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Antioral Cancer Effects by the Nitrated [6,6,6]Tricycles Compound (SK1) In Vitro

A novel nitrated [6,6,6]tricycles-derived compound containing nitro, methoxy, and ispropyloxy groups, namely SK1, was developed in our previous report. However, the anticancer effects of SK1 were not assessed. Moreover, SK1 contains two nitro groups (NO(2)) and one nitrogen-oxygen (N-O) bond exhibit...

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Autores principales: Chen, Yan-Ning, Chan, Chieh-Kai, Yen, Ching-Yu, Shiau, Jun-Ping, Chang, Meng-Yang, Wang, Cheng-Chung, Jeng, Jiiang-Huei, Tang, Jen-Yang, Chang, Hsueh-Wei
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9598307/
https://www.ncbi.nlm.nih.gov/pubmed/36290795
http://dx.doi.org/10.3390/antiox11102072
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author Chen, Yan-Ning
Chan, Chieh-Kai
Yen, Ching-Yu
Shiau, Jun-Ping
Chang, Meng-Yang
Wang, Cheng-Chung
Jeng, Jiiang-Huei
Tang, Jen-Yang
Chang, Hsueh-Wei
author_facet Chen, Yan-Ning
Chan, Chieh-Kai
Yen, Ching-Yu
Shiau, Jun-Ping
Chang, Meng-Yang
Wang, Cheng-Chung
Jeng, Jiiang-Huei
Tang, Jen-Yang
Chang, Hsueh-Wei
author_sort Chen, Yan-Ning
collection PubMed
description A novel nitrated [6,6,6]tricycles-derived compound containing nitro, methoxy, and ispropyloxy groups, namely SK1, was developed in our previous report. However, the anticancer effects of SK1 were not assessed. Moreover, SK1 contains two nitro groups (NO(2)) and one nitrogen-oxygen (N-O) bond exhibiting the potential for oxidative stress generation, but this was not examined. The present study aimed to evaluate the antiproliferation effects and oxidative stress and its associated responses between oral cancer and normal cells. Based on the MTS assay, SK1 demonstrated more antiproliferation ability in oral cancer cells than normal cells, reversed by N-acetylcysteine. This suggests that SK1 causes antiproliferation effects preferentially in an oxidative stress-dependent manner. The oxidative stress-associated responses were further validated, showing higher ROS/MitoSOX burst, MMP, and GSH depletion in oral cancer cells than in normal cells. Meanwhile, SK1 caused oxidative stress-causing apoptosis, such as caspases 3/8/9, and DNA damages, such as γH2AX and 8-OHdG, to a greater extent in oral cancer cells than in normal cells. Siilar to cell viability, these oxidative stress responses were partially diminished by NAC, indicating that SK1 promoted oxidative stress-dependent responses. In conclusion, SK1 exerts oxidative stress, apoptosis, and DNA damage to a greater extent to oral cancer cells than in normal cells.
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spelling pubmed-95983072022-10-27 Antioral Cancer Effects by the Nitrated [6,6,6]Tricycles Compound (SK1) In Vitro Chen, Yan-Ning Chan, Chieh-Kai Yen, Ching-Yu Shiau, Jun-Ping Chang, Meng-Yang Wang, Cheng-Chung Jeng, Jiiang-Huei Tang, Jen-Yang Chang, Hsueh-Wei Antioxidants (Basel) Article A novel nitrated [6,6,6]tricycles-derived compound containing nitro, methoxy, and ispropyloxy groups, namely SK1, was developed in our previous report. However, the anticancer effects of SK1 were not assessed. Moreover, SK1 contains two nitro groups (NO(2)) and one nitrogen-oxygen (N-O) bond exhibiting the potential for oxidative stress generation, but this was not examined. The present study aimed to evaluate the antiproliferation effects and oxidative stress and its associated responses between oral cancer and normal cells. Based on the MTS assay, SK1 demonstrated more antiproliferation ability in oral cancer cells than normal cells, reversed by N-acetylcysteine. This suggests that SK1 causes antiproliferation effects preferentially in an oxidative stress-dependent manner. The oxidative stress-associated responses were further validated, showing higher ROS/MitoSOX burst, MMP, and GSH depletion in oral cancer cells than in normal cells. Meanwhile, SK1 caused oxidative stress-causing apoptosis, such as caspases 3/8/9, and DNA damages, such as γH2AX and 8-OHdG, to a greater extent in oral cancer cells than in normal cells. Siilar to cell viability, these oxidative stress responses were partially diminished by NAC, indicating that SK1 promoted oxidative stress-dependent responses. In conclusion, SK1 exerts oxidative stress, apoptosis, and DNA damage to a greater extent to oral cancer cells than in normal cells. MDPI 2022-10-20 /pmc/articles/PMC9598307/ /pubmed/36290795 http://dx.doi.org/10.3390/antiox11102072 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Chen, Yan-Ning
Chan, Chieh-Kai
Yen, Ching-Yu
Shiau, Jun-Ping
Chang, Meng-Yang
Wang, Cheng-Chung
Jeng, Jiiang-Huei
Tang, Jen-Yang
Chang, Hsueh-Wei
Antioral Cancer Effects by the Nitrated [6,6,6]Tricycles Compound (SK1) In Vitro
title Antioral Cancer Effects by the Nitrated [6,6,6]Tricycles Compound (SK1) In Vitro
title_full Antioral Cancer Effects by the Nitrated [6,6,6]Tricycles Compound (SK1) In Vitro
title_fullStr Antioral Cancer Effects by the Nitrated [6,6,6]Tricycles Compound (SK1) In Vitro
title_full_unstemmed Antioral Cancer Effects by the Nitrated [6,6,6]Tricycles Compound (SK1) In Vitro
title_short Antioral Cancer Effects by the Nitrated [6,6,6]Tricycles Compound (SK1) In Vitro
title_sort antioral cancer effects by the nitrated [6,6,6]tricycles compound (sk1) in vitro
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9598307/
https://www.ncbi.nlm.nih.gov/pubmed/36290795
http://dx.doi.org/10.3390/antiox11102072
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