) and silencing (ΔIκBα) NFκB. QPCR profiling after IR exposure revealed a significant induction of 74 NFκB signal transduction molecules. Of those, 72 were suppressed with EKB-569. EMSA revealed a dose dependent inhibition of NFκB by EKB-569. More importantly, EKB-569 inhibited IR-induced NFκB in a dose-dependent manner, and this inhibition was sustained up to at least 72 h. Immunoblotting revealed a significant suppression of IR-induced Birc1, 2 and 5 by EKB-569. We observed a dose-dependent inhibition of cell viability, metabolic activity and apoptosis with EKB-569. EKB-569 significantly enhanced IR-induced cell death and apoptosis. Blocking NFκB improved IR-induced cell death. Conversely, NFκB overexpression negates EKB-569 -induced cell-killing. Together, these pre-clinical data suggest that EKB-569 is a radiosensitizer of squamous cell carcinoma and may mechanistically involve selective targeting of IR-induced NFκB-dependent survival signaling. Further pre-clinical in-vivo studies are warranted. Public Library of Science 2011-12-29 /pmc/articles/PMC3248439/ /pubmed/22242139 http://dx.doi.org/10.1371/journal.pone.0029705 Text en Aravindan et al. http://creativecommons.org/licenses/by/4.0/ 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 properly credited.
spellingShingle Research Article
Aravindan, Natarajan
Thomas, Charles R.
Aravindan, Sheeja
Mohan, Aswathi S.
Veeraraghavan, Jamunarani
Natarajan, Mohan
Irreversible EGFR Inhibitor EKB-569 Targets Low-LET γ-Radiation-Triggered Rel Orchestration and Potentiates Cell Death in Squamous Cell Carcinoma
title Irreversible EGFR Inhibitor EKB-569 Targets Low-LET γ-Radiation-Triggered Rel Orchestration and Potentiates Cell Death in Squamous Cell Carcinoma
title_full Irreversible EGFR Inhibitor EKB-569 Targets Low-LET γ-Radiation-Triggered Rel Orchestration and Potentiates Cell Death in Squamous Cell Carcinoma
title_fullStr Irreversible EGFR Inhibitor EKB-569 Targets Low-LET γ-Radiation-Triggered Rel Orchestration and Potentiates Cell Death in Squamous Cell Carcinoma
title_full_unstemmed Irreversible EGFR Inhibitor EKB-569 Targets Low-LET γ-Radiation-Triggered Rel Orchestration and Potentiates Cell Death in Squamous Cell Carcinoma
title_short Irreversible EGFR Inhibitor EKB-569 Targets Low-LET γ-Radiation-Triggered Rel Orchestration and Potentiates Cell Death in Squamous Cell Carcinoma
title_sort irreversible egfr inhibitor ekb-569 targets low-let γ-radiation-triggered rel orchestration and potentiates cell death in squamous cell carcinoma
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3248439/
https://www.ncbi.nlm.nih.gov/pubmed/22242139
http://dx.doi.org/10.1371/journal.pone.0029705
work_keys_str_mv AT aravindannatarajan irreversibleegfrinhibitorekb569targetslowletgradiationtriggeredrelorchestrationandpotentiatescelldeathinsquamouscellcarcinoma
AT thomascharlesr irreversibleegfrinhibitorekb569targetslowletgradiationtriggeredrelorchestrationandpotentiatescelldeathinsquamouscellcarcinoma
AT aravindansheeja irreversibleegfrinhibitorekb569targetslowletgradiationtriggeredrelorchestrationandpotentiatescelldeathinsquamouscellcarcinoma
AT mohanaswathis irreversibleegfrinhibitorekb569targetslowletgradiationtriggeredrelorchestrationandpotentiatescelldeathinsquamouscellcarcinoma
AT veeraraghavanjamunarani irreversibleegfrinhibitorekb569targetslowletgradiationtriggeredrelorchestrationandpotentiatescelldeathinsquamouscellcarcinoma
AT natarajanmohan irreversibleegfrinhibitorekb569targetslowletgradiationtriggeredrelorchestrationandpotentiatescelldeathinsquamouscellcarcinoma