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Metabolomic dynamics of the arsenic-transformed bronchial epithelial cells and the derived cancer stem-like cells

Accumulating evidence indicates a carcinogenic role of environmental arsenic exposure, but mechanisms on how arsenic fosters malignant transformation of the normal cells are not fully established. By applying untargeted global metabolomics approach, we now show that arsenic is highly capable of pert...

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Autores principales: Fu, Yao, Bi, Zhuoyue, Li, Lingzhi, Wadgaonkar, Priya, Qiu, Yiran, Almutairy, Bandar, Zhang, Wenxuan, Seno, Akimasa, Thakur, Chitra, Chen, Fei
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Ivyspring International Publisher 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8692148/
https://www.ncbi.nlm.nih.gov/pubmed/34975334
http://dx.doi.org/10.7150/ijbs.67314
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author Fu, Yao
Bi, Zhuoyue
Li, Lingzhi
Wadgaonkar, Priya
Qiu, Yiran
Almutairy, Bandar
Zhang, Wenxuan
Seno, Akimasa
Thakur, Chitra
Chen, Fei
author_facet Fu, Yao
Bi, Zhuoyue
Li, Lingzhi
Wadgaonkar, Priya
Qiu, Yiran
Almutairy, Bandar
Zhang, Wenxuan
Seno, Akimasa
Thakur, Chitra
Chen, Fei
author_sort Fu, Yao
collection PubMed
description Accumulating evidence indicates a carcinogenic role of environmental arsenic exposure, but mechanisms on how arsenic fosters malignant transformation of the normal cells are not fully established. By applying untargeted global metabolomics approach, we now show that arsenic is highly capable of perturbing the intracellular metabolic programs of the human bronchial epithelial cells, some of which are prominent hallmarks of cancer cell metabolism. To understand the spatiotemporal patterns of arsenic regulation on multiple metabolic pathways, we treated the cells with environmentally relevant concentration of arsenic, 0.25 μM, consecutively for 6 weeks to 24 weeks, and found that arsenic prompted heme metabolism, glycolysis, sphingolipid metabolism, phospholipid catabolism, protein degradation, and cholesterol breakdown constitutively, but inhibited metabolism of uracil-containing pyrimidine, carnitine, serotonin, polyamines, and fatty acid β-oxidation. A strong inhibition of all metabolites in mitochondrial tricarboxylic acid (TCA) cycle was noted in the cells treated with As(3+) for 6 to 13 weeks. However, the metabolites in the earlier, but not the later steps of TCA cycle, including citrate, aconitate and isocitrate, were induced at 16 weeks through 24 weeks of arsenic treatment. This comprehensive metabolomics analysis provides new insights into metabolic perturbation by arsenic and may lead to more precise indications of arsenic in molecular carcinogenesis.
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spelling pubmed-86921482022-01-01 Metabolomic dynamics of the arsenic-transformed bronchial epithelial cells and the derived cancer stem-like cells Fu, Yao Bi, Zhuoyue Li, Lingzhi Wadgaonkar, Priya Qiu, Yiran Almutairy, Bandar Zhang, Wenxuan Seno, Akimasa Thakur, Chitra Chen, Fei Int J Biol Sci Research Paper Accumulating evidence indicates a carcinogenic role of environmental arsenic exposure, but mechanisms on how arsenic fosters malignant transformation of the normal cells are not fully established. By applying untargeted global metabolomics approach, we now show that arsenic is highly capable of perturbing the intracellular metabolic programs of the human bronchial epithelial cells, some of which are prominent hallmarks of cancer cell metabolism. To understand the spatiotemporal patterns of arsenic regulation on multiple metabolic pathways, we treated the cells with environmentally relevant concentration of arsenic, 0.25 μM, consecutively for 6 weeks to 24 weeks, and found that arsenic prompted heme metabolism, glycolysis, sphingolipid metabolism, phospholipid catabolism, protein degradation, and cholesterol breakdown constitutively, but inhibited metabolism of uracil-containing pyrimidine, carnitine, serotonin, polyamines, and fatty acid β-oxidation. A strong inhibition of all metabolites in mitochondrial tricarboxylic acid (TCA) cycle was noted in the cells treated with As(3+) for 6 to 13 weeks. However, the metabolites in the earlier, but not the later steps of TCA cycle, including citrate, aconitate and isocitrate, were induced at 16 weeks through 24 weeks of arsenic treatment. This comprehensive metabolomics analysis provides new insights into metabolic perturbation by arsenic and may lead to more precise indications of arsenic in molecular carcinogenesis. Ivyspring International Publisher 2022-01-01 /pmc/articles/PMC8692148/ /pubmed/34975334 http://dx.doi.org/10.7150/ijbs.67314 Text en © The author(s) https://creativecommons.org/licenses/by/4.0/This is an open access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/). See http://ivyspring.com/terms for full terms and conditions.
spellingShingle Research Paper
Fu, Yao
Bi, Zhuoyue
Li, Lingzhi
Wadgaonkar, Priya
Qiu, Yiran
Almutairy, Bandar
Zhang, Wenxuan
Seno, Akimasa
Thakur, Chitra
Chen, Fei
Metabolomic dynamics of the arsenic-transformed bronchial epithelial cells and the derived cancer stem-like cells
title Metabolomic dynamics of the arsenic-transformed bronchial epithelial cells and the derived cancer stem-like cells
title_full Metabolomic dynamics of the arsenic-transformed bronchial epithelial cells and the derived cancer stem-like cells
title_fullStr Metabolomic dynamics of the arsenic-transformed bronchial epithelial cells and the derived cancer stem-like cells
title_full_unstemmed Metabolomic dynamics of the arsenic-transformed bronchial epithelial cells and the derived cancer stem-like cells
title_short Metabolomic dynamics of the arsenic-transformed bronchial epithelial cells and the derived cancer stem-like cells
title_sort metabolomic dynamics of the arsenic-transformed bronchial epithelial cells and the derived cancer stem-like cells
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8692148/
https://www.ncbi.nlm.nih.gov/pubmed/34975334
http://dx.doi.org/10.7150/ijbs.67314
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