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Tumor-Selective Cytotoxicity of Nitidine Results from Its Rapid Accumulation into Mitochondria

We identified a nitidine- (NTD-) accumulating organelle and evaluated the net cytotoxicity of accumulated NTD. To evaluate tumor cell selectivity of the drug, we evaluated its selective cytotoxicity against 39 human cancer cell lines (JFCR39 panel), and the profile was compared with those of known a...

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Autores principales: Iwasaki, Hironori, Inafuku, Masashi, Taira, Naoyuki, Saito, Seikoh, Oku, Hirosuke
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Hindawi 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5424480/
https://www.ncbi.nlm.nih.gov/pubmed/28529950
http://dx.doi.org/10.1155/2017/2130594
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author Iwasaki, Hironori
Inafuku, Masashi
Taira, Naoyuki
Saito, Seikoh
Oku, Hirosuke
author_facet Iwasaki, Hironori
Inafuku, Masashi
Taira, Naoyuki
Saito, Seikoh
Oku, Hirosuke
author_sort Iwasaki, Hironori
collection PubMed
description We identified a nitidine- (NTD-) accumulating organelle and evaluated the net cytotoxicity of accumulated NTD. To evaluate tumor cell selectivity of the drug, we evaluated its selective cytotoxicity against 39 human cancer cell lines (JFCR39 panel), and the profile was compared with those of known anticancer drugs. Organelle specificity of NTD was visualized using organelle-targeted fluorescent proteins. Real-time analysis of cell growth, proliferation, and cytotoxicity was performed using the xCELLigence system. Selectivity of NTD in the JFCR39 panel was evaluated. Mitochondria-specific accumulation of NTD was observed. Real-time cytotoxicity analysis suggested that the mechanism of NTD-induced cell death is independent of the cell cycle. Short-term treatment indicated that this cytotoxicity only resulted from the accumulation of NTD into the mitochondria. The results from the JFCR39 panel indicated that NTD-mediated cytotoxicity resulted from unique mechanisms compared with those of other known anticancer drugs. These results suggested that the cytotoxicity of NTD is only induced by its accumulation in mitochondria. The drug triggered mitochondrial dysfunction in less than 2 h. Similarity analysis of the selectivity of NTD in 39 tumor cell lines strongly supported the unique tumor cell specificity of NTD. Thus, these features indicate that NTD may be a promising antitumor drug for new combination chemotherapies.
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spelling pubmed-54244802017-05-21 Tumor-Selective Cytotoxicity of Nitidine Results from Its Rapid Accumulation into Mitochondria Iwasaki, Hironori Inafuku, Masashi Taira, Naoyuki Saito, Seikoh Oku, Hirosuke Biomed Res Int Research Article We identified a nitidine- (NTD-) accumulating organelle and evaluated the net cytotoxicity of accumulated NTD. To evaluate tumor cell selectivity of the drug, we evaluated its selective cytotoxicity against 39 human cancer cell lines (JFCR39 panel), and the profile was compared with those of known anticancer drugs. Organelle specificity of NTD was visualized using organelle-targeted fluorescent proteins. Real-time analysis of cell growth, proliferation, and cytotoxicity was performed using the xCELLigence system. Selectivity of NTD in the JFCR39 panel was evaluated. Mitochondria-specific accumulation of NTD was observed. Real-time cytotoxicity analysis suggested that the mechanism of NTD-induced cell death is independent of the cell cycle. Short-term treatment indicated that this cytotoxicity only resulted from the accumulation of NTD into the mitochondria. The results from the JFCR39 panel indicated that NTD-mediated cytotoxicity resulted from unique mechanisms compared with those of other known anticancer drugs. These results suggested that the cytotoxicity of NTD is only induced by its accumulation in mitochondria. The drug triggered mitochondrial dysfunction in less than 2 h. Similarity analysis of the selectivity of NTD in 39 tumor cell lines strongly supported the unique tumor cell specificity of NTD. Thus, these features indicate that NTD may be a promising antitumor drug for new combination chemotherapies. Hindawi 2017 2017-04-26 /pmc/articles/PMC5424480/ /pubmed/28529950 http://dx.doi.org/10.1155/2017/2130594 Text en Copyright © 2017 Hironori Iwasaki et al. https://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Iwasaki, Hironori
Inafuku, Masashi
Taira, Naoyuki
Saito, Seikoh
Oku, Hirosuke
Tumor-Selective Cytotoxicity of Nitidine Results from Its Rapid Accumulation into Mitochondria
title Tumor-Selective Cytotoxicity of Nitidine Results from Its Rapid Accumulation into Mitochondria
title_full Tumor-Selective Cytotoxicity of Nitidine Results from Its Rapid Accumulation into Mitochondria
title_fullStr Tumor-Selective Cytotoxicity of Nitidine Results from Its Rapid Accumulation into Mitochondria
title_full_unstemmed Tumor-Selective Cytotoxicity of Nitidine Results from Its Rapid Accumulation into Mitochondria
title_short Tumor-Selective Cytotoxicity of Nitidine Results from Its Rapid Accumulation into Mitochondria
title_sort tumor-selective cytotoxicity of nitidine results from its rapid accumulation into mitochondria
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5424480/
https://www.ncbi.nlm.nih.gov/pubmed/28529950
http://dx.doi.org/10.1155/2017/2130594
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