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AMRI-59 functions as a radiosensitizer via peroxiredoxin I-targeted ROS accumulation and apoptotic cell death induction

Previously, we identified AMRI-59 as a specific pharmaceutical inhibitor of peroxiredoxin (PRX) I enzyme activity. In this study, we examined whether AMRI-59 acts as a radiosensitizer in non-small cell lung cancer cells using clonogenic assays. The intracellular mechanisms underlying the radiosensit...

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Autores principales: Hong, Wan Gi, Kim, Ju Yeon, Cho, Jeong Hyun, Hwang, Sang-Gu, Song, Jie-Young, Lee, EunAh, Chang, Tong-Shin, Um, Hong-Duck, Park, Jong Kuk
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Impact Journals LLC 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5768385/
https://www.ncbi.nlm.nih.gov/pubmed/29371968
http://dx.doi.org/10.18632/oncotarget.23114
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author Hong, Wan Gi
Kim, Ju Yeon
Cho, Jeong Hyun
Hwang, Sang-Gu
Song, Jie-Young
Lee, EunAh
Chang, Tong-Shin
Um, Hong-Duck
Park, Jong Kuk
author_facet Hong, Wan Gi
Kim, Ju Yeon
Cho, Jeong Hyun
Hwang, Sang-Gu
Song, Jie-Young
Lee, EunAh
Chang, Tong-Shin
Um, Hong-Duck
Park, Jong Kuk
author_sort Hong, Wan Gi
collection PubMed
description Previously, we identified AMRI-59 as a specific pharmaceutical inhibitor of peroxiredoxin (PRX) I enzyme activity. In this study, we examined whether AMRI-59 acts as a radiosensitizer in non-small cell lung cancer cells using clonogenic assays. The intracellular mechanisms underlying the radiosensitization effect of AMRI-59 were determined via immunoblotting in addition to measurement of ROS generation, mitochondrial potential and cell death. AMRI-59 activity in vivo was examined by co-treating nude mice with the compound and γ-ionizing radiation (IR), followed by measurement of tumor volumes and apoptosis. The dose enhancement ratios of 30 μM AMRI-59 in NCI-H460 and NCI-H1299 were 1.51 and 2.12, respectively. Combination of AMRI-59 with IR augmented ROS production and mitochondrial potential disruption via enhancement of PRX I oxidation, leading to increased expression of γH2AX, a DNA damage marker, and suppression of ERK phosphorylation, and finally, activation of caspase-3. Notably, inhibition of ROS production prevented ERK suppression, and blockage of ERK in combination with AMRI-59 and IR led to enhanced caspase-3 activation and apoptosis. In a xenograft assay using NCI-H460 and NCI-H1299, combined treatment with AMRI-59 and IR delayed tumor growth by 26.98 and 14.88 days, compared with controls, yielding enhancement factors of 1.73 and 1.37, respectively. Taken together, the results indicate that AMRI-59 functions as a PRX I-targeted radiosensitizer by inducing apoptosis through activation of the ROS/γH2AX/caspase pathway and suppression of ERK.
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spelling pubmed-57683852018-01-25 AMRI-59 functions as a radiosensitizer via peroxiredoxin I-targeted ROS accumulation and apoptotic cell death induction Hong, Wan Gi Kim, Ju Yeon Cho, Jeong Hyun Hwang, Sang-Gu Song, Jie-Young Lee, EunAh Chang, Tong-Shin Um, Hong-Duck Park, Jong Kuk Oncotarget Research Paper Previously, we identified AMRI-59 as a specific pharmaceutical inhibitor of peroxiredoxin (PRX) I enzyme activity. In this study, we examined whether AMRI-59 acts as a radiosensitizer in non-small cell lung cancer cells using clonogenic assays. The intracellular mechanisms underlying the radiosensitization effect of AMRI-59 were determined via immunoblotting in addition to measurement of ROS generation, mitochondrial potential and cell death. AMRI-59 activity in vivo was examined by co-treating nude mice with the compound and γ-ionizing radiation (IR), followed by measurement of tumor volumes and apoptosis. The dose enhancement ratios of 30 μM AMRI-59 in NCI-H460 and NCI-H1299 were 1.51 and 2.12, respectively. Combination of AMRI-59 with IR augmented ROS production and mitochondrial potential disruption via enhancement of PRX I oxidation, leading to increased expression of γH2AX, a DNA damage marker, and suppression of ERK phosphorylation, and finally, activation of caspase-3. Notably, inhibition of ROS production prevented ERK suppression, and blockage of ERK in combination with AMRI-59 and IR led to enhanced caspase-3 activation and apoptosis. In a xenograft assay using NCI-H460 and NCI-H1299, combined treatment with AMRI-59 and IR delayed tumor growth by 26.98 and 14.88 days, compared with controls, yielding enhancement factors of 1.73 and 1.37, respectively. Taken together, the results indicate that AMRI-59 functions as a PRX I-targeted radiosensitizer by inducing apoptosis through activation of the ROS/γH2AX/caspase pathway and suppression of ERK. Impact Journals LLC 2017-12-09 /pmc/articles/PMC5768385/ /pubmed/29371968 http://dx.doi.org/10.18632/oncotarget.23114 Text en Copyright: © 2017 Hong et al. http://creativecommons.org/licenses/by/3.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/3.0/) 3.0 (CC BY 3.0), which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Paper
Hong, Wan Gi
Kim, Ju Yeon
Cho, Jeong Hyun
Hwang, Sang-Gu
Song, Jie-Young
Lee, EunAh
Chang, Tong-Shin
Um, Hong-Duck
Park, Jong Kuk
AMRI-59 functions as a radiosensitizer via peroxiredoxin I-targeted ROS accumulation and apoptotic cell death induction
title AMRI-59 functions as a radiosensitizer via peroxiredoxin I-targeted ROS accumulation and apoptotic cell death induction
title_full AMRI-59 functions as a radiosensitizer via peroxiredoxin I-targeted ROS accumulation and apoptotic cell death induction
title_fullStr AMRI-59 functions as a radiosensitizer via peroxiredoxin I-targeted ROS accumulation and apoptotic cell death induction
title_full_unstemmed AMRI-59 functions as a radiosensitizer via peroxiredoxin I-targeted ROS accumulation and apoptotic cell death induction
title_short AMRI-59 functions as a radiosensitizer via peroxiredoxin I-targeted ROS accumulation and apoptotic cell death induction
title_sort amri-59 functions as a radiosensitizer via peroxiredoxin i-targeted ros accumulation and apoptotic cell death induction
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5768385/
https://www.ncbi.nlm.nih.gov/pubmed/29371968
http://dx.doi.org/10.18632/oncotarget.23114
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