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Thioredoxin 1 modulates apoptosis induced by bioactive compounds in prostate cancer cells

Accumulating evidence suggests that natural bioactive compounds, alone or in combination with traditional chemotherapeutic agents, could be used as potential therapies to fight cancer. In this study, we employed four natural bioactive compounds (curcumin, resveratrol, melatonin, and silibinin) and s...

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Autores principales: Rodriguez-Garcia, Aida, Hevia, David, Mayo, Juan C., Gonzalez-Menendez, Pedro, Coppo, Lucia, Lu, Jun, Holmgren, Arne, Sainz, Rosa M.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5385622/
https://www.ncbi.nlm.nih.gov/pubmed/28391184
http://dx.doi.org/10.1016/j.redox.2017.03.025
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author Rodriguez-Garcia, Aida
Hevia, David
Mayo, Juan C.
Gonzalez-Menendez, Pedro
Coppo, Lucia
Lu, Jun
Holmgren, Arne
Sainz, Rosa M.
author_facet Rodriguez-Garcia, Aida
Hevia, David
Mayo, Juan C.
Gonzalez-Menendez, Pedro
Coppo, Lucia
Lu, Jun
Holmgren, Arne
Sainz, Rosa M.
author_sort Rodriguez-Garcia, Aida
collection PubMed
description Accumulating evidence suggests that natural bioactive compounds, alone or in combination with traditional chemotherapeutic agents, could be used as potential therapies to fight cancer. In this study, we employed four natural bioactive compounds (curcumin, resveratrol, melatonin, and silibinin) and studied their role in redox control and ability to promote apoptosis in androgen sensitive and insensitive prostate cancer cells. Here is shown that curcumin and resveratrol promote ROS production and induce apoptosis in LNCaP and PC-3. An increase in reactive species is a trigger event in curcumin-induced apoptosis and a consequence of resveratrol effects on other pathways within these cells. Moreover, here we demonstrated that these four compounds affect differently one of the main intracellular redox regulator, the thioredoxin system. Exposure to curcumin and resveratrol promoted TRX1 oxidation and altered its subcellular location. Furthermore, resveratrol diminished TRX1 levels in PC-3 cells and increased the expression of its inhibitor TXNIP. Conversly, melatonin and silibinin only worked as cytostatic agents, reducing ROS levels and showing preventive effects against TRX oxidation. All together, this work explores the effect of compounds currently tested as chemo-preventive agents in prostate cancer therapy, on the TRX1 redox state and function. Our work shows the importance that the TRX system might have within the differences found in their mechanisms of action. These bioactive compounds trigger different responses and affect ROS production and redox systems in prostate cancer cells, suggesting the key role that redox-related pathways might play in processes like differentiation or survival in prostate cancer.
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spelling pubmed-53856222017-04-14 Thioredoxin 1 modulates apoptosis induced by bioactive compounds in prostate cancer cells Rodriguez-Garcia, Aida Hevia, David Mayo, Juan C. Gonzalez-Menendez, Pedro Coppo, Lucia Lu, Jun Holmgren, Arne Sainz, Rosa M. Redox Biol Research Paper Accumulating evidence suggests that natural bioactive compounds, alone or in combination with traditional chemotherapeutic agents, could be used as potential therapies to fight cancer. In this study, we employed four natural bioactive compounds (curcumin, resveratrol, melatonin, and silibinin) and studied their role in redox control and ability to promote apoptosis in androgen sensitive and insensitive prostate cancer cells. Here is shown that curcumin and resveratrol promote ROS production and induce apoptosis in LNCaP and PC-3. An increase in reactive species is a trigger event in curcumin-induced apoptosis and a consequence of resveratrol effects on other pathways within these cells. Moreover, here we demonstrated that these four compounds affect differently one of the main intracellular redox regulator, the thioredoxin system. Exposure to curcumin and resveratrol promoted TRX1 oxidation and altered its subcellular location. Furthermore, resveratrol diminished TRX1 levels in PC-3 cells and increased the expression of its inhibitor TXNIP. Conversly, melatonin and silibinin only worked as cytostatic agents, reducing ROS levels and showing preventive effects against TRX oxidation. All together, this work explores the effect of compounds currently tested as chemo-preventive agents in prostate cancer therapy, on the TRX1 redox state and function. Our work shows the importance that the TRX system might have within the differences found in their mechanisms of action. These bioactive compounds trigger different responses and affect ROS production and redox systems in prostate cancer cells, suggesting the key role that redox-related pathways might play in processes like differentiation or survival in prostate cancer. Elsevier 2017-03-31 /pmc/articles/PMC5385622/ /pubmed/28391184 http://dx.doi.org/10.1016/j.redox.2017.03.025 Text en © 2017 The Authors. Published by Elsevier B.V. http://creativecommons.org/licenses/by-nc-nd/4.0/ This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Research Paper
Rodriguez-Garcia, Aida
Hevia, David
Mayo, Juan C.
Gonzalez-Menendez, Pedro
Coppo, Lucia
Lu, Jun
Holmgren, Arne
Sainz, Rosa M.
Thioredoxin 1 modulates apoptosis induced by bioactive compounds in prostate cancer cells
title Thioredoxin 1 modulates apoptosis induced by bioactive compounds in prostate cancer cells
title_full Thioredoxin 1 modulates apoptosis induced by bioactive compounds in prostate cancer cells
title_fullStr Thioredoxin 1 modulates apoptosis induced by bioactive compounds in prostate cancer cells
title_full_unstemmed Thioredoxin 1 modulates apoptosis induced by bioactive compounds in prostate cancer cells
title_short Thioredoxin 1 modulates apoptosis induced by bioactive compounds in prostate cancer cells
title_sort thioredoxin 1 modulates apoptosis induced by bioactive compounds in prostate cancer cells
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5385622/
https://www.ncbi.nlm.nih.gov/pubmed/28391184
http://dx.doi.org/10.1016/j.redox.2017.03.025
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