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Human pancreatic cancer cells under nutrient deprivation are vulnerable to redox system inhibition

Large regions in tumor tissues, particularly pancreatic cancer, are hypoxic and nutrient-deprived because of unregulated cell growth and insufficient vascular supply. Certain cancer cells, such as those inside a tumor, can tolerate these severe conditions and survive for prolonged periods. We hypoth...

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Autores principales: Onodera, Takefumi, Momose, Isao, Adachi, Hayamitsu, Yamazaki, Yohko, Sawa, Ryuichi, Ohba, Shun-ichi, Kawada, Manabu
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Biochemistry and Molecular Biology 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7864064/
https://www.ncbi.nlm.nih.gov/pubmed/32978257
http://dx.doi.org/10.1074/jbc.RA120.013893
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author Onodera, Takefumi
Momose, Isao
Adachi, Hayamitsu
Yamazaki, Yohko
Sawa, Ryuichi
Ohba, Shun-ichi
Kawada, Manabu
author_facet Onodera, Takefumi
Momose, Isao
Adachi, Hayamitsu
Yamazaki, Yohko
Sawa, Ryuichi
Ohba, Shun-ichi
Kawada, Manabu
author_sort Onodera, Takefumi
collection PubMed
description Large regions in tumor tissues, particularly pancreatic cancer, are hypoxic and nutrient-deprived because of unregulated cell growth and insufficient vascular supply. Certain cancer cells, such as those inside a tumor, can tolerate these severe conditions and survive for prolonged periods. We hypothesized that small molecular agents, which can preferentially reduce cancer cell survival under nutrient-deprived conditions, could function as anticancer drugs. In this study, we constructed a high-throughput screening system to identify such small molecules and screened chemical libraries and microbial culture extracts. We were able to determine that some small molecular compounds, such as penicillic acid, papyracillic acid, and auranofin, exhibit preferential cytotoxicity to human pancreatic cancer cells under nutrient-deprived compared with nutrient-sufficient conditions. Further analysis revealed that these compounds target to redox systems such as GSH and thioredoxin and induce accumulation of reactive oxygen species in nutrient-deprived cancer cells, potentially contributing to apoptosis under nutrient-deprived conditions. Nutrient-deficient cancer cells are often deficient in GSH; thus, they are susceptible to redox system inhibitors. Targeting redox systems might be an attractive therapeutic strategy under nutrient-deprived conditions of the tumor microenvironment.
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spelling pubmed-78640642021-06-10 Human pancreatic cancer cells under nutrient deprivation are vulnerable to redox system inhibition Onodera, Takefumi Momose, Isao Adachi, Hayamitsu Yamazaki, Yohko Sawa, Ryuichi Ohba, Shun-ichi Kawada, Manabu J Biol Chem Metabolism Large regions in tumor tissues, particularly pancreatic cancer, are hypoxic and nutrient-deprived because of unregulated cell growth and insufficient vascular supply. Certain cancer cells, such as those inside a tumor, can tolerate these severe conditions and survive for prolonged periods. We hypothesized that small molecular agents, which can preferentially reduce cancer cell survival under nutrient-deprived conditions, could function as anticancer drugs. In this study, we constructed a high-throughput screening system to identify such small molecules and screened chemical libraries and microbial culture extracts. We were able to determine that some small molecular compounds, such as penicillic acid, papyracillic acid, and auranofin, exhibit preferential cytotoxicity to human pancreatic cancer cells under nutrient-deprived compared with nutrient-sufficient conditions. Further analysis revealed that these compounds target to redox systems such as GSH and thioredoxin and induce accumulation of reactive oxygen species in nutrient-deprived cancer cells, potentially contributing to apoptosis under nutrient-deprived conditions. Nutrient-deficient cancer cells are often deficient in GSH; thus, they are susceptible to redox system inhibitors. Targeting redox systems might be an attractive therapeutic strategy under nutrient-deprived conditions of the tumor microenvironment. American Society for Biochemistry and Molecular Biology 2021-01-13 /pmc/articles/PMC7864064/ /pubmed/32978257 http://dx.doi.org/10.1074/jbc.RA120.013893 Text en © 2020 © 2020 Onodera et al. https://creativecommons.org/licenses/by/4.0/This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Metabolism
Onodera, Takefumi
Momose, Isao
Adachi, Hayamitsu
Yamazaki, Yohko
Sawa, Ryuichi
Ohba, Shun-ichi
Kawada, Manabu
Human pancreatic cancer cells under nutrient deprivation are vulnerable to redox system inhibition
title Human pancreatic cancer cells under nutrient deprivation are vulnerable to redox system inhibition
title_full Human pancreatic cancer cells under nutrient deprivation are vulnerable to redox system inhibition
title_fullStr Human pancreatic cancer cells under nutrient deprivation are vulnerable to redox system inhibition
title_full_unstemmed Human pancreatic cancer cells under nutrient deprivation are vulnerable to redox system inhibition
title_short Human pancreatic cancer cells under nutrient deprivation are vulnerable to redox system inhibition
title_sort human pancreatic cancer cells under nutrient deprivation are vulnerable to redox system inhibition
topic Metabolism
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7864064/
https://www.ncbi.nlm.nih.gov/pubmed/32978257
http://dx.doi.org/10.1074/jbc.RA120.013893
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