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Enrichment of superoxide dismutase 2 in glioblastoma confers to acquisition of temozolomide resistance that is associated with tumor-initiating cell subsets

BACKGROUND: Intratumor subsets with tumor-initiating features in glioblastoma are likely to survive treatment. Our goal is to identify the key factor in the process by which cells develop temozolomide (TMZ) resistance. METHODS: Resistant cell lines derived from U87MG and A172 were established throug...

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Autores principales: Chien, Chia-Hung, Chuang, Jian-Ying, Yang, Shun-Tai, Yang, Wen-Bin, Chen, Pin-Yuan, Hsu, Tsung-I, Huang, Chih-Yuan, Lo, Wei-Lun, Yang, Ka-Yen, Liu, Ming-Sheng, Chu, Jui-Mei, Chung, Pei-Hsuan, Liu, Jr-Jiun, Chou, Shao-Wen, Chen, Shang-Hung, Chang, Kwang-Yu
Formato: Online Artículo Texto
Lenguaje:English
Publicado: BioMed Central 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6800988/
https://www.ncbi.nlm.nih.gov/pubmed/31629402
http://dx.doi.org/10.1186/s12929-019-0565-2
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author Chien, Chia-Hung
Chuang, Jian-Ying
Yang, Shun-Tai
Yang, Wen-Bin
Chen, Pin-Yuan
Hsu, Tsung-I
Huang, Chih-Yuan
Lo, Wei-Lun
Yang, Ka-Yen
Liu, Ming-Sheng
Chu, Jui-Mei
Chung, Pei-Hsuan
Liu, Jr-Jiun
Chou, Shao-Wen
Chen, Shang-Hung
Chang, Kwang-Yu
author_facet Chien, Chia-Hung
Chuang, Jian-Ying
Yang, Shun-Tai
Yang, Wen-Bin
Chen, Pin-Yuan
Hsu, Tsung-I
Huang, Chih-Yuan
Lo, Wei-Lun
Yang, Ka-Yen
Liu, Ming-Sheng
Chu, Jui-Mei
Chung, Pei-Hsuan
Liu, Jr-Jiun
Chou, Shao-Wen
Chen, Shang-Hung
Chang, Kwang-Yu
author_sort Chien, Chia-Hung
collection PubMed
description BACKGROUND: Intratumor subsets with tumor-initiating features in glioblastoma are likely to survive treatment. Our goal is to identify the key factor in the process by which cells develop temozolomide (TMZ) resistance. METHODS: Resistant cell lines derived from U87MG and A172 were established through long-term co-incubation of TMZ. Primary tumors obtained from patients were maintained as patient-derived xenograft for studies of tumor-initating cell (TIC) features. The cell manifestations were assessed in the gene modulated cells for relevance to drug resistance. RESULTS: Among the mitochondria-related genes in the gene expression databases, superoxide dismutase 2 (SOD2) was a significant factor in resistance and patient survival. SOD2 in the resistant cells functionally determined the cell fate by limiting TMZ-stimulated superoxide reaction and cleavage of caspase-3. Genetic inhibition of the protein led to retrieval of drug effect in mouse study. SOD2 was also associated with the TIC features, which enriched in the resistant cells. The CD133(+) specific subsets in the resistant cells exhibited superior superoxide regulation and the SOD2-related caspase-3 reaction. Experiments applying SOD2 modulation showed a positive correlation between the TIC features and the protein expression. Finally, co-treatment with TMZ and the SOD inhibitor sodium diethyldithiocarbamate trihydrate in xenograft mouse models with the TMZ-resistant primary tumor resulted in lower tumor proliferation, longer survival, and less CD133, Bmi-1, and SOD2 expression. CONCLUSION: SOD2 plays crucial roles in the tumor-initiating features that are related to TMZ resistance. Inhibition of the protein is a potential therapeutic strategy that can be used to enhance the effects of chemotherapy. GRAPHICAL ABSTRACT: [Image: see text]
