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NAMPT Inhibition Induces Neuroblastoma Cell Death and Blocks Tumor Growth

High-risk neuroblastoma (NB) portends very poor prognoses in children. Targeting tumor metabolism has emerged as a novel therapeutic strategy. High levels of nicotinamide-adenine-dinucleotide (NAD+) are required for rapid cell proliferation. Nicotinamide phosphoribosyl transferase (NAMPT) is the rat...

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Autores principales: Vallejo, Frederic A., Sanchez, Anthony, Cuglievan, Branko, Walters, Winston M., De Angulo, Guillermo, Vanni, Steven, Graham, Regina M.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9261286/
https://www.ncbi.nlm.nih.gov/pubmed/35814452
http://dx.doi.org/10.3389/fonc.2022.883318
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author Vallejo, Frederic A.
Sanchez, Anthony
Cuglievan, Branko
Walters, Winston M.
De Angulo, Guillermo
Vanni, Steven
Graham, Regina M.
author_facet Vallejo, Frederic A.
Sanchez, Anthony
Cuglievan, Branko
Walters, Winston M.
De Angulo, Guillermo
Vanni, Steven
Graham, Regina M.
author_sort Vallejo, Frederic A.
collection PubMed
description High-risk neuroblastoma (NB) portends very poor prognoses in children. Targeting tumor metabolism has emerged as a novel therapeutic strategy. High levels of nicotinamide-adenine-dinucleotide (NAD+) are required for rapid cell proliferation. Nicotinamide phosphoribosyl transferase (NAMPT) is the rate-limiting enzyme for NAD+ salvage and is overexpressed in several cancers. Here, we determine the potential of NAMPT as a therapeutic target for NB treatment. NAMPT inhibition cytotoxicity was determined by trypan blue exclusion and LDH assays. Neuroblastoma stem cell self-renewal was evaluated by neurosphere assay. Protein expression was evaluated via Western blot. The effect of targeting NAMPT in vivo was determined using an NB1691-xenografted mouse model. Robust NAMPT expression was demonstrated in multiple N-MYC amplified, high-risk neuroblastoma cell lines. NAMPT inhibition with STF-118804 (STF) decreased ATP, induced apoptosis, and reduced NB stem cell neurosphere formation. STF treatment down-regulated N-MYC levels and abrogated AKT activation. AKT and glycolytic pathway inhibitors in combination with NAMPT inhibition induced robust, greater-than-additive neuroblastoma cell death. Lastly, STF treatment blocked neuroblastoma tumor growth in mouse xenograft models. NAMPT is a valid therapeutic target as inhibition promoted neuroblastoma cell death in vitro and prevented tumor growth in vivo. Further investigation is warranted to establish this therapy’s role as an adjunctive modality.
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spelling pubmed-92612862022-07-08 NAMPT Inhibition Induces Neuroblastoma Cell Death and Blocks Tumor Growth Vallejo, Frederic A. Sanchez, Anthony Cuglievan, Branko Walters, Winston M. De Angulo, Guillermo Vanni, Steven Graham, Regina M. Front Oncol Oncology High-risk neuroblastoma (NB) portends very poor prognoses in children. Targeting tumor metabolism has emerged as a novel therapeutic strategy. High levels of nicotinamide-adenine-dinucleotide (NAD+) are required for rapid cell proliferation. Nicotinamide phosphoribosyl transferase (NAMPT) is the rate-limiting enzyme for NAD+ salvage and is overexpressed in several cancers. Here, we determine the potential of NAMPT as a therapeutic target for NB treatment. NAMPT inhibition cytotoxicity was determined by trypan blue exclusion and LDH assays. Neuroblastoma stem cell self-renewal was evaluated by neurosphere assay. Protein expression was evaluated via Western blot. The effect of targeting NAMPT in vivo was determined using an NB1691-xenografted mouse model. Robust NAMPT expression was demonstrated in multiple N-MYC amplified, high-risk neuroblastoma cell lines. NAMPT inhibition with STF-118804 (STF) decreased ATP, induced apoptosis, and reduced NB stem cell neurosphere formation. STF treatment down-regulated N-MYC levels and abrogated AKT activation. AKT and glycolytic pathway inhibitors in combination with NAMPT inhibition induced robust, greater-than-additive neuroblastoma cell death. Lastly, STF treatment blocked neuroblastoma tumor growth in mouse xenograft models. NAMPT is a valid therapeutic target as inhibition promoted neuroblastoma cell death in vitro and prevented tumor growth in vivo. Further investigation is warranted to establish this therapy’s role as an adjunctive modality. Frontiers Media S.A. 2022-06-23 /pmc/articles/PMC9261286/ /pubmed/35814452 http://dx.doi.org/10.3389/fonc.2022.883318 Text en Copyright © 2022 Vallejo, Sanchez, Cuglievan, Walters, De Angulo, Vanni and Graham https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Oncology
Vallejo, Frederic A.
Sanchez, Anthony
Cuglievan, Branko
Walters, Winston M.
De Angulo, Guillermo
Vanni, Steven
Graham, Regina M.
NAMPT Inhibition Induces Neuroblastoma Cell Death and Blocks Tumor Growth
title NAMPT Inhibition Induces Neuroblastoma Cell Death and Blocks Tumor Growth
title_full NAMPT Inhibition Induces Neuroblastoma Cell Death and Blocks Tumor Growth
title_fullStr NAMPT Inhibition Induces Neuroblastoma Cell Death and Blocks Tumor Growth
title_full_unstemmed NAMPT Inhibition Induces Neuroblastoma Cell Death and Blocks Tumor Growth
title_short NAMPT Inhibition Induces Neuroblastoma Cell Death and Blocks Tumor Growth
title_sort nampt inhibition induces neuroblastoma cell death and blocks tumor growth
topic Oncology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9261286/
https://www.ncbi.nlm.nih.gov/pubmed/35814452
http://dx.doi.org/10.3389/fonc.2022.883318
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