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Magnetic nanoparticles of Fe(3)O(4) enhance docetaxel-induced prostate cancer cell death

Docetaxel (DTX) is one of the most important anticancer drugs; however, the severity of its adverse effects detracts from its practical use in the clinic. Magnetic nanoparticles of Fe(3)O(4) (MgNPs-Fe(3)O(4)) can enhance the delivery and efficacy of anticancer drugs. We investigated the effects of M...

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Autores principales: Sato, Akiko, Itcho, Naoki, Ishiguro, Hitoshi, Okamoto, Daiki, Kobayashi, Naohito, Kawai, Kazuaki, Kasai, Hiroshi, Kurioka, Daisuke, Uemura, Hiroji, Kubota, Yoshinobu, Watanabe, Masatoshi
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Dove Medical Press 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3753150/
https://www.ncbi.nlm.nih.gov/pubmed/23990723
http://dx.doi.org/10.2147/IJN.S40766
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author Sato, Akiko
Itcho, Naoki
Ishiguro, Hitoshi
Okamoto, Daiki
Kobayashi, Naohito
Kawai, Kazuaki
Kasai, Hiroshi
Kurioka, Daisuke
Uemura, Hiroji
Kubota, Yoshinobu
Watanabe, Masatoshi
author_facet Sato, Akiko
Itcho, Naoki
Ishiguro, Hitoshi
Okamoto, Daiki
Kobayashi, Naohito
Kawai, Kazuaki
Kasai, Hiroshi
Kurioka, Daisuke
Uemura, Hiroji
Kubota, Yoshinobu
Watanabe, Masatoshi
author_sort Sato, Akiko
collection PubMed
description Docetaxel (DTX) is one of the most important anticancer drugs; however, the severity of its adverse effects detracts from its practical use in the clinic. Magnetic nanoparticles of Fe(3)O(4) (MgNPs-Fe(3)O(4)) can enhance the delivery and efficacy of anticancer drugs. We investigated the effects of MgNPs-Fe(3)O(4) or DTX alone, and in combination with prostate cancer cell growth in vitro, as well as with the mechanism underlying the cytotoxic effects. MgNPs-Fe(3)O(4) caused dose-dependent increases in reactive oxygen species levels in DU145, PC-3, and LNCaP cells; 8-hydroxydeoxyguanosine levels were also elevated. MgNPs-Fe(3)O(4) alone reduced the viability of LNCaP and PC-3 cells; however, MgNPs-Fe(3)O(4) enhanced the cytotoxic effect of a low dose of DTX in all three cell lines. MgNPs-Fe(3)O(4) also augmented the percentage of DU145 cells undergoing apoptosis following treatment with low dose DTX. Expression of nuclear transcription factor κB in DU145 was not affected by MgNPs-Fe(3)O(4) or DTX alone; however, combined treatment suppressed nuclear transcription factor κB expression. These findings offer the possibility that MgNPs-Fe(3)O(4)–low dose DTX combination therapy may be effective in treating prostate cancer with limited adverse effects.
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spelling pubmed-37531502013-08-29 Magnetic nanoparticles of Fe(3)O(4) enhance docetaxel-induced prostate cancer cell death Sato, Akiko Itcho, Naoki Ishiguro, Hitoshi Okamoto, Daiki Kobayashi, Naohito Kawai, Kazuaki Kasai, Hiroshi Kurioka, Daisuke Uemura, Hiroji Kubota, Yoshinobu Watanabe, Masatoshi Int J Nanomedicine Original Research Docetaxel (DTX) is one of the most important anticancer drugs; however, the severity of its adverse effects detracts from its practical use in the clinic. Magnetic nanoparticles of Fe(3)O(4) (MgNPs-Fe(3)O(4)) can enhance the delivery and efficacy of anticancer drugs. We investigated the effects of MgNPs-Fe(3)O(4) or DTX alone, and in combination with prostate cancer cell growth in vitro, as well as with the mechanism underlying the cytotoxic effects. MgNPs-Fe(3)O(4) caused dose-dependent increases in reactive oxygen species levels in DU145, PC-3, and LNCaP cells; 8-hydroxydeoxyguanosine levels were also elevated. MgNPs-Fe(3)O(4) alone reduced the viability of LNCaP and PC-3 cells; however, MgNPs-Fe(3)O(4) enhanced the cytotoxic effect of a low dose of DTX in all three cell lines. MgNPs-Fe(3)O(4) also augmented the percentage of DU145 cells undergoing apoptosis following treatment with low dose DTX. Expression of nuclear transcription factor κB in DU145 was not affected by MgNPs-Fe(3)O(4) or DTX alone; however, combined treatment suppressed nuclear transcription factor κB expression. These findings offer the possibility that MgNPs-Fe(3)O(4)–low dose DTX combination therapy may be effective in treating prostate cancer with limited adverse effects. Dove Medical Press 2013 2013-08-19 /pmc/articles/PMC3753150/ /pubmed/23990723 http://dx.doi.org/10.2147/IJN.S40766 Text en © 2013 Sato et al, publisher and licensee Dove Medical Press Ltd This is an Open Access article which permits unrestricted noncommercial use, provided the original work is properly cited.
spellingShingle Original Research
Sato, Akiko
Itcho, Naoki
Ishiguro, Hitoshi
Okamoto, Daiki
Kobayashi, Naohito
Kawai, Kazuaki
Kasai, Hiroshi
Kurioka, Daisuke
Uemura, Hiroji
Kubota, Yoshinobu
Watanabe, Masatoshi
Magnetic nanoparticles of Fe(3)O(4) enhance docetaxel-induced prostate cancer cell death
title Magnetic nanoparticles of Fe(3)O(4) enhance docetaxel-induced prostate cancer cell death
title_full Magnetic nanoparticles of Fe(3)O(4) enhance docetaxel-induced prostate cancer cell death
title_fullStr Magnetic nanoparticles of Fe(3)O(4) enhance docetaxel-induced prostate cancer cell death
title_full_unstemmed Magnetic nanoparticles of Fe(3)O(4) enhance docetaxel-induced prostate cancer cell death
title_short Magnetic nanoparticles of Fe(3)O(4) enhance docetaxel-induced prostate cancer cell death
title_sort magnetic nanoparticles of fe(3)o(4) enhance docetaxel-induced prostate cancer cell death
topic Original Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3753150/
https://www.ncbi.nlm.nih.gov/pubmed/23990723
http://dx.doi.org/10.2147/IJN.S40766
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