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KML001 Induces Apoptosis and Autophagic Cell Death in Prostate Cancer Cells via Oxidative Stress Pathway

We investigated the effects of KML001 (NaAsO(2), sodium metaarsenite, Kominox), an orally bioavailable arsenic compound, on the growth and death of human prostate cancer cells and its mechanism of action. Growth inhibition was assessed by cytotoxicity assays in the presence or absence of inhibitor o...

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Autores principales: You, Dalsan, Kim, Yunlim, Jang, Myoung Jin, Lee, Chunwoo, Jeong, In Gab, Cho, Yong Mee, Hwang, Jung Jin, Hong, Jun Hyuk, Ahn, Hanjong, Kim, Choung-Soo
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4564181/
https://www.ncbi.nlm.nih.gov/pubmed/26352139
http://dx.doi.org/10.1371/journal.pone.0137589
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author You, Dalsan
Kim, Yunlim
Jang, Myoung Jin
Lee, Chunwoo
Jeong, In Gab
Cho, Yong Mee
Hwang, Jung Jin
Hong, Jun Hyuk
Ahn, Hanjong
Kim, Choung-Soo
author_facet You, Dalsan
Kim, Yunlim
Jang, Myoung Jin
Lee, Chunwoo
Jeong, In Gab
Cho, Yong Mee
Hwang, Jung Jin
Hong, Jun Hyuk
Ahn, Hanjong
Kim, Choung-Soo
author_sort You, Dalsan
collection PubMed
description We investigated the effects of KML001 (NaAsO(2), sodium metaarsenite, Kominox), an orally bioavailable arsenic compound, on the growth and death of human prostate cancer cells and its mechanism of action. Growth inhibition was assessed by cytotoxicity assays in the presence or absence of inhibitor of apoptosis, inhibitor of autophagy or antioxidant N-Acetyl-(L)-cysteine to study mechanism of cell death induced by KML001 in PC3, DU145 and LNCaP prostate cancer cell lines. Electron microscopy, flow cytometry and Western blotting were used to study apoptotic and autophagic mechanisms. The DU145 xenograft model was used to determine the efficacy of KML001 in vivo. KML001 decreased the viability of cells and increased the percentage of annexin V-positive cells dose-dependently in prostate cancer cells, and LNCaP cells were more sensitive to KML001 than PC3 or DU145 cells. Electron microscopy revealed typical apoptotic characters and autophagic vacuoles in cells treated with KML001. Exposure to KML001 in prostate cancer cells induced apoptosis and autophagy in a time- and dose-dependent manner. KML001 induced dose-dependent accumulation of reactive oxygen species, and scavenging the reactive oxygen species with N-Acetyl-(L)-cysteine reduced LC3 and cleaved poly (ADP-ribose) polymerase. KML001 significantly inhibited tumor growth in the DU145 xenograft model. In addition, significant decrease of proliferation and significant increases of apoptosis and autophagy were observed in KML001-treated tumors than in vehicle-treated tumors. Exposure of human prostate cancer cells to KML001 induced both apoptosis and autophagic cell death via oxidative stress pathway. And KML001 had an antiproliferative effect on DU145 cells in xenograft mice.
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spelling pubmed-45641812015-09-17 KML001 Induces Apoptosis and Autophagic Cell Death in Prostate Cancer Cells via Oxidative Stress Pathway You, Dalsan Kim, Yunlim Jang, Myoung Jin Lee, Chunwoo Jeong, In Gab Cho, Yong Mee Hwang, Jung Jin Hong, Jun Hyuk Ahn, Hanjong Kim, Choung-Soo PLoS One Research Article We investigated the effects of KML001 (NaAsO(2), sodium metaarsenite, Kominox), an orally bioavailable arsenic compound, on the growth and death of human prostate cancer cells and its mechanism of action. Growth inhibition was assessed by cytotoxicity assays in the presence or absence of inhibitor of apoptosis, inhibitor of autophagy or antioxidant N-Acetyl-(L)-cysteine to study mechanism of cell death induced by KML001 in PC3, DU145 and LNCaP prostate cancer cell lines. Electron microscopy, flow cytometry and Western blotting were used to study apoptotic and autophagic mechanisms. The DU145 xenograft model was used to determine the efficacy of KML001 in vivo. KML001 decreased the viability of cells and increased the percentage of annexin V-positive cells dose-dependently in prostate cancer cells, and LNCaP cells were more sensitive to KML001 than PC3 or DU145 cells. Electron microscopy revealed typical apoptotic characters and autophagic vacuoles in cells treated with KML001. Exposure to KML001 in prostate cancer cells induced apoptosis and autophagy in a time- and dose-dependent manner. KML001 induced dose-dependent accumulation of reactive oxygen species, and scavenging the reactive oxygen species with N-Acetyl-(L)-cysteine reduced LC3 and cleaved poly (ADP-ribose) polymerase. KML001 significantly inhibited tumor growth in the DU145 xenograft model. In addition, significant decrease of proliferation and significant increases of apoptosis and autophagy were observed in KML001-treated tumors than in vehicle-treated tumors. Exposure of human prostate cancer cells to KML001 induced both apoptosis and autophagic cell death via oxidative stress pathway. And KML001 had an antiproliferative effect on DU145 cells in xenograft mice. Public Library of Science 2015-09-09 /pmc/articles/PMC4564181/ /pubmed/26352139 http://dx.doi.org/10.1371/journal.pone.0137589 Text en © 2015 You et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
You, Dalsan
Kim, Yunlim
Jang, Myoung Jin
Lee, Chunwoo
Jeong, In Gab
Cho, Yong Mee
Hwang, Jung Jin
Hong, Jun Hyuk
Ahn, Hanjong
Kim, Choung-Soo
KML001 Induces Apoptosis and Autophagic Cell Death in Prostate Cancer Cells via Oxidative Stress Pathway
title KML001 Induces Apoptosis and Autophagic Cell Death in Prostate Cancer Cells via Oxidative Stress Pathway
title_full KML001 Induces Apoptosis and Autophagic Cell Death in Prostate Cancer Cells via Oxidative Stress Pathway
title_fullStr KML001 Induces Apoptosis and Autophagic Cell Death in Prostate Cancer Cells via Oxidative Stress Pathway
title_full_unstemmed KML001 Induces Apoptosis and Autophagic Cell Death in Prostate Cancer Cells via Oxidative Stress Pathway
title_short KML001 Induces Apoptosis and Autophagic Cell Death in Prostate Cancer Cells via Oxidative Stress Pathway
title_sort kml001 induces apoptosis and autophagic cell death in prostate cancer cells via oxidative stress pathway
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4564181/
https://www.ncbi.nlm.nih.gov/pubmed/26352139
http://dx.doi.org/10.1371/journal.pone.0137589
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