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AB070. Roles and mechanisms of soybean isoflavones in androgen-independent transformation of prostate cancer

The aims of this study were to investigate the impact of soybean isoflavones (SIFs) on the cellular oxidative stress levels in hormone-sensitive type (LNCap) and hormone-insensitive type (DU145) of prostate cancer, and to elucidate the main components and their roles in the transformation of androge...

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Autores principales: Xu, Li, Cao, Zhigang, Xue, Yemin, Zhao, Shuli, Wang, Kai, Jiang, Chao, Chen, Qichao
Formato: Online Artículo Texto
Lenguaje:English
Publicado: AME Publishing Company 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5565587/
http://dx.doi.org/10.21037/tau.2017.s070
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author Xu, Li
Cao, Zhigang
Xue, Yemin
Zhao, Shuli
Wang, Kai
Jiang, Chao
Chen, Qichao
author_facet Xu, Li
Cao, Zhigang
Xue, Yemin
Zhao, Shuli
Wang, Kai
Jiang, Chao
Chen, Qichao
author_sort Xu, Li
collection PubMed
description The aims of this study were to investigate the impact of soybean isoflavones (SIFs) on the cellular oxidative stress levels in hormone-sensitive type (LNCap) and hormone-insensitive type (DU145) of prostate cancer, and to elucidate the main components and their roles in the transformation of androgen dependency (AD)/androgen independency (AI). The LNCap and DU145 cells were treated with different concentrations of SIFs monomer (including daidzin, genistin, daidzein, and genistein), and the activities of superoxide dismutase (SOD) and malondialdehyde (MDA) were then measured. The content of reactive oxygen species (ROS) in these two cells was also determined after treated with certain effective monomer. The contents of MDA in the two kinds of cells treated with genistein and daidzein were increased, but the contents of SOD were decreased in a concentration-dependent manner. There was no significant difference between daidzin and genistin. The content of MDA in the DU145 cells was higher than that in the LNCap cells under the same conditions, but the content of SOD was decreased, indicating that the oxidative stress level in DU-145 was higher than LNCap, and the ROS level in DU145 treated with effective component was significantly higher than that in LNCap. Genistein and daidzein in SIFs can affect the apoptosis and proliferation of prostate cancer cells through increasing their oxidative stress levels, thus inhibit the transformation of prostate cancer toward androgen-independent type.
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spelling pubmed-55655872017-09-01 AB070. Roles and mechanisms of soybean isoflavones in androgen-independent transformation of prostate cancer Xu, Li Cao, Zhigang Xue, Yemin Zhao, Shuli Wang, Kai Jiang, Chao Chen, Qichao Transl Androl Urol Printed Abstracts The aims of this study were to investigate the impact of soybean isoflavones (SIFs) on the cellular oxidative stress levels in hormone-sensitive type (LNCap) and hormone-insensitive type (DU145) of prostate cancer, and to elucidate the main components and their roles in the transformation of androgen dependency (AD)/androgen independency (AI). The LNCap and DU145 cells were treated with different concentrations of SIFs monomer (including daidzin, genistin, daidzein, and genistein), and the activities of superoxide dismutase (SOD) and malondialdehyde (MDA) were then measured. The content of reactive oxygen species (ROS) in these two cells was also determined after treated with certain effective monomer. The contents of MDA in the two kinds of cells treated with genistein and daidzein were increased, but the contents of SOD were decreased in a concentration-dependent manner. There was no significant difference between daidzin and genistin. The content of MDA in the DU145 cells was higher than that in the LNCap cells under the same conditions, but the content of SOD was decreased, indicating that the oxidative stress level in DU-145 was higher than LNCap, and the ROS level in DU145 treated with effective component was significantly higher than that in LNCap. Genistein and daidzein in SIFs can affect the apoptosis and proliferation of prostate cancer cells through increasing their oxidative stress levels, thus inhibit the transformation of prostate cancer toward androgen-independent type. AME Publishing Company 2017-08 /pmc/articles/PMC5565587/ http://dx.doi.org/10.21037/tau.2017.s070 Text en 2017 Translational Andrology and Urology. All rights reserved.
spellingShingle Printed Abstracts
Xu, Li
Cao, Zhigang
Xue, Yemin
Zhao, Shuli
Wang, Kai
Jiang, Chao
Chen, Qichao
AB070. Roles and mechanisms of soybean isoflavones in androgen-independent transformation of prostate cancer
title AB070. Roles and mechanisms of soybean isoflavones in androgen-independent transformation of prostate cancer
title_full AB070. Roles and mechanisms of soybean isoflavones in androgen-independent transformation of prostate cancer
title_fullStr AB070. Roles and mechanisms of soybean isoflavones in androgen-independent transformation of prostate cancer
title_full_unstemmed AB070. Roles and mechanisms of soybean isoflavones in androgen-independent transformation of prostate cancer
title_short AB070. Roles and mechanisms of soybean isoflavones in androgen-independent transformation of prostate cancer
title_sort ab070. roles and mechanisms of soybean isoflavones in androgen-independent transformation of prostate cancer
topic Printed Abstracts
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5565587/
http://dx.doi.org/10.21037/tau.2017.s070
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