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ent-Kaurane diterpenoids induce apoptosis and ferroptosis through targeting redox resetting to overcome cisplatin resistance

Reactive oxygen species (ROS) induction is an effective mechanism to kill cancer cells for many chemotherapeutics, while resettled redox homeostasis induced by the anticancer drugs will promote cancer chemoresistance. Natural ent-kaurane diterpenoids have been found to bind glutathione (GSH) and sul...

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Autores principales: Sun, Yong, Qiao, Yanan, Liu, Yue, Zhou, Jinchuan, Wang, Xue, Zheng, Hongbo, Xu, Zejun, Zhang, Jiaozhen, Zhou, Yi, Qian, Lilin, Zhang, Chunyang, Lou, Hongxiang
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8099784/
https://www.ncbi.nlm.nih.gov/pubmed/33905957
http://dx.doi.org/10.1016/j.redox.2021.101977
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author Sun, Yong
Qiao, Yanan
Liu, Yue
Zhou, Jinchuan
Wang, Xue
Zheng, Hongbo
Xu, Zejun
Zhang, Jiaozhen
Zhou, Yi
Qian, Lilin
Zhang, Chunyang
Lou, Hongxiang
author_facet Sun, Yong
Qiao, Yanan
Liu, Yue
Zhou, Jinchuan
Wang, Xue
Zheng, Hongbo
Xu, Zejun
Zhang, Jiaozhen
Zhou, Yi
Qian, Lilin
Zhang, Chunyang
Lou, Hongxiang
author_sort Sun, Yong
collection PubMed
description Reactive oxygen species (ROS) induction is an effective mechanism to kill cancer cells for many chemotherapeutics, while resettled redox homeostasis induced by the anticancer drugs will promote cancer chemoresistance. Natural ent-kaurane diterpenoids have been found to bind glutathione (GSH) and sulfhydryl group in antioxidant enzymes covalently, which leads to the destruction of intracellular redox homeostasis. Therefore, redox resetting destruction by ent-kaurane diterpenoids may emerge as a viable strategy for cancer therapy. In this study, we isolated 30 ent-kaurane diterpenoids including 20 new samples from Chinese liverworts Jungermannia tetragona Lindenb and studied their specific targets and possible application in cancer drug resistance through redox resetting destruction. 11β-hydroxy-ent-16-kaurene-15-one (23) possessed strong inhibitory activity against several cancer cell lines. Moreover, compound 23 induced both apoptosis and ferroptosis through increasing cellular ROS levels in HepG2 cells. ROS accumulation induced by compound 23 was caused by inhibition of antioxidant systems through targeting peroxiredoxin I/II (Prdx I/II) and depletion of GSH. Furthermore, compound 23 sensitized cisplatin (CDDP)-resistant A549/CDDP cancer cells in vitro and in vivo by inducing apoptosis and ferroptosis. Thus, the ent-kaurane derivative showed potential application for sensitizing CDDP resistance by redox resetting destruction through dual inhibition of Prdx I/II and GSH in cancer chemotherapy.
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spelling pubmed-80997842021-05-13 ent-Kaurane diterpenoids induce apoptosis and ferroptosis through targeting redox resetting to overcome cisplatin resistance Sun, Yong Qiao, Yanan Liu, Yue Zhou, Jinchuan Wang, Xue Zheng, Hongbo Xu, Zejun Zhang, Jiaozhen Zhou, Yi Qian, Lilin Zhang, Chunyang Lou, Hongxiang Redox Biol Research Paper Reactive oxygen species (ROS) induction is an effective mechanism to kill cancer cells for many chemotherapeutics, while resettled redox homeostasis induced by the anticancer drugs will promote cancer chemoresistance. Natural ent-kaurane diterpenoids have been found to bind glutathione (GSH) and sulfhydryl group in antioxidant enzymes covalently, which leads to the destruction of intracellular redox homeostasis. Therefore, redox resetting destruction by ent-kaurane diterpenoids may emerge as a viable strategy for cancer therapy. In this study, we isolated 30 ent-kaurane diterpenoids including 20 new samples from Chinese liverworts Jungermannia tetragona Lindenb and studied their specific targets and possible application in cancer drug resistance through redox resetting destruction. 11β-hydroxy-ent-16-kaurene-15-one (23) possessed strong inhibitory activity against several cancer cell lines. Moreover, compound 23 induced both apoptosis and ferroptosis through increasing cellular ROS levels in HepG2 cells. ROS accumulation induced by compound 23 was caused by inhibition of antioxidant systems through targeting peroxiredoxin I/II (Prdx I/II) and depletion of GSH. Furthermore, compound 23 sensitized cisplatin (CDDP)-resistant A549/CDDP cancer cells in vitro and in vivo by inducing apoptosis and ferroptosis. Thus, the ent-kaurane derivative showed potential application for sensitizing CDDP resistance by redox resetting destruction through dual inhibition of Prdx I/II and GSH in cancer chemotherapy. Elsevier 2021-04-16 /pmc/articles/PMC8099784/ /pubmed/33905957 http://dx.doi.org/10.1016/j.redox.2021.101977 Text en © 2021 The Authors https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Research Paper
Sun, Yong
Qiao, Yanan
Liu, Yue
Zhou, Jinchuan
Wang, Xue
Zheng, Hongbo
Xu, Zejun
Zhang, Jiaozhen
Zhou, Yi
Qian, Lilin
Zhang, Chunyang
Lou, Hongxiang
ent-Kaurane diterpenoids induce apoptosis and ferroptosis through targeting redox resetting to overcome cisplatin resistance
title ent-Kaurane diterpenoids induce apoptosis and ferroptosis through targeting redox resetting to overcome cisplatin resistance
title_full ent-Kaurane diterpenoids induce apoptosis and ferroptosis through targeting redox resetting to overcome cisplatin resistance
title_fullStr ent-Kaurane diterpenoids induce apoptosis and ferroptosis through targeting redox resetting to overcome cisplatin resistance
title_full_unstemmed ent-Kaurane diterpenoids induce apoptosis and ferroptosis through targeting redox resetting to overcome cisplatin resistance
title_short ent-Kaurane diterpenoids induce apoptosis and ferroptosis through targeting redox resetting to overcome cisplatin resistance
title_sort ent-kaurane diterpenoids induce apoptosis and ferroptosis through targeting redox resetting to overcome cisplatin resistance
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8099784/
https://www.ncbi.nlm.nih.gov/pubmed/33905957
http://dx.doi.org/10.1016/j.redox.2021.101977
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