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spelling pubmed-68009882019-10-22 Enrichment of superoxide dismutase 2 in glioblastoma confers to acquisition of temozolomide resistance that is associated with tumor-initiating cell subsets Chien, Chia-Hung Chuang, Jian-Ying Yang, Shun-Tai Yang, Wen-Bin Chen, Pin-Yuan Hsu, Tsung-I Huang, Chih-Yuan Lo, Wei-Lun Yang, Ka-Yen Liu, Ming-Sheng Chu, Jui-Mei Chung, Pei-Hsuan Liu, Jr-Jiun Chou, Shao-Wen Chen, Shang-Hung Chang, Kwang-Yu J Biomed Sci Research BACKGROUND: Intratumor subsets with tumor-initiating features in glioblastoma are likely to survive treatment. Our goal is to identify the key factor in the process by which cells develop temozolomide (TMZ) resistance. METHODS: Resistant cell lines derived from U87MG and A172 were established through long-term co-incubation of TMZ. Primary tumors obtained from patients were maintained as patient-derived xenograft for studies of tumor-initating cell (TIC) features. The cell manifestations were assessed in the gene modulated cells for relevance to drug resistance. RESULTS: Among the mitochondria-related genes in the gene expression databases, superoxide dismutase 2 (SOD2) was a significant factor in resistance and patient survival. SOD2 in the resistant cells functionally determined the cell fate by limiting TMZ-stimulated superoxide reaction and cleavage of caspase-3. Genetic inhibition of the protein led to retrieval of drug effect in mouse study. SOD2 was also associated with the TIC features, which enriched in the resistant cells. The CD133(+) specific subsets in the resistant cells exhibited superior superoxide regulation and the SOD2-related caspase-3 reaction. Experiments applying SOD2 modulation showed a positive correlation between the TIC features and the protein expression. Finally, co-treatment with TMZ and the SOD inhibitor sodium diethyldithiocarbamate trihydrate in xenograft mouse models with the TMZ-resistant primary tumor resulted in lower tumor proliferation, longer survival, and less CD133, Bmi-1, and SOD2 expression. CONCLUSION: SOD2 plays crucial roles in the tumor-initiating features that are related to TMZ resistance. Inhibition of the protein is a potential therapeutic strategy that can be used to enhance the effects of chemotherapy. GRAPHICAL ABSTRACT: [Image: see text] BioMed Central 2019-10-19 /pmc/articles/PMC6800988/ /pubmed/31629402 http://dx.doi.org/10.1186/s12929-019-0565-2 Text en © The Author(s). 2019 Open AccessThis article is distributed under the terms of the Creative Commons Attribution 4.0 International License (http://creativecommons.org/licenses/by/4.0/), which permits unrestricted use, distribution, and reproduction in any medium, provided you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons license, and indicate if changes were made. The Creative Commons Public Domain Dedication waiver (http://creativecommons.org/publicdomain/zero/1.0/) applies to the data made available in this article, unless otherwise stated.
spellingShingle Research
Chien, Chia-Hung
Chuang, Jian-Ying
Yang, Shun-Tai
Yang, Wen-Bin
Chen, Pin-Yuan
Hsu, Tsung-I
Huang, Chih-Yuan
Lo, Wei-Lun
Yang, Ka-Yen
Liu, Ming-Sheng
Chu, Jui-Mei
Chung, Pei-Hsuan
Liu, Jr-Jiun
Chou, Shao-Wen
Chen, Shang-Hung
Chang, Kwang-Yu
Enrichment of superoxide dismutase 2 in glioblastoma confers to acquisition of temozolomide resistance that is associated with tumor-initiating cell subsets
title Enrichment of superoxide dismutase 2 in glioblastoma confers to acquisition of temozolomide resistance that is associated with tumor-initiating cell subsets
title_full Enrichment of superoxide dismutase 2 in glioblastoma confers to acquisition of temozolomide resistance that is associated with tumor-initiating cell subsets
title_fullStr Enrichment of superoxide dismutase 2 in glioblastoma confers to acquisition of temozolomide resistance that is associated with tumor-initiating cell subsets
title_full_unstemmed Enrichment of superoxide dismutase 2 in glioblastoma confers to acquisition of temozolomide resistance that is associated with tumor-initiating cell subsets
title_short Enrichment of superoxide dismutase 2 in glioblastoma confers to acquisition of temozolomide resistance that is associated with tumor-initiating cell subsets
title_sort enrichment of superoxide dismutase 2 in glioblastoma confers to acquisition of temozolomide resistance that is associated with tumor-initiating cell subsets
topic Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6800988/
https://www.ncbi.nlm.nih.gov/pubmed/31629402
http://dx.doi.org/10.1186/s12929-019-0565-2
